{"id":367,"date":"2020-04-06T14:07:29","date_gmt":"2020-04-06T12:07:29","guid":{"rendered":"http:\/\/us.edu.pl\/instytut\/ich\/?page_id=367"},"modified":"2025-09-10T14:37:00","modified_gmt":"2025-09-10T12:37:00","slug":"spektroskopia-i-materialy-luminescencyjne","status":"publish","type":"page","link":"https:\/\/us.edu.pl\/instytut\/ich\/dzialalnosc-naukowa\/zespoly-badawcze\/spektroskopia-i-materialy-luminescencyjne\/","title":{"rendered":"Spektroskopia i Materia\u0142y Luminescencyjne"},"content":{"rendered":"<p>[vc_row][vc_column][vc_column_text][\/vc_column_text][\/vc_column][\/vc_row][vc_row][vc_column][vc_column_text][\/vc_column_text][\/vc_column][\/vc_row][vc_row][vc_column]\r\n                <div class=\"text-modules\">\r\n                    <div class=\"container\">\r\n                        <h3 class=\"page-title text__title\">Spektroskopia i Materia\u0142y Luminescencyjne<\/h3>\r\n                        <div class=\"text-modules__content\"><p>Lider zespo\u0142u: <a href=\"http:\/\/us.edu.pl\/instytut\/ich\/dzialalnosc-naukowa\/zespoly-badawcze\/zespol-spektroskopii-i-materialow-luminescencyjnych\/wojciech-pisarski\/\">prof. dr hab. Wojciech Pisarski<\/a><\/p>\n<p>Sk\u0142ad zespo\u0142u:<\/p>\n<p><a href=\"https:\/\/ab.us.edu.pl\/emp?id=34321\">prof. dr hab. in\u017c. Joanna Pisarska<\/a> (<a href=\"https:\/\/www.scopus.com\/authid\/detail.uri?authorId=8544231300\" target=\"_blank\" rel=\"noopener noreferrer\">Scopus<\/a>, <a href=\"https:\/\/orcid.org\/0000-0002-9833-8944\" target=\"_blank\" rel=\"noopener noreferrer\">ORCID<\/a>)<br \/>\n<a href=\"https:\/\/ab.us.edu.pl\/emp?id=56093\">dr Marta Kuwik<\/a> (<a href=\"https:\/\/www.scopus.com\/authid\/detail.uri?authorId=57209747273\" target=\"_blank\" rel=\"noopener noreferrer\">Scopus<\/a>, <a href=\"https:\/\/orcid.org\/0000-0002-7367-9486\" target=\"_blank\" rel=\"noopener noreferrer\">ORCID<\/a>)<br \/>\n<a href=\"https:\/\/ab.us.edu.pl\/emp?id=63093\">dr Natalia \u017bak<\/a> (<a href=\"https:\/\/www.scopus.com\/authid\/detail.uri?authorId=56703197400\" target=\"_blank\" rel=\"noopener noreferrer\">Scopus<\/a>, <a href=\"https:\/\/orcid.org\/0000-0001-7234-7036\" target=\"_blank\" rel=\"noopener noreferrer\">ORCID<\/a>)<br \/>\n<a href=\"https:\/\/ab.us.edu.pl\/emp?id=21802\">dr Justyna Polak<\/a> (<a href=\"https:\/\/www.scopus.com\/authid\/detail.uri?authorId=8581483600\" target=\"_blank\" rel=\"noopener noreferrer\">Scopus<\/a>, <a href=\"https:\/\/orcid.org\/0000-0003-1420-9756\" target=\"_blank\" rel=\"noopener noreferrer\">ORCID<\/a>)<br \/>\n<a href=\"https:\/\/ab.us.edu.pl\/emp?id=27292\">dr Barbara Szpikowska-Sroka<\/a> (<a href=\"https:\/\/www.scopus.com\/authid\/detail.uri?authorId=8412405100\" target=\"_blank\" rel=\"noopener noreferrer\">Scopus<\/a>, <a href=\"https:\/\/orcid.org\/0000-0002-1875-0307\" target=\"_blank\" rel=\"noopener noreferrer\">ORCID<\/a>)<\/p>\n<p>Strona internetowa: <a href=\"http:\/\/uranos.cto.us.edu.pl\/~zchts\/\">http:\/\/uranos.cto.us.edu.pl\/~zchts\/<\/a><\/p>\n<hr \/>\n<p>Tematyka bada\u0144 zespo\u0142u:<\/p>\n<p>Tematyka badawcza zespo\u0142u jest zwi\u0105zana z otrzymywaniem wybranych materia\u0142\u00f3w optycznych oraz okre\u015bleniem ich w\u0142a\u015bciwo\u015bci przy u\u017cyciu metod spektroskopowych: FT-IR, Ramana, EPR, absorpcji i luminescencji. S\u0105 to w szczeg\u00f3lno\u015bci materia\u0142y domieszkowane jonami metali przej\u015bciowych i\/lub lantanowc\u00f3w stosowane w szeroko poj\u0119tej fotonice i optoelektronice, mi\u0119dzy innymi szk\u0142a nieorganiczne dla w\u0142\u00f3kien optycznych, materia\u0142y szklano-ceramiczne i luminofory ceramiczne, materia\u0142y zawieraj\u0105ce nanokryszta\u0142y fluorkowe otrzymywane metod\u0105 zol-\u017cel, materia\u0142y wykorzystuj\u0105ce procesy konwersji promieniowania podczerwonego na \u015bwiat\u0142o widzialne, materia\u0142y laserowe, materia\u0142y dla optycznych czujnik\u00f3w temperatury.<\/p>\n<hr \/>\n<p>Projekty:<\/p>\n<ul>\n<li><a href=\"https:\/\/us.edu.pl\/instytut\/ich\/wp-content\/uploads\/sites\/38\/Editor\/badania-naukowe\/unnamed-file.pdf\/WPisarski-grant1.pdf\" class=\"mtli_attachment mtli_pdf\" data-mtli=\"mtli_filesize310,31kB\" class=\"mtli_attachment mtli_pdf\" data-mtli=\"mtli_filesize310,31kB\">Projekt badawczy NCN OPUS nr 2011\/01\/B\/ST5\/00978<\/a> (2011-2014):<br \/>\nFosforanowe szk\u0142a i materia\u0142y szklano-ceramiczne domieszkowane jonami ziem rzadkich dla widzialnej i podczerwonej optoelektroniki<\/li>\n<li><a href=\"https:\/\/us.edu.pl\/instytut\/ich\/wp-content\/uploads\/sites\/38\/Editor\/badania-naukowe\/unnamed-file.pdf\/WPisarski-grant2.pdf\" class=\"mtli_attachment mtli_pdf\" data-mtli=\"mtli_filesize265,49kB\" class=\"mtli_attachment mtli_pdf\" data-mtli=\"mtli_filesize265,49kB\">Projekt badawczy NCN OPUS nr 2011\/03\/B\/ST7\/01743<\/a> (2012-2015):<br \/>\nBezo\u0142owiowe tlenkowo-fluorkowe szk\u0142a i w\u0142\u00f3kna szklane oraz materia\u0142y szklano-ceramiczne aktywowane jonami lantanowc\u00f3w dla fotoniki<\/li>\n<li><a href=\"https:\/\/us.edu.pl\/instytut\/ich\/wp-content\/uploads\/sites\/38\/Editor\/badania-naukowe\/unnamed-file.pdf\/WPisarski-grant3.pdf\" class=\"mtli_attachment mtli_pdf\" data-mtli=\"mtli_filesize333,31kB\" class=\"mtli_attachment mtli_pdf\" data-mtli=\"mtli_filesize333,31kB\">Projekt badawczy NCN OPUS nr 2014\/13\/B\/ST7\/01729<\/a> (2015-2018):<br \/>\nProcesy konwersji w g\u00f3r\u0119 w szk\u0142ach i uk\u0142adach szklano-ceramicznych domieszkowanych lantanowcami podczas wzbudzenia diod\u0105 laserow\u0105 pracy ci\u0105g\u0142ej i laserem femtosekundowym<\/li>\n<li><a href=\"https:\/\/us.edu.pl\/instytut\/ich\/wp-content\/uploads\/sites\/38\/Editor\/badania-naukowe\/unnamed-file.pdf\/WPisarski-grant4.pdf\" class=\"mtli_attachment mtli_pdf\" data-mtli=\"mtli_filesize338,13kB\" class=\"mtli_attachment mtli_pdf\" data-mtli=\"mtli_filesize338,13kB\">Projekt badawczy NCN OPUS nr 2015\/17\/B\/ST7\/03730<\/a> (2016-2019):<br \/>\nSzk\u0142a i w\u0142\u00f3kna aktywne dla emisji \u015bwiat\u0142a bia\u0142ego i promieniowania w zakresie bliskiej podczerwieni przy 2000 