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Luminescence Properties of ZrO2: Ti Ceramics Irradiated with Electrons and High-Energy Xe Ions
(Materials, 2024)
Dauletbekova, A.; Zvonarev, S.; Nikiforov, S.; Akilbekov, A.; Shtang, T.; Karavannova, N.; Akylbekova, A.; Ishchenko, A.; Akhmetova-Abdik, G.; Baymukhanov, Z.; et al. Luminescence Properties of ZrO2: Ti Ceramics Irradiated with Electrons and High-Energy Xe Ions. Materials 2024, 17, 1307. https://doi.org/ 10.3390/ma17061307
Luminescence Properties of ZrO2: Ti Ceramics Irradiated with Electrons and High-Energy Xe Ions
(Materials, 2024)
Dauletbekova, A.; Zvonarev, S.; Nikiforov, S.; Akilbekov, A.; Shtang, T.; Karavannova, N.; Akylbekova, A.; Ishchenko, A.; Akhmetova-Abdik, G.; Baymukhanov, Z.; et al. Luminescence Properties of ZrO2: Ti Ceramics Irradiated with Electrons and High-Energy Xe Ions. Materials 2024, 17, 1307. https://doi.org/ 10.3390/ma17061307
Luminescence Investigation of BaMgF4 Ceramics Under VUV Synchrotron Excitation
(Crystals, 2025)
The luminescence properties of BaMgF4 ceramics synthesized using electron
beam-assisted synthesis were investigated under vacuum ultraviolet (VUV) synchrotron
excitation at a cryogenic temperature of T = 9 K. Their excitation spectra, measured over
the 4–10.8 eV range, and corresponding luminescence spectra revealed a complex multicomponent structure with emission maxima at ...
Comparative VUV Synchrotron Excitation Study of YAG: Eu and YAG: Cr Ceramics
(Crystals, 2024)
Using synchrotron radiation, a comparative VUV excitation study of YAG ceramics doped
with Eu3+ and Cr3+ ions under VUV excitation (10.5–3.7 eV) at 9 K was conducted in this work.
Both ceramics exhibit distinct excitation peaks in the VUV region, indicating high-energy transitions
related to the internal electronic levels of the dopants and interband transitions within the YAG ...
Comparative VUV Synchrotron Excitation Study of YAG: Eu and YAG: Cr Ceramics
(Crystals, 2024)
Using synchrotron radiation, a comparative VUV excitation study of YAG ceramics doped
with Eu3+ and Cr3+ ions under VUV excitation (10.5–3.7 eV) at 9 K was conducted in this work.
Both ceramics exhibit distinct excitation peaks in the VUV region, indicating high-energy transitions
related to the internal electronic levels of the dopants and interband transitions within the YAG ...
Luminescence Properties of ZrO2: Ti Ceramics Irradiated with Electrons and High-Energy Xe Ions
(Materials, 2024)
Samples of ZrO2 ceramics with different concentrations of impurity titanium ions were
synthesized by mixing zirconium and titanium oxide powders in different mass ratios. The Xray diffraction analysis was used to determine the phase composition, lattice parameters, and
crystallite size of the ceramics with varying dopant concentrations. Upon irradiation of the samples
with 220 ...
Luminescence Investigation of BaMgF4 Ceramics Under VUV Synchrotron Excitation
(Crystals, 2025)
The luminescence properties of BaMgF4 ceramics synthesized using electron
beam-assisted synthesis were investigated under vacuum ultraviolet (VUV) synchrotron
excitation at a cryogenic temperature of T = 9 K. Their excitation spectra, measured over
the 4–10.8 eV range, and corresponding luminescence spectra revealed a complex multicomponent structure with emission maxima at ...
Luminescence Investigation of BaMgF4 Ceramics Under VUV Synchrotron Excitation
(Crystals, 2025)
The luminescence properties of BaMgF4 ceramics synthesized using electron
beam-assisted synthesis were investigated under vacuum ultraviolet (VUV) synchrotron
excitation at a cryogenic temperature of T = 9 K. Their excitation spectra, measured over
the 4–10.8 eV range, and corresponding luminescence spectra revealed a complex multicomponent structure with emission maