Projects funded by the NCN


Information on the principal investigator and host institution

Information of the project and the call

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Crystal-phase engineering of complex rare earth doped Ln3+-M3+-O2- (Ln=Lu, Y, Gd, Tb; M=Al, Ga, Sc) oxide systems in the modeling of luminescence, scintillation, and photo-convention properties

2020/39/D/ST3/02711

Keywords:

Single crystal Perovskite and Garnet phases Eutectic composite system Phase transition Crystal growth from the melt Micro-pulling down method Czochralski method Single-crystalline film Liquid phase epitaxy method Luminescence Scintillator Photo-conversion White light-emitting diode

Descriptors:

  • ST3_9: Condensed matter interactions with beams of photons, electrons, etc.
  • ST3_1: Structure of solids, material growth and characterisation
  • ST3_5: Physical properties of semiconductors and insulators

Panel:

ST3 - Condensed matter physics: structure, electronic properties, fluids, nanosciences, biological physics

Host institution :

Uniwersytet Kazimierza Wielkiego, Wydział Fizyki

woj.

Other projects carried out by the institution 

Principal investigator (from the host institution):

dr Karol Andrzej Bartosiewicz 

Number of co-investigators in the project: 6

Call: SONATA 16 - announced on 2020-09-15

Amount awarded: 1 004 760 PLN

Project start date (Y-m-d): 2021-06-23

Project end date (Y-m-d): 2024-06-22

Project duration:: 36 months (the same as in the proposal)

Project status: Project completed

Project description

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Note - project descriptions were prepared by the authors of the applications themselves and placed in the system in an unchanged form.

Information in the final report

  • Publication in academic press/journals (4)
  • Articles in post-conference publications (2)
  1. Development of Tb1.5Gd1.5Al5O12:Ce Single-Crystalline Film Converters for WLED Using a Liquid Phase Epitaxy Growth Method
    Authors:
    A. Markovskyi, V. Gorbenko, T. Zorenko, K. Bartosiewicz, A. Fedorov, Y. Zorenko,
    Academic press:
    Crystals (rok: 2022, tom: 12, strony: 1814), Wydawca: MDPI
    Status:
    Published
    DOI:
    10.3390/cryst12121814 - link to the publication
  2. Development of Tb1.5Gd1.5Al5O12:Ce Single-Crystalline Film Converters for WLED Using a Liquid Phase Epitaxy Growth Method
    Authors:
    A. Markovskyi, V. Gorbenko, T. Zorenko, K. Bartosiewicz, A. Fedorov, Y. Zorenko,
    Academic press:
    Crystals (rok: 2022, tom: 12, strony: 1814), Wydawca: MDPI
    Status:
    Published
    DOI:
    10.3390/cryst12121814 - link to the publication
  3. Elemental Fluctuation in Gd3Al2Ga3O12:Ce Crystals Imposed by Li+ and Mg2+ Co-Doping: The Impact on Defects, Luminescence, and Scintillation Properties
    Authors:
    Karol Bartosiewicz
    Academic press:
    Metals (rok: 2023, tom: 13, strony: 422), Wydawca: MDPI
    Status:
    Published
    DOI:
    10.3390/met13020422 - link to the publication
  4. Elemental Fluctuation in Gd3Al2Ga3O12:Ce Crystals Imposed by Li+ and Mg2+ Co-Doping: The Impact on Defects, Luminescence, and Scintillation Properties
    Authors:
    Karol Bartosiewicz
    Academic press:
    Metals (rok: 2023, tom: 13, strony: 422), Wydawca: MDPI
    Status:
    Published
    DOI:
    10.3390/met13020422 - link to the publication
  1. Modification of Ce³⁺ luminescence in Li⁺ and Mg²⁺ codoped GAGG:Ce scintillators: A comparative study using synchrotron radiation
    Authors:
    K Bartosiewicz, S Kurosawa, A Yamaji, Y Zorenko and A Yoshikawa
    Conference:
    Journal of Physics: Conference Series (rok: 2024, tom: Development of Materials Science in Research and Education, strony: 45666), Wydawca: IOPscience
    Data:
    konferencja 04-08.09.2023
    Status:
    Published
    DOI:
    10.1088/1742-6596/2712/1/012011 - link to the publication
  2. Advances in Ce3+ doped Y1±xAlO3 (x≠ 0) single crystal perovskite scintillators through nonstoichiometric engineering
    Authors:
    Karol Bartosiewicz, Jan Pejchal, Romana Kucerkova, Alena Beitlerova, Vladimir Babin, Vojtech Vanecek, Shunsuke Kurosawa, Kei Kamada, Akira Yoshikawa
    Conference:
    Optical Materials: X (rok: 2024, tom: 22, strony: 100295), Wydawca: ELSEVIER
    Data:
    konferencja 03-08.09.2023
    Status:
    Published
    DOI:
    10.1016/j.omx.2024.100295 - link to the publication