nm<\/li>\n<li><a href=\"https:\/\/us.edu.pl\/instytut\/ich\/wp-content\/uploads\/sites\/38\/Editor\/badania-naukowe\/unnamed-file.pdf\/WPisarski-grant5.pdf\" class=\"mtli_attachment mtli_pdf\" data-mtli=\"mtli_filesize371,45kB\" class=\"mtli_attachment mtli_pdf\" data-mtli=\"mtli_filesize371,45kB\">Projekt badawczy NCN OPUS nr 2016\/23\/B\/ST8\/01965<\/a> (2017-2021):<br \/>\nDetekcja nanokryszta\u0142\u00f3w fluorkowych rozproszonych w materia\u0142ach zol-\u017celowych przy u\u017cyciu dyfrakcji rentgenowskiej oraz metod mikroskopowych i spektroskopowych<\/li>\n<li><a href=\"https:\/\/us.edu.pl\/instytut\/ich\/wp-content\/uploads\/sites\/38\/dzialalnosc-naukowa\/badania-naukowe\/unnamed-file.pdf\/WPisarski-szklaTytanowoGermanianiowe-19-23.pdf\" class=\"mtli_attachment mtli_pdf\" data-mtli=\"mtli_filesize343,73kB\" class=\"mtli_attachment mtli_pdf\" data-mtli=\"mtli_filesize343,73kB\">Projekt badawczy NCN OPUS nr 2018\/31\/B\/ST8\/00166<\/a> (2019-2023):<br \/>\nSzk\u0142a tytanowo-germanianowe i ich zastosowania jako w\u0142\u00f3kna optyczne emituj\u0105ce promieniowanie w zakresie bliskiej i \u015bredniej podczerwieni, Kierownik: prof. dr hab. Wojciech Pisarski<\/li>\n<li><a href=\"https:\/\/us.edu.pl\/instytut\/ich\/wp-content\/uploads\/sites\/38\/dzialalnosc-naukowa\/badania-naukowe\/unnamed-file.pdf\/JPisarska-grant_oliwiny.pdf\" class=\"mtli_attachment mtli_pdf\" data-mtli=\"mtli_filesize108,87kB\" class=\"mtli_attachment mtli_pdf\" data-mtli=\"mtli_filesize108,87kB\">Projekt badawczy NCN OPUS nr 2019\/35\/B\/ST5\/01924<\/a> (2020-2024): Nowe niskofononowe luminofory ceramiczne o strukturze oliwinu, Kierownik Prof. dr hab. Joanna Pisarska<\/li>\n<\/ul>\n<hr \/>\n<p>Publikacje:<\/p>\n<p>2020<\/p>\n<ul>\n<li>N. Pawlik, B. Szpikowska-Sroka and W. A. Pisarski, Energy transfer study on Tb<sup>3+<\/sup>\/Eu<sup>3+<\/sup> co-activated sol-gel glass-ceramic materials containing MF<sub>3<\/sub> (M = Y, La) nanocrystals for NUV optoelectronic devices. Materials, 13 (2020) 2522<br \/>\nIF = 2.972<\/li>\n<li>M. Kochanowicz, J. Zmojda, P. Miluski, A. Baranowska, M. Kuwik, W.A. Pisarski, J. Pisarska, J. Dorosz, D. Dorosz, Sensitization of Ho<sup>3+<\/sup>-doped fluoroindate glasses for near and mid-infrared emission. Optical Materials, 101 (2020) 109707<br \/>\nIF = 2.687<\/li>\n<\/ul>\n<p>2019<\/p>\n<ul>\n<li>B. Szpikowska-Sroka, N. Pawlik, M. Ba\u0144czyk, W.A. Pisarski, Tb3+\/Eu3+ co-doped silica xerogels prepared via low-temperature sol-gel method and their luminescence properties. Materials Letters, 235 (2019) 101\u2013103<br \/>\nIF = 3.019<\/li>\n<li>J. Pisarska, M. Kuwik, A. G\u00f3rny, J. Dorosz, M. Kochanowicz, J. Zmojda, M. Sitarz, D. Dorosz, W.A. Pisarski, Influence of transition metal ion concentration on near-infrared emission of Ho3+ in barium gallo-germanate glasses. Journal of Alloys and Compounds, 793 (2019) 107-114<br \/>\nIF = 4.175<\/li>\n<li>M. Kochanowicz, J. \u017bmojda, P. Miluski, A. Baranowska, T. Ragin, J. Dorosz, M. Kuwik, W.A. Pisarski, J. Pisarska, M. Le\u015bniak, D. Dorosz, 2 \u00b5m emission in gallo-germanate glasses and glass fibers co-doped with Yb3+\/Ho3+ and Yb3+\/Tm3+\/Ho3+. Journal of Luminescence, 211 (2019) 341-346<br \/>\nIF = 2.961<\/li>\n<li>M. So\u0142tys, A. G\u00f3rny, L. Zur, M. Ferrari, G.C. Righini, W.A. Pisarski, J. Pisarska, White light emission through energy transfer processes in barium gallo-germanate glasses co-doped with Dy3+-Ln3+ (Ln =Ce, Tm). Optical Materials, 87 (2019) 63-69<br \/>\nIF = 2.687<\/li>\n<li>M. Kuwik, A. G\u00f3rny, L. Zur, M. Ferrari, G.C.Righini, W.A. Pisarski, J. Pisarska, Influence of the rare earth ions concentration on luminescence properties of barium gallo-germanate glasses for white lighting. Journal of Luminescence, 211 (2019) 375-381<br \/>\nIF = 2.961<\/li>\n<li>N. Pawlik, B. Szpikowska-Sroka, E. Pietrasik, T. Goryczka, M. Dulski, AS. Swinarew, M. Zubko, J. Lel\u0105tko, W.A. Pisarski. Reddish-orange Eu3+-doped sol-gel emitters based on LaF3 nanocrystals \u2013 Synthesis, structural and photoluminescence investigations. Optical Materials, 89 (2019) 276-282<br \/>\nIF = 2.687<\/li>\n<li>M. Kochanowicz, J. Zmojda, P. Miluski, A. Baranowska, M. Leich, A. Schwuchow, M. Jager, M. Kuwik, J. Pisarska, W.A. Pisarki, D. Dorosz. Tm3+\/Ho3+ co-doped germanate glass and double-clad optical fiber for broadband emission and lasing above 2 \u00b5m. Optical Materials Express, 9 (2019) 1450-1458<br \/>\nIF = 2.673<\/li>\n<li>M. Kuwik, A. G\u00f3rny, J. Pisarska, W.A. Pisarski. Lead-based glasses doped with Dy3+ ions for W-LEDs. Materials Letters, 254 (2019) 62-64<br \/>\nIF = 3.019<\/li>\n<li>J. Pisarska, M. Kuwik, A. G\u00f3rny, M. Kochanowicz, J. Zmojda, J. Dorosz, D. Dorosz, M. Sitarz, W.A. Pisarski. Holmium doped barium gallo-germanate glasses for near-infrared luminescence at 2000 nm. Journal of Luminescence 215 (2019) 116525<br \/>\nIF = 2.961<\/li>\n<li>A. G\u00f3rny, M. So\u0142tys, J. Pisarska, W.A. Pisarski. Effect of acceptor ions concentration in lead phosphate glassesco-doped with Tb3+ -Ln3+(Ln=Eu, Sm) for LED applications. Journal of Rare Earths 37, 11 (2019) 1145-1151<br \/>\nIF = 2.846<\/li>\n<li>M. Lesniak, J. Zmojda, M. Kochanowicz, P. Miluski, A. Baranowska, G. Mach, M. Kuwik, J. Pisarska, W.A. Pisarski, D. Dorosz. Spectroscopic Properties of Erbium-Doped Oxyfluoride Phospho-Tellurite Glass and Transparent Glass-Ceramic Containing BaF<sub>2<\/sub>. Nanocrystals, Materials, 12 (2019) 3429<br \/>\nIF = 2.972<\/li>\n<li>R. Szala, J. Zmojda, M. Kochanowicz, P. Miluski, J. Dorosz, M. Lesniak, P. Jele\u0144, B. Starzyk, M. Sitarz, M. Kuwik, J. Pisarska, W.A. Pisarski, Y. Iijima, T. Mori, D. Dorosz. Spectroscopic properties of antimony modified germanate glass doped with Eu<sup>3+ <\/sup>ions. Ceramics International, 45 (2019) 24811\u201324817<br \/>\nIF = 3.45<\/li>\n<li>N. Pawlik, B. Szpikowska-Sroka, T. Goryczka, M. Zubko, J. Lel\u0105tko, W. A. Pisarski. Structure and luminescent properties of oxyfluoride glass-ceramics with YF<sub>3<\/sub>:Eu<sup>3+<\/sup> nanocrystals derived by sol-gel method, Journal of the European Ceramic Society, 39 (2019) 5010\u20135017<br \/>\nIF = 4.029<\/li>\n<li>N. Pawlik, B. Szpikowska-Sroka, T. Goryczka, W. A. Pisarski. Photoluminescence investigation of sol-gel glass-ceramic materials containing SrF<sub>2<\/sub>:Eu<sup>3+ <\/sup>nanocrystals, Journal of Alloys and Compounds 810 (2019) 151935<br \/>\nIF = 4.175<\/li>\n<li>N. Pawlik, B. Szpikowska-Sroka, E. Pietrasik, T. Goryczka, W.A. Pisarski. Photoluminescence and energy transfer in transparent glass-ceramics based on GdF3:RE3\u0163 (RE \u013d Tb, Eu) nanocrystals. Journal of Rare Earths 37 (2019) 1137-1144<br \/>\nIF 2.846<\/li>\n<li>N. Pawlik, B. Szpikowska-Sroka, T. Goryczka, W.A. Pisarski. Sol-Gel Glass-Ceramic Materials Containing CaF<sub>2<\/sub>:Eu<sup>3+<\/sup> Fluoride Nanocrystals for Reddish-Orange Photoluminescence. Applications Journal of Rare Earths, 37 (2019) 1137-1144<br \/>\nIF 2.846<\/li>\n<li>M. Kochanowicz, J. Zmojda, A. Baranowska, P. Miluski, M. Lesniak, M. Kuwik, J. Pisarska, W. A. Pisarski, J. Dorosz, D. Dorosz. Near-IR and mid-IR luminescence and energy transfer in fluoroindate glasses co-doped with Er<sup>3+<\/sup>\/Tm<sup>3+<\/sup>. Optical Materials Express 9\/12 (2019) 4772<br \/>\nIF 2.673<\/li>\n<li>N. Pawlik, B. Szpikowska-Sroka, E. Pietrasik, T. Goryczka, W.A. Pisarski. Reddish-Orange Luminescence from BaF<sub>2<\/sub>:Eu<sup>3+<\/sup>. Fluoride Nanocrystals Dispersed in Sol-Gel Materials. Materials, 12 (2019) 3735<br \/>\nIF 2.972<\/li>\n<li>A. G\u00f3rny, M. So\u0142tys, J. Pisarska, W.A. Pisarski. Germanate glasses co-doped with Ce3+\/Ln3+ (Ln = Pr, Tb, Dy) for white light emitting diodes. Optica Applicata, Vol. XLIX, No.3 (2019)<br \/>\nIF 1.054<\/li>\n<li>N. Pawlik, B. Szpikowska-Sroka, T. Goryczka, W.A. Pisarski. Fabrication of fluoride nanocrystals and their spectroscopic properties. Optica Applicata, Vol. XLIX, No. 3 (2019)<br \/>\nIF 1.054<\/li>\n<li>N. Pawlik, B. Szpikowska-Sroka, T. Goryczka, W.A. Pisarski. Spectroscopic Properties of Eu<sup>3+<\/sup> Ions in Sol\u2013Gel Materials Containing Calcium Fluoride Nanocrystals. Phys. Status Solidi B, (2019) 1900478<br \/>\nIF 1.454<\/li>\n<li>J. Polak, M. Bartoszek, R. Bernat Comprehensive comparison of antioxidant properties of tinctures. Scientific Reports, 9, 6148 (2019)<br \/>\nIF = 4.011<\/li>\n<\/ul>\n<p>2018<\/p>\n<ul>\n<li>J. Polak, M. Bartoszek. A new equation for converting the parameter EC50 into the total antioxidant capacity TEAC and vice versa. Food Chemistry, 248 (2018) 46\u201351<br \/>\nIF = 4.946<\/li>\n<li>J. Pisarska, A. Kos, M. So\u0142tys, A. G\u00f3rny, E. Pietrasik, W.A. Pisarski Spectroscopy and energy transfer in Tb<sup>3+<\/sup>\/Sm<sup>3+<\/sup> co-doped lead borate glasses. Journal of Luminescence, 195 (2018) 87-95<br \/>\nIF = 2.732<\/li>\n<li>W. A. Pisarski, J. Janek, J. Pisarska, R. Lisiecki, W. Ryba-Romanowski, Influence of excitation wavelengths on up-converted luminescence sensing behavior of Er<sup>3+<\/sup>ions in lead-free germanate glass. Journal of Luminescence, 193 (2018) 34-38<br \/>\nIF = 2.732<\/li>\n<li>B. Szpikowska-Sroka, N. Pawlik, T. Goryczka, W.A. Pisarski, Effect of the initial reagents concentration on final crystals size and luminescence properties of PbF2:Eu3+ phosphors. Journal of Alloys and Compounds, 730 (2018) 150-160<br \/>\nIF = 3.779<\/li>\n<li>A. G\u00f3rny, M. So\u0142tys, J. Pisarska, W.A.Pisarski, Spectroscopy and energy transfer in lead borate glasses doubly doped with Tm3+ and Dy3+ ions. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 192 (2018) 140-145<br \/>\nIF = 2.880<\/li>\n<li>M. Bartoszek, J. Polak, M. Chor\u0105\u017cewski, Comparison of antioxidant capacities of different types of tea using the spectroscopy methods and semi-empirical mathematical model. European Food Research and Technology, 244,4 (2018) 595-601<br \/>\nIF = 1.919<\/li>\n<li>L. Zur, A. Kos, A. G\u00f3rny, M. So\u0142tys, E. Pietrasik, J. Pisarska, T. Goryczka, and W. A. Pisarski, Influence of acceptor concentration on crystallization behavior and luminescence properties of lead borate glasses co-doped with Dy<sup>3+ <\/sup>and Tb<sup>3+<\/sup> ions. Journal of Alloys and Compounds 749 (2018) 561-566<br \/>\nIF = 3.779<\/li>\n<li>P. Lodowski, M. J. Ma\u015blankiewicz, M. Jaworska, L. \u017bur, W. A. Pisarski, Electronic spectra and fluorescence of dithiinodiquinoline compounds. An experimental and theoretical study. Journal of Luminescence, 197 (2018) 7\u201317<br \/>\nIF = 2.732<\/li>\n<li>M. So\u0142tys, J. Pisarska, M. Le\u015bniak, M. Sitarz, W. A. Pisarski, Structural and spectroscopic properties of lead phosphate glasses doubly doped with Tb<sup>3+<\/sup> and Eu<sup>3+<\/sup> ions. Journal of Molecular Structure, 1163 (2018) 418-427<br \/>\nIF = 2.011<\/li>\n<li>J. Pisarska, M. So\u0142tys, J. Janek, A. G\u00f3rny, E. Pietrasik, T. Goryczka, W. A. Pisarski, Crystallization of lead-based and lead-free oxyfluoride germanate glasses doped with erbium during heat treatment proces. Journal of Non-Crystalline Solids, 501 (2018) 121-125<br \/>\nIF = 2.488<\/li>\n<li>M. So\u0142tys, A. G\u00f3rny, J. Pisarska, W. A. Pisarski, Electrical and optical properties of glasses and glass-ceramics. Journal of Non-Crystalline Solids, 498 (2018)352-363<br \/>\nIF = 2.488<\/li>\n<li>N. Pawlik, B. Szpikowska-Sroka, E. Pietrasik, T. Goryczka, W.A. Pisarski, Structural and luminescence properties of silica powders and transparent glass-ceramics containing LaF<sub>3<\/sub>:Eu<sup>3+<\/sup> nanocrystals. Journal of the American Ceramic Society, 101 (2018) 4654-4668<br \/>\nIF = 2.956<\/li>\n<li>N. Pawlik, B. Szpikowska-Sroka, M. Ba\u0144czyk, W.A. Pisarski, Multicolor emission in silica sol-gel materials co-doped with Tb<sup>3+<\/sup> and Eu<sup>3+<\/sup> for near-UV photonic devices. SPIE Proceedings, DOI: 10.1117\/12.2311638<\/li>\n<li>W. A. Pisarski, J. Janek, J. Pisarska, M. Kochanowicz, J. Zmojda, J. Dorosz, M. Sitarz, D. Dorosz, Green up-conversion luminescence of erbium-doped oxyfluoride germanate fiber under continuous-wave laser-diode excitation. Materials Letters, 216 (2018) 131-134<br \/>\nIF = 2.687<\/li>\n<li>J. Zmojda, M. Kochanowicz, P. Miluski, A. Baranowska, W.A. Pisarski, J. Pisarska, R. Jadach, M. Sitarz, D. Dorosz, Structural and optical properties of antimony-germanate-borate glass and glass fiber co-doped Eu<sup>3+<\/sup> and Ag nanoparticles. Spectrochimica Acta Part A, 201 (2018) 1-7<br \/>\nIF = 2.880<\/li>\n<li>R. Jadach, J. Zmojda, M. Kochanowicz, P. Miluski, J. Pisarska, W.A. Pisarski, M. So\u0142tys, M. Le\u015bniak, M. Sitarz, D. Dorosz, Investigation of the aluminum oxide content on structural and optical properties of germanium glasses doped with RE ions. Spectrochimica Acta Part A, 201 (2018) 143-152<br \/>\nIF = 2.880<\/li>\n<li>M. So\u0142tys, A. G\u00f3rny, J. Pisarska, W.A. Pisarski, Lead borate glasses triply doped with Dy3+\/Tb3+\/Eu3+ ions for white emission. Optical Materials, 82 (2018) 110-115<br \/>\nIF = 2.320<\/li>\n<li>J. Pisarska, M. So\u0142tys, A. G\u00f3rny, M. Kochanowicz, J. Zmojda, J. Dorosz, D. Dorosz, M. Sitarz, W.A. Pisarski, Rare earth-doped barium gallo-germanate glasses and their near-infrared luminescence properties. Spectrochimica Acta Part A, 201 (2018) 362-366<br \/>\nIF = 2.880<\/li>\n<li>N. Pawlik, B. Szpikowska-Sroka, E. Pietrasik, T. Goryczka, W.A. Pisarski, Structural and luminescence properties of silica powders and transparent glass-ceramics containing LaF3:Eu3+ anocrystals. Journal of the American Ceramic Society, 101 (2018) 4654-4668<br \/>\nIF = 2.956<\/li>\n<\/ul>\n<p>2017<\/p>\n<ul>\n<li>M. Kochanowicz, J. \u017bmojda, P. Miluski, T. Ragin, W.A. Pisarski, J. Pisarska, R.Jadach, M. Sitarz, D. Dorosz, Structural and luminescent properties of germanate glasses and double-clad optical fiber co-doped with Yb<sup>3+<\/sup>\/Ho<sup>3+<\/sup>. Journal of Alloys and Compounds, 727 (2017) 1221-1226<br \/>\nIF = 3.133<\/li>\n<li>J. Zmojda, M. Kochanowicz, P. Miluski, A. Baranowska, W. A. Pisarski, J. Pisarska, R. Jadach, M. Sitarz and D. Dorosz. Optical Characterization of Nano- and Microcrystals of EuPO4 Created by One-Step Synthesis of Antimony-Germanate-Silicate Glass Modified by P<sub>2<\/sub>O<sub>5<\/sub>, Materials 10 (2017) 1059<br \/>\nIF = 2.654<\/li>\n<li>W. A. Pisarski, J. Pisarska, R. Lisiecki, W. Ryba-Romanowski. Erbium-doped lead silicate glass for near-infrared emission and temperature-dependent up-conversion applications. Opto-Electronics Review, 25 (2017) 238\u2013241<br \/>\nIF = 1.449<\/li>\n<li>W. A. Pisarski, J. Janek, J. Pisarska, R. Lisiecki,W. Ryba-Romanowski. Influence of temperature on up-conversion luminescence in Er<sup>3+<\/sup>\/Yb<sup>3+<\/sup>doubly doped lead-free fluorogermanate glasses for optical sensing. Sensors and Actuators B, 253 (2017) 85\u201391<br \/>\nIF = 5.401<\/li>\n<li>B. Szpikowska-Sroka, N. Pawlik, T. Goryczka, E. Pietrasik, M. Ba\u0144czyk, W. A. Pisarski. Lead fluoride \u00df-PbF2 nanocrystals containing Eu<sup>3+<\/sup>and Tb<sup>3+<\/sup>\u00a0ions embedded in sol-gel materials: thermal, structural and optical investigations. Ceramics International, 43 (2017) 8424\u20138432<br \/>\nIF = 2.986<\/li>\n<li>B. Szpikowska-Sroka, N. Pawlik, T. Goryczka, M. Ba\u0144czyk, W. A. Pisarski. Influence of activator concentration on green-emitting Tb<sup>3+<\/sup>-doped materials derived by sol-gel method. Journal of Luminescence, 188 (2017) 400-408<br \/>\nIF = 2.686<\/li>\n<li>M. Plonska, J. Pisarska, W. A. Pisarski. Pr<sup>3+<\/sup>\/Yb<sup>3+<\/sup>:PLZT ferroelectric ceramics for near-infrared radiation at 1340 nm. Journal of the American Ceramic Society, 100 (2017) 1295\u20131299<br \/>\nIF = 2.841<\/li>\n<li>W. A. Pisarski, J. Janek, J. Pisarska, R. Lisiecki, W. Ryba-Romanowski. Green and red up-conversion luminescence of Er<sup>3+<\/sup>in lead silicate glass under excitation of Yb<sup>3+<\/sup>, Proc. of SPIE Vol. 10325 (2017) 1032508-1<\/li>\n<li>M. Plonska, W.A. Pisarski, J. Pisarska. Luminescence Properties of Ytterbium Activated PLZT Ceramics, Advances in Science and Technology 98 (2017) 64-69<\/li>\n<li>W. A. Pisarski, J.Pisarska, R. Lisiecki, W. Ryba-Romanowski, Er3+ \/Yb3+ co-doped lead silicate glasses and their optical temperature sensing ability. Optics Express, 2523 (2017) 28501-28509<br \/>\nIF = 3.307<\/li>\n<li>A. Miros, B.Psiuk, B. Szpikowska-Sroka. Aerogel insulation materials for industrial installation: properties and structure of new factory-made products. Sol-Gel Sci Technol, 84 (2017) 496\u2013506<br \/>\nIF = 1.575<\/li>\n<li>J. Janek, R. Lisiecki, W. Ryba-Romanowski, J. Pisarska, W.A. Pisarski. Up-conversion luminescence of Er3+ ions in lead-free germanate glasses under 800 nm and 980 nm cw diode laser excitation, Optical Materials 74 (2017) 105-108<br \/>\nIF = 2.238<\/li>\n<\/ul>\n<p>2016<\/p>\n<ul>\n<li>W. A. Pisarski, J. Pisarska, R. Lisiecki, W. Ryba-Romanowski. Er<sup>3+<\/sup>\/Yb<sup>3+<\/sup> co-doped lead germanate glasses for up-conversion luminescence temperature sensors. Sensors and Actuators A, 252 (2016) 54\u201358<br \/>\nIF = 2.499<\/li>\n<li>J. Zmojda, M. Kochanowicz, P. Miluski, J. Dorosz, J. Pisarska, W. A. Pisarski, D. Dorosz. Investigation of upconversion luminescence in antimony-germanate double-clad two cores optical fiber co-doped withYb<sup>3+<\/sup>\/Tm<sup>3+<\/sup>and Yb<sup>3+<\/sup>\/Ho<sup>3+<\/sup>\u00a0ions. Journal of Luminescence, 170 (2016) 795-800<br \/>\nIF = 2.693<\/li>\n<li>J. Pisarska, W. A. Pisarski, D. Dorosz, J. Dorosz, Spectral analysis of Pr<sup>3+<\/sup>doped germanate glasses modified by BaO and BaF<sub>2<\/sub>. Journal of Luminescence, 171 (2016) 138-142<br \/>\nIF = 2.693<\/li>\n<li>J. Pisarska, M. Kowal, M. Kochanowicz, J. \u017bmojda, J. Dorosz, D. Dorosz, W.A. Pisarski. Influence of BaF<sub>2<\/sub>and activator concentration on broadband near-infrared luminescence of Pr<sup>3+<\/sup>\u00a0ions in gallo-germanate glasses. Optics Express, 24 (2016) 2427-2435<br \/>\nIF = 3.148<\/li>\n<li>M. Kochanowicz, J. Zmojda, P. Miluski, M. Sitarz, J. Pisarska, W.A. Pisarski, D. Dorosz, Analysis of upconversion luminescence in germanate glass and optical fiber codoped with Yb<sup>3+<\/sup>\/Tb<sup>3+.