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8 761 (0,104s)

Project

Development of the novel scintillation materials for fine imaging in the safety and medical applications. (ME 953)

Project is aiming in the development and characterization of new scintillation materials with high innovation and application potential. Both fundamental physics will be responsible for material preparation while their char...

BM - Fyzika pevných látek a magnetismus

  • 2007 - 2009
  • 1 397 tis. Kč
  • 690 tis. Kč
  • MŠMT
Project

Investigation on the performance and defect characterization in the advanced scintillator materials (ME08034)

To prepare and characterize the samples of single crystal scintillators based on complex oxide coupounds. To describe processes of energy transfer and capture and the role of defects in them. To propose and realize technological modification...

BM - Fyzika pevných látek a magnetismus

  • 2008 - 2009
  • 2 026 tis. Kč
  • 1 450 tis. Kč
  • MŠMT
Project

New oxide materials doped with lanthanides and transition metals for production of scintillators (TJ01000411)

The main aims of the project are: – to create an economically convenient method for testing new scintillation oxide materials in form of bulk materials, thin films and transparent ceramics – to develop a new scintillat...

Inorganic and nuclear chemistry

  • 2018 - 2019
  • 2 519 tis. Kč
  • 2 120 tis. Kč
  • TA ČR
Project

Single crystal and ceramic scintillators innovative material solutions for advanced aplications. (LH12150)

Preparation of ceramic and single crystal materials from the group of sesquioxides and multicomponent garnet oxide and fluoride materials, undoped and rare earth doped. Characterization of their optical, luminescence and scintil...

BM - Fyzika pevných látek a magnetismus

  • 2012 - 2013
  • 1 844 tis. Kč
  • 1 844 tis. Kč
  • MŠMT
Project

Performance and defect characterization in the advanced single crystal scintillation materials (ME10084)

To prepare and characterize the samples of single crystal scintillators based on complex oxide and rare earth bromide compounds. To describe processes of energy transfer and capture and the role of defects in them. To propose and realize tec...

BM - Fyzika pevných látek a magnetismus

  • 2010 - 2011
  • 900 tis. Kč
  • 900 tis. Kč
  • MŠMT
Project

Scintillating multimodal materials and quantum heterostructures. (GA23-05615S)

We will design, fabricate and optimize scintillating nanoscale materials materials for biomedical applications and quantum heterostructures for ultrafast detection systems needed especially in medical imaging. Multimodal

Condensed matter physics (including formerly solid state physics, supercond.)

  • 2023 - 2025
  • 9 946 tis. Kč
  • 9 717 tis. Kč
  • GA ČR
Project

New scintillatot materials for scientific, medical and industrial applications (ME 519)

Study of basic mechanisms of luminescence and scintillation and optimisation of characteristics in modern scintillation materials based on doped PbWO4, Gd2SiO4:Ce,Li2B4O7:Ce, Yb-containing materials and doped GdF3....

BM - Fyzika pevných látek a magnetismus

  • 2002 - 2003
  • 2 946 tis. Kč
  • 456 tis. Kč
  • MŠMT
Project

Innovative ceramic, glassceramic and single crystal scintillators material tailoring and physical phenomena (LH12185)

To prepare and characterize the samples of: 1) ceramic scintillators based of divalent ions 2) glassceramic scintillators based on PbF2 3) single crystals the proceses of energy transfer and capture in the prepared materials

BM - Fyzika pevných látek a magnetismus

  • 2012 - 2013
  • 1 259 tis. Kč
  • 1 259 tis. Kč
  • MŠMT
Project

New scintillator materials for scientific, medical and industrial applications (ME 871)

study of luminiccence and scintillation features of monocrystales on basis of complex compounds doped Pr3+ ions and monocrystal ZnO by methods of optical and luminiscence spectroscopy......

JJ - Ostatní materiály

  • 2006 - 2006
  • 490 tis. Kč
  • 320 tis. Kč
  • MŠMT
Project

Material and technological research of scintillation detectors (FV30231)

and production of prototypes of two new materials - polyethylene naphtalate as a scintillator and nanocomposite polystyrene scintillator. PEN is perspective material used in different to test scintillation

Electrical and electronic engineering

  • 2018 - 2020
  • 8 375 tis. Kč
  • 5 751 tis. Kč
  • MPO
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