J. Barzowska
University of Gdańsk
43 Papers
276 Citations
J. Barzowska is an academic researcher from University of Gdańsk. The author has contributed to research in topics: Luminescence & Photoluminescence. The author has an hindex of 12, co-authored 38 publications.
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Papers
Mechanoluminescence And Photoluminescence Heterojunction for Superior Multi-mode Sensing Platform of Friction, Force, Pressure And Temperature in Fibers And 3D-printed Polymers.
Teng Zheng,Marcin Runowski,Inocencio R. Martín,K. Soler-Carracedo,Małgorzata Skwierczyńska,Małgorzata Sójka,J. Barzowska,Sebastian Mahlik,F. Rivera-López,Piotr Kulpinski,Víctor Lavín,Daniel Alonso,Dengfeng Peng +12 more
TL;DR: In this paper , a photoluminescence (PL)- and mechanoluminecence (ML)-based multifunctional sensing platform was built by combining heterojunctioned ZnS/CaZnOS:Mn2+ mechano-photonic materials using a 3D-printing technique and fiber spinning.
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Binding energies of Eu2+ and Eu3+ ions in β-Ca2SiO4 doped with europium
TL;DR: In this paper, Europium replaces Ca2+ ions either as Eu2+ or Eu3+, both occupying two not equivalent sites; seven fold and eight fold coordinated by O2−.
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The effect of pressure on luminescence properties of Cr3+ ions in LiSc(WO4)2 crystals—Part I: Pressure dependent emission lineshape
Y.R. Shen,Marek Grinberg,J. Barzowska,K.L. Bray,Jerzy Hanuza,Jerzy Hanuza,Przemysław J. Dereń +6 more
TL;DR: In this paper, the authors report the results of high-pressure studies of spectral properties in Cr3+-doped LiSc(WO4)2 crystals between ambient pressure and 260kbar.
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KMgF3:Eu2+ as a new fluorescence-based pressure sensor for diamond anvil cell experiments
TL;DR: In this article, an optical pressure sensor KMgF3:Eu2+ suitable for experiments in diamond anvil cell (DAC), which was calibrated against the ruby reference sensor at pressures ranging from atmospheric up to 30 GPa (300 kbar), at room temperature.
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High Pressure Spectroscopy of Ce Doped Yag Crystal
TL;DR: In this paper, a significant red shift of the peak of the emission band (the respective pressure coefficient has been equal to 12cm−1/kbar) has been obtained by taking into account pressure induced increase of the 5d1 level splitting and increase of electron-lattice coupling strength.
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