<\/sup>Applied optics, 55 (2016) 2370-2374<br \/>\nIF = 1.598<\/li>\n<li>M. Plonska, W.A. Pisarski. Excitation and emission of Pr<sup>3+<\/sup>:PLZT ceramics. Ceramics International, 42 (2016) 17822\u201317826<br \/>\nIF = 2.758<\/li>\n<li>W. A. Pisarski, J. Pisarska, R. Lisiecki, W. Ryba-Romanowski. Sensitive optical temperature sensor based on up-conversion luminescence spectra of Er<sup>3+<\/sup>ions in PbO\u2013Ga<sub>2<\/sub>O<sub>3<\/sub>\u2013XO<sub>2<\/sub>\u00a0(X = Ge, Si) glasses. Optical Materials, 59 (2016) 87\u201390<br \/>\nIF = 2.183<\/li>\n<li>J. Janek, M. So\u0142tys, L. Zur, E. Pietrasik, J. Pisarska, W. A. Pisarski. Luminescence investigations of rare earth doped lead-free borate glasses modified by MO (M = Ca, Sr, Ba). Materials Chemistry and Physics, 180 (2016) 237-243<br \/>\nIF = 2.101<\/li>\n<li>J. Zmojda, M. Kochanowicz, P. Miluski, M. Lesniak, M. Sitarz, W. Pisarski, J. Pisarska, D. Dorosz. Effect of GeO<sub>2<\/sub>content on structural and spectroscopic properties of antimony glasses doped with Sm<sup>3+<\/sup> ions. Journal of Molecular Structure, 1126 (2016) 207-212<br \/>\nIF = 1.780<\/li>\n<li>B. Szpikowska-Sroka, N. Pawlik, W. A. Pisarski. Influence of Gd<sup>3+<\/sup>concentration on luminescence properties of Eu<sup>3+<\/sup>\u00a0ions in sol-gel materials. Journal of Molecular Structure, 1126 (2016) 259-264<br \/>\nIF = 1.780<\/li>\n<li>N. Pawlik, B. Szpikowska-Sroka, M. So\u0142tys, W. A. Pisarski. Optical properties of silica sol-gel materials singly- and doubly-doped with Eu<sup>3+<\/sup>and Gd<sup>3+<\/sup>\u00a0ions. Journal of Rare Earths, 34 (2016) 786-795<br \/>\nIF = 2.188<\/li>\n<li>L. Zur, J. Janek, M. So\u0142tys, J. Pisarska, W. A. Pisarski. Effect of BaF<sub>2<\/sub>Content on Luminescence of Rare-Earth Ions in Borate and Germanate Glasses. Journal of the American Ceramic Society, 99 (2016) 2009-2016<br \/>\nIF= 2.787<\/li>\n<li>B. Szpikowska-Sroka, N. Pawlik, L. Zur, R. Czoik, T. Goryczka, W. A. Pisarski. Effect of fluoride ions on the optical properties of Eu<sup>3+<\/sup>:PbF<sub>2<\/sub>nanocrystals embedded into sol-gel host materials. Materials Chemistry and Physics, 174 (2016) 138-142<br \/>\nIF = 2.101<\/li>\n<li>L. \u017bur, J. Janek, M. So\u0142tys, T.Goryczka, J. Pisarska, W. A. Pisarski. Structural and optical investigations of rare earth doped lead-free germanate glasses modified by MO and MF<sub>2<\/sub>(M= Ca, Sr, Ba). Journal of Non-Crystalline Solids, 431 (2016) 145\u2013149<br \/>\nIF = 1.825<\/li>\n<li>M. Bartoszek, J. Polak. A comparison of antioxidative capacities of fruit juices, drinks and nectars, as determined by EPR and UV-vis spectroscopies. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 153 (2016) 546-549. IF= 2.353<\/li>\n<li>N. Pawlik, B. Szpikowska-Sroka, A. S. Swinarew, M. \u0141\u0119\u017cniak, W. A. Pisarski. Structural and optical properties of Eu<sup>3+<\/sup>\/Gd<sup>3+<\/sup>ions in silica xerogels and powders obtained by sol\u2013gel method. Journal of Molecular Structure, 1126 (2016) 29-30<br \/>\nIF= 1.780<\/li>\n<li>J. Zmojda, M. Kochanowicz, P. Miluski, A. Lukowiak, W. A. Pisarski, J. Pisarska, M. Marciniak, M. Ferrari, G. Righini, M. Sitarz,, D. Dorosz. Rare-Earth Doped Optical Fibers with Nano-Phase Glass-Ceramic Structures. ICTON 2016<\/li>\n<li>M. Kowal, J. Pisarska, M. Kochanowicz, J. Zmojda, J. Dorosz, D. Dorosz, W. A. Pisarski. Rare Earth-Doped Barium Gallo-Germanate Glasses for Broadband Near-Infrared Luminescence. ICTON 2016<\/li>\n<li>I. Czopek, J. Pisarska, T. Goryczka, W. A. Pisarski. PbWO<sub>4<\/sub> Micro-\/Nanocrystals in Transparent Glass-Ceramics: Synthesis, Structure-Property Relationship and Lanthanide Doping. ICTON 2016<\/li>\n<li>M. So\u0142tys, A. Kos, J. Janek, L. \u017bur, W. A. Pisarski, J. Pisarska. Energy Transfer Processes between Rare Earth Ions and White Light Emission in Inorganic Glasses. ICTON 2016<\/li>\n<\/ul>\n<p>2015<\/p>\n<ul>\n<li>J. Polak, M. Bartoszek, M. Chorazewski. Antioxidant Capacity: Experimental Determination by EPR Spectroscopy and Mathematical Modeling. Journal of Agricultural and Food Chemistry, 63 (2015) 6319-6324<br \/>\nIF = 2.912<\/li>\n<li>M. Bartoszek, J. Polak. Application of Electron Paramagnetic Resonance Spectroscopy for Investigating Antioxidant Activity of Selected Herbs. Journal of AOAC International, 98 (2015) 862-865<br \/>\nIF = 1.385<\/li>\n<li>M. Orlowska, T. Kowalska, M. Sajewicz, K. Pytlakowska, M. Bartoszek, J. Polak, M. Waksmundzka-Hajnos. Antioxidant Activity of Selected Thyme (Thymus L.) Species and Study of the Equivalence of Different Measuring Methodologies. Journal of AOAC International, 98 (2015) 876-882<br \/>\nIF = 1.385<\/li>\n<li>J. Polak, M. Bartoszek.The study of antioxidant capacity of varieties of nalewka, a traditional Polish fruit liqueur, using EPR, NMR and UV\u2013vis spectroscopy. Journal of Food Composition and Analysis, 40 (2015) 114-119<br \/>\nIF = 2.259<\/li>\n<li>M. Kochanowicz, D. Dorosz, J. Zmojda, P. Miluski, J. Dorosz, J. Pisarska, W.A. Pisarski. Upconversion emission in antimony\u2013germanate double-clad optical fiber co-doped with Yb<sup>3+<\/sup>\/Tm<sup>3+<\/sup> ions. Optical Materials, 41 (2015) 108\u2013111<br \/>\nIF = 2.075<\/li>\n<li>B. Szpikowska-Sroka, N. Pawlik, A. S. Swinarew, W. A. Pisarski. Luminescence of Eu3+\/Gd3+ co-doped silicate sol-gel powders Journal of Luminescence. 166 (2015) 356\u2013360<br \/>\nIF = 2.367<\/li>\n<li>B. Szpikowska-Sroka, A. Guz. A Highly Sensitive Spectrophotometric Determination of Sodium 2-Sulfanylethanesulfonate in Pharmaceutical Preparations. Journal of Analytical Chemistry, 10 (7) (2015) 831\u2013836<\/li>\n<li>M. So\u0142tys, J. Janek, L. \u017bur, J. Pisarska, W. A. Pisarski. Compositional-dependent europium-doped lead phosphate glasses and their spectroscopic properties. Optical Materials, 40 (2015) 91\u201396<br \/>\nIF = 2.075<\/li>\n<li>M. So\u0142tys, L. \u017bur, J. Pisarska, T. Goryczka, W. A. Pisarski. Selective oxide modifiers M2O3 (M=Al,Ga) as crystallizing agents in Er3+-doped lead phosphate glass host. Ceramics International, 41 (2015) 4334\u20134339<br \/>\nIF = 2.086<\/li>\n<li>W. A. Pisarski, J. Pisarska, D. Dorosz, J. Dorosz. Rare earths in lead-free oxyfluoride germanate glasses, Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 134 (2015) 587\u2013591<br \/>\nIF = 2.129<\/li>\n<li>W. A. Pisarski, L. \u017bur, M. Kowal, J. Pisarska. Enhancement and quenching photoluminescence effects for rare earth \u2013 Doped lead bismuth gallate glasses. Journal of Alloys and Compounds, 651 (2015) 565-570<br \/>\nIF = 2.999<\/li>\n<li>J. Pisarska, W.A. Pisarski, D. Dorosz, J. Dorosz. Spectroscopic properties of Pr<sup>3+<\/sup> and Er<sup>3+<\/sup> ions in lead-free borate glasses modified by BaF<sub>2<\/sub>. Optical Materials, 47 (2015) 548-554<br \/>\nIF = 2.075<\/li>\n<li>J. Pisarska, W.A. Pisarski, T. Goryczka, R. Lisiecki, W. Ryba-Romanowski. Thermal analysis and near-infrared luminescence of Er<sup>3+<\/sup>-doped lead phosphate glasses modified by PbF<sub>2<\/sub>. Journal of Luminescence, 160 (2015) 57-63<br \/>\nIF = 2.367<\/li>\n<li>B. Szpikowska-Sroka, N. Pawlik, T. Goryczka, W.A. Pisarski. Technological aspects for Tb3+-doped luminescent sol\u2013gel nanomaterials. Ceramics International, 41 (2015) 11670\u201311679<br \/>\nIF = 2.605<\/li>\n<li>B. Szpikowska-Sroka, N. Pawlik, T. Goryczka and W.A. Pisarski. Influence of silicate sol\u2013gel host matrices and catalyst agents on the luminescent properties of Eu<sup>3+<\/sup>\/Gd<sup>3+<\/sup> under different excitation wavelengths. RSC Adv., 5 (2015) 98773-98782<br \/>\nIF = 3.84<\/li>\n<li>K. Shinozaki, W. Pisarski, M. Affatigato, T. Honma, T. Komatsu. Glass structure and NIR emission of Er<sup>3+<\/sup> at 1.5 \u00b5m in oxyfluoride BaF<sub>2<\/sub>\u2013Al<sub>2<\/sub>O<sub>3<\/sub>\u2013B<sub>2<\/sub>O<sub>3<\/sub> glasses. Optical Materials, 50 (2015) 238-243<br \/>\nIF = 1,981<\/li>\n<li>M. Kochanowicz, J. Zmojda, P. Miluski, J. Pisarska, W.A. Pisarski, D. Dorosz. NIR to visible upconversion in double &#8211; clad optical fiber co-doped with Yb<sup>3+<\/sup>\/Ho<sup>3+<\/sup>. Optical Materials Express, 5 (2015) 1505-1510<br \/>\nIF = 2.844<\/li>\n<\/ul>\n<p>2014<\/p>\n<ol>\n<li>A. Kos, I. Czopek, J. Pisarska, W.A. Pisarski, R. Lisiecki, W. Ryba-Romanowski. Energy transfer processes from Yb<sup>3+ <\/sup>to Ln<sup>3+<\/sup> (Ln=Er or Tm) in heavy metal glasses. Journal of Rare Earths, 32 (2014) 273-276<br \/>\nIF = 1.363<\/li>\n<li>M. So\u0142tys, L. \u017bur, J. Pisarska, W.A. Pisarski. Excitation and luminescence of Dy<sup>3+<\/sup> ions in PbO-P<sub>2<\/sub>O<sub>5<\/sub>-Ga<sub>2<\/sub>O<sub>3<\/sub> glass system. Journal of Rare Earths, 32 (2014) 213-<br \/>\nIF = 1.363<\/li>\n<li>M. \u017b\u0105d\u0142o, B. Szpikowska-Sroka, L. \u017bur, R. Czoik, W.A. Pisarski. Emission of Eu<sup>3+<\/sup> in sol-gel oxyfluoride glass materials obtained by different preparation methods. Journal of Rare Earths, 32 (2014) 269-272<br \/>\nIF = 1.363<\/li>\n<li>J. Pisarska, A. Kos, M. So\u0142tys, L. \u017bur, W. A. Pisarski. Energy transfer from Tb<sup>3+<\/sup> to Eu<sup>3+<\/sup> in lead borate glass. Journal of Non-Crystalline Solids, 388 (2014) 1-5<br \/>\nIF = 1.597<\/li>\n<li>J. Pisarska, M. So\u0142tys, L. \u017bur, W. A. Pisarski, C. K. Jayasankar. Excitation and luminescence of rare earth-doped lead phosphate glasses. Appl. Phys. B, 116 (2014) 837.<br \/>\nIF = 1.782<\/li>\n<li>W. A. Pisarski, L. Zur, T. Goryczka, M. So\u0142tys, J. Pisarska. Structure and spectroscopy of rare earth \u2013 doped lead phosphate glasses. Journal of Alloys and Compounds, 587 (2014) 90\u201398<br \/>\nIF = 2.390<\/li>\n<li>B. Szpikowska-Sroka, L. \u017bur, R. Czoik, T. Goryczka, M. \u017b\u0105d\u0142o, and W.A. Pisarski. Ultraviolet-to-visible downconversion luminescence in solgel oxyfluoride glass ceramics containing Eu<sup>3+<\/sup>:GdF<sub>3<\/sub> nanocrystals. Optics Letters, 39 (2014) 3181-3184<br \/>\nIF = 3.385<\/li>\n<li>B. Szpikowska-Sroka, M. \u017b\u0105d\u0142o, R. Czoik, L. \u017bur, W. A. Pisarski. Energy transfer from Gd3+ to Eu3+ in silica xerogels. Journal of Luminescence, 154 (2014) 290-293<br \/>\nIF = 2.144<\/li>\n<li>B. Szpikowska-Sroka, A. Guz, J. Po\u0142edniok. A New Sensitive Spectrophotometric Determination of Sodium 2-Mercaptoethanesulfonate Using Leuco Xylene Cyanol FF. Journal of Analytical Chemistry, 69 (10) (2014) 929\u2013934<br \/>\nIF = 0,812<\/li>\n<li>M. So\u0142tys, J. Pisarska, L. \u017bur, T. Goryczka, W. A. Pisarski. Influence of M<sub>2<\/sub>O<sub>3<\/sub> (M = Al, Ga) glass modifiers on structure, thermal and spectroscopic properties of rare earth ions in lead phosphate based systems. Proc. of SPIE, 9228 (2014) 92280A<\/li>\n<li>J. Pisarska, W. A. Pisarski, D. Dorosz, J. Dorosz. Optical properties of lead-free oxyfluoride germanate glasses doped with Pr<sup>3+<\/sup>. Proc. of SPIE, 9228 (2014) 922809<\/li>\n<li>J. Janek, J. Pisarska, W. A. Pisarski. Rare earth doped lead-free germanate glasses for modern photonics. Photonics Letters of Poland, 6 (2014) 71-73<\/li>\n<li>J. Pisarska, A. Kos, E. Pietrasik, W. A. Pisarski, Energy transfer from Dy3+ to Tb3+ in lead borate glass, Materials Letters 129 (2014) 146-148<br \/>\nIF = 2.269<\/li>\n<li>L. \u017bur, M. So\u0142tys, T. Goryczka, J. Pisarska, W. A. Pisarski. Influence of PbF<sub>2<\/sub> concentration on thermal, structural and spectroscopic properties of Eu<sup>3+<\/sup>-doped lead phosphate glasses. Journal of Molecular Structure, 1075 (2014) 605<br \/>\nIF = 1.602<\/li>\n<\/ol>\n<p>2013<\/p>\n<ol>\n<li>J. Pisarska, M. So\u0142tys, L. \u017bur, W. A. Pisarski. Rare earths in lead phosphate glasses, In: Rare Earths: New Research, Nova Science Publishers Inc, New York 2013<\/li>\n<li>L. \u017bur, J. Pisarska, W. A. Pisarski. Influence of PbF<sub>2<\/sub> concentration on spectroscopic properties of Eu<sup>3+<\/sup> and Dy<sup>3+<\/sup> ions in lead borate glasses. Journal of Non-Crystalline Solids, 377 (2013) 114<br \/>\nIF = 1.716<\/li>\n<li>L. \u017bur, M. So\u0142tys, J. Pisarska, W. A. Pisarski. Absorption and luminescence properties of terbium ions in heavy metal glasses. Journal of Alloys and Compounds, 578 (2013) 512<br \/>\nIF = 2.726<\/li>\n<li>J. Pisarska, I. Czopek, R. Lisiecki, W. Ryba-Romanowski, T. Goryczka, W. A.Pisarski. PbWO<sub>4<\/sub> formation during controlled crystallization of lead borate glasses. Ceramics International, 39 (2013) 9151\u20139156<br \/>\nIF = 1.789<\/li>\n<li>L. \u017bur, J. Janek, M. So\u0142tys, J. Pisarska, W.A. Pisarski. Spectroscopic properties of Eu<sup>3+<\/sup>, Dy<sup>3+<\/sup> and Tb<sup>3+<\/sup> ions in lead silicate glasses obtained by the conventional high-temperature melt-quenching technique. Physica Scripta, T157 (2013) 014035<br \/>\nIF = 1.032<\/li>\n<li>B. Szpikowska-Sroka, L. \u017bur, R. Czoik, T. Goryczka, A. S. Swinarew, M. \u017b\u0105d\u0142o, W. A. Pisarski. Long-lived emission from Eu<sup>3+<\/sup>:PbF<sub>2<\/sub> nanocrystals distributed into sol\u2013gel silica glass. Journal of Sol-Gel Science and Technology, 68 (2) (2013) 278-283<br \/>\nIF = 1.660<\/li>\n<li>J. Po\u0142edniok, B. Szpikowska-Sroka. Spectrophotometric Study of Colour Reaction of Vanadium(IV) with Chrome Azurol S in the Presence of Cationic and Non-Ionic Surfactants. Journal of Analytical Chemistry, 68 (1) (2013) 45\u201349<br \/>\nIF = 0.747<\/li>\n<li>R. Czoik, L. \u017bur, B. Szpikowska-Sroka, J. Po\u0142edniok, A. S. Swinarew, W. A. Pisarski. Luminescence investigation of Fe (III) &#8211; Rhodamine B complexes obtained by solvent extraction. Journal of Luminescence, 139 (2013) 35-39<br \/>\nIF = 2.102<\/li>\n<li>W. A. Pisarski, J. Pisarska, L. \u017bur, T. Goryczka. Structural and optical aspects for Eu<sup>3+<\/sup> and Dy<sup>3+<\/sup> ions in heavy metal glasses based on PbO\u2013Ga<sub>2<\/sub>O<sub>3<\/sub>\u2013XO<sub>2 <\/sub>(X = Te, Ge, Si). Optical Materials, 35 (2013) 1051-1056<br \/>\nIF = 2.023<\/li>\n<li>W. A. Pisarski, L. \u017bur, M. So\u0142tys, J. Pisarska. Terbium-terbium interactions in lead phosphate glasses. Journal of Applied Physics, 113 (2013) 143504<br \/>\nIF= 2.168<\/li>\n<li>B. Szpikowska-Sroka. A Simple and Sensitive Analytical Method for the Determination of Thiamine in Pharmaceutical Preparations. Journal of Analytical Chemistry, 68 (2013) 218-222<br \/>\nIF=0.616<\/li>\n<li>J. Polak, M. Bartoszek, I. Stanimirova. A study of the antioxidant properties of beers using electron paramagnetic resonance. Food Chemistry, 141(3) (2013) 3042-3049<br \/>\nIF=3.655<\/li>\n<li>N. M\u0142ynarczyk, M. Bartoszek, J. Polak, W.W. Su\u0142kowski. Forms of phosphorus in sediments from the Gocza\u0142kowice Reservoir. Applied Geochemistry, 37 (2013) 87\u2013939<br \/>\nIF=2.176<\/li>\n<li>W. A. Pisarski, J. Pisarska, I. Czopek, T. Goryczka, R. Lisiecki, W. Ryba-Romanowski, Enhanced and Long-Lived Near-Infrared Luminescence of Er3+ Ions in Lead Borate Glass-Ceramics Containing PbWO4 Nanocrystals. Journal of the American Ceramic Society, 96 (6) (2013) 1685\u20131687<br \/>\nIF= 2.107<\/li>\n<\/ol>\n<p>2012<\/p>\n<ol>\n<li>M. Bartoszek, J. Polak. An EPR study of antioxidant properties of alcoholic beverages. Food Chemistry, 132(4) (2012) 2089\u20132093,<br \/>\nIF 3,458<\/li>\n<li>W. A. Pisarski, J. Pisarska, R. Lisiecki, G. Dominiak-Dzik, W. Ryba-Romanowski. Luminescence quenching of Dy<sup>3+<\/sup> ions in lead bismuthate glasses. Chemical Physics Letters, 531 (2012) 114\u2013118<br \/>\nIF 2.337<\/li>\n<li>M. Bartoszek, N. M\u0142ynarczyk, J. Polak, W.W. Su\u0142kowski. Characterization of phosphorus compounds in sediment from a drinking water reservoir. Fresenius Environmental Bulletin, 3 (2012) 621-626<br \/>\nIF 0.716<\/li>\n<li>J. Pisarska, L. \u017bur, W.A. Pisarski. Structural and optical characterization of Dy-doped heavy-metal oxide and oxyhalide borate glasses. Physica Status Solidi A, 209 (2012) 1134\u20131140<br \/>\nIF 1.463<\/li>\n<li>J. Pisarska, T. Goryczka, L. \u017bur, W.A. Pisarski. Heavy metal glasses and transparent glass-ceramics: preparation, local structure and optical properties. Optica Applicata, XLII (2012) 381\u2013386<br \/>\nIF 0.398<\/li>\n<li>L. \u017bur, J. Pisarska, W.A. Pisarski. Influence of heavy metal oxide and activator concentration on spectroscopic properties of Eu<sup>3+<\/sup>, Dy<sup>3+<\/sup> and Tb<sup>3+<\/sup> ions in lead borate glasses. Optica Applicata, XLII (2012) 345\u2013352<br \/>\nIF 0.398<\/li>\n<\/ol>\n<p>2011<\/p>\n<ol>\n<li>B. Szpikowska- Sroka, J. Poledniok, Spectrophotometric Determination of L- Ascorbic Acid in Pharmaceuticals. Journal of Analytical Chemistry, 66 (2011) 941-945<br \/>\nIF = 0.747<\/li>\n<li>W. A. Pisarski, L. \u017bur, and J. Pisarska. Optical transitions of Eu<sup>3+<\/sup> and Dy<sup>3+<\/sup> ions in lead phosphate glasses. Optics Letters, 36 (2011) 990-992<br \/>\nIF = 3.059<\/li>\n<li>J. Pisarska, L. Zur, W.A. Pisarski. Optical spectroscopy of Dy<sup>3+<\/sup> ions in heavy metal lead-based glasses and glass-ceramics. Journal of Molecular Structure, 993 (2011) 160-166<br \/>\nIF = 1.551<\/li>\n<li>J. Pisarska, L. Zur, W.A. Pisarski. Visible luminescence of dysprosium ions in oxyhalide lead borate glasses. Spectrochimica Acta A, 79 (2011) 705-707<br \/>\nIF = 1.566<\/li>\n<li>J. Pisarska, R. Lisiecki, W. Ryba-Romanowski, G. Dominiak-Dzik, T. Goryczka, L. Grobelny, W.A. Pisarski. Glass preparation and temperature-induced crystallization in multicomponent B<sub>2<\/sub>O<sub>3<\/sub>-PbX<sub>2<\/sub>-PbO-Al<sub>2<\/sub>O<sub>3<\/sub>-WO<sub>3<\/sub>-Dy<sub>2<\/sub>O<sub>3<\/sub> (X = F, Cl, Br) system. Journal of Non-Crystalline Solids, 357 (2011) 1228-1231<br \/>\nIF = 1.252<\/li>\n<li>W. A. Pisarski, J. Pisarska, R. Lisiecki, L. Grobelny, G. Dominiak-Dzik, W. Ryba-Romanowski. Luminescence spectroscopy of rare earth-doped oxychloride lead borate glasses. Journal of Luminescence, 131 (2011) 649-652<br \/>\nIF = 1.847<\/li>\n<li>W. A. Pisarski, J. Pisarska, M. Maczka, R. Lisiecki, L. Grobelny, T. Goryczka, G. Dominiak-Dzik, W. Ryba-Romanowski. Rare earth-doped lead borate glasses and transparent glass-ceramics: structure-property relationship. Spectrochimica Acta A, 79 (2011) 696-700<br \/>\nIF = 1.566<\/li>\n<li>W. A. Pisarski, L. Grobelny, J. Pisarska, R. Lisiecki, W. Ryba-Romanowski. Spectroscopic properties of Yb<sup>3+<\/sup> and Er<sup>3+<\/sup> ions in heavy metal glasses. Journal of Alloys and Compounds, 509 (2011) 8088-8092<br \/>\nIF = 2.135<\/li>\n<li>L. Grobelny, J. Pisarska, W.A. Pisarski. Excitation energy transfer and optical transitions in heavy metal glasses doubly doped with Yb<sup>3+<\/sup> and Er<sup>3+<\/sup>. SPIE, 8010 (2011) 80100O1-5<\/li>\n<li>J. Pisarska, L. Zur, W.A. Pisarski. Transparent glass-ceramics containing Eu<sup>3+<\/sup> and Dy<sup>3+<\/sup> ions for visible optoelectronics. SPIE, 8010 (2011) 80100N1-6<\/li>\n<li>W. A. Pisarski, J. Pisarska, L. Grobelny, R. Lisiecki, W. Ryba-Romanowski. Near-infrared luminescence and up-conversion processes of lanthanide ions in heavy metal glasses. Proc. SPIE 8001 (2011) 80012L<\/li>\n<li>J. Pisarska, L. Zur, W.A. Pisarski, Rare earth doped lead phosphate glasses for visible luminescence, Proc. SPIE, 8001 (2011) 80012K<\/li>\n<li>L. Grobelny, W.A. Pisarski, J. Pisarska, R. Lisiecki, W. Ryba-Romanowski. Up-conversion processes of rare earth ions in heavy metal glasses. Journal of Rare Earths, 29 (2011) 1192-1194<br \/>\nIF = 1.086<\/li>\n<li>L. Zur, J. Pisarska, W.A. Pisarski. Terbium-doped heavy metal glasses for green luminescence. Journal of Rare Earths, 29 (2011) 1198-1200<br \/>\nIF = 1.086<\/li>\n<li>J. Pisarska, L. Zur, T. Goryczka, W.A. Pisarski. Local structure and luminescent properties of lead phosphate glasses containing rare earth ions. Journal of Rare Earths, 29 (2011) 1157-1160<br \/>\nIF = 1.086<\/li>\n<\/ol>\n<p>2010<\/p>\n<ol>\n<li>J. Pisarska, R. Lisiecki, G. Dominiak-Dzik, W. Ryba-Romanowski, T. Goryczka, L. Grobelny, W.A. Pisarski. Influence of PbX<sub>2<\/sub> (X = F, Cl, Br) content and thermal treatment on structure and optical properties of lead borate glasses doped with rare earth ions. Optica Applicata, 40 (2010) 351-358<br \/>\nIF = 0.459<\/li>\n<li>W. A. Pisarski, L. Grobelny, J. Pisarska, R. Lisiecki, G. Dominiak-Dzik, W. Ryba-Romanowski. Laser spectroscopy of rare earth ions in lead borate glasses and transparent glass-ceramics. Laser Physics, 20 (2010) 649-655<br \/>\nIF = 0.777<\/li>\n<li>J. Pisarska, W.A. Pisarski, W. Ryba-Romanowski. Laser spectroscopy of Nd<sup>3+<\/sup> and Dy<sup>3+<\/sup> ions in lead borate glasses. Optics and Laser Technology, 42 (2010) 805-809<br \/>\nIF = 0.892<\/li>\n<li>J. Pisarska, R. Lisiecki, W. Ryba-Romanowski, T. Goryczka, W.A. Pisarski. Unusual luminescence behavior of Dy<sup>3+<\/sup>&#8211; doped lead borate glass after heat treatment. Chemical Physics Letters, 489 (2010) 198-201<br \/>\nIF = 2.169<\/li>\n<li>J. Pisarska, W.A. Pisarski &#8222;Lanthanide &#8211; doped lead borate glasses for optical applications: a review&#8221; Chapter 4 in Handbook on Borates: Chemistry, Production and Applications (Ed. M.P. Chung), Series: Materials Science and Technologies, ISBN: 978-1-60741-822-1, Nova Publishers, New York 2010, pp. 107-158<\/li>\n<li>M. Bartoszek, J. Polak, A. Kos, N. Mlynarczyk, W.W. Sulkowski. Spectroscopic study of humic substances isolated from sediment and water. Fresenius Environmental Bulletin, 19 (7) (2010) 1260-1264<\/li>\n<\/ol>\n<hr \/>\n<p>\n<style type=\"text\/css\">a[data-mtli~=\"mtli_filesize310,31kB\"]:after {content:\" (310,31 kB)\"}a[data-mtli~=\"mtli_filesize265,49kB\"]:after {content:\" (265,49 kB)\"}a[data-mtli~=\"mtli_filesize333,31kB\"]:after {content:\" (333,31 kB)\"}a[data-mtli~=\"mtli_filesize338,13kB\"]:after {content:\" (338,13 kB)\"}a[data-mtli~=\"mtli_filesize371,45kB\"]:after {content:\" (371,45 kB)\"}a[data-mtli~=\"mtli_filesize343,73kB\"]:after {content:\" (343,73 kB)\"}a[data-mtli~=\"mtli_filesize108,87kB\"]:after {content:\" (108,87 kB)\"}<\/style><\/div>\r\n                    <\/div>\r\n                <\/div>[\/vc_column][\/vc_row][vc_row][vc_column][vc_column_text][\/vc_column_text][\/vc_column][\/vc_row][vc_row][vc_column][vc_column_text][\/vc_column_text][\/vc_column][\/vc_row]<\/p>\n<style type=\"text\/css\">a[data-mtli~=\"mtli_filesize310,31kB\"]:after {content:\" (310,31 kB)\"}a[data-mtli~=\"mtli_filesize265,49kB\"]:after {content:\" (265,49 kB)\"}a[data-mtli~=\"mtli_filesize333,31kB\"]:after {content:\" (333,31 kB)\"}a[data-mtli~=\"mtli_filesize338,13kB\"]:after {content:\" (338,13 kB)\"}a[data-mtli~=\"mtli_filesize371,45kB\"]:after {content:\" (371,45 kB)\"}a[data-mtli~=\"mtli_filesize343,73kB\"]:after {content:\" (343,73 kB)\"}a[data-mtli~=\"mtli_filesize108,87kB\"]:after {content:\" (108,87 kB)\"}<\/style>","protected":false},"excerpt":{"rendered":"<p>[vc_row][vc_column][vc_column_text][\/vc_column_text][\/vc_column][\/vc_row][vc_row][vc_column][vc_column_text][\/vc_column_text][\/vc_column][\/vc_row][vc_row][vc_column][\/vc_column][\/vc_row][vc_row][vc_column][vc_column_text][\/vc_column_text][\/vc_column][\/vc_row][vc_row][vc_column][vc_column_text][\/vc_column_text][\/vc_column][\/vc_row] [&#8230;]<\/p>\n<p><a class=\"btn btn-secondary understrap-read-more-link\" href=\"https:\/\/us.edu.pl\/instytut\/ich\/dzialalnosc-naukowa\/zespoly-badawcze\/spektroskopia-i-materialy-luminescencyjne\/\">Read More&#8230;<\/a><\/p>\n","protected":false},"author":99,"featured_media":0,"parent":126,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"_expiration-date-status":"","_expiration-date":0,"_expiration-date-type":"","_expiration-date-categories":[],"_expiration-date-options":[]},"acf":[],"_links":{"self":[{"href":"https:\/\/us.edu.pl\/instytut\/ich\/wp-json\/wp\/v2\/pages\/367"}],"collection":[{"href":"https:\/\/us.edu.pl\/instytut\/ich\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/us.edu.pl\/instytut\/ich\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/us.edu.pl\/instytut\/ich\/wp-json\/wp\/v2\/users\/99"}],"replies":[{"embeddable":true,"href":"https:\/\/us.edu.pl\/instytut\/ich\/wp-json\/wp\/v2\/comments?post=367"}],"version-history":[{"count":10,"href":"https:\/\/us.edu.pl\/instytut\/ich\/wp-json\/wp\/v2\/pages\/367\/revisions"}],"predecessor-version":[{"id":3601,"href":"https:\/\/us.edu.pl\/instytut\/ich\/wp-json\/wp\/v2\/pages\/367\/revisions\/3601"}],"up":[{"embeddable":true,"href":"https:\/\/us.edu.pl\/instytut\/ich\/wp-json\/wp\/v2\/pages\/126"}],"wp:attachment":[{"href":"https:\/\/us.edu.pl\/instytut\/ich\/wp-json\/wp\/v2\/media?parent=367"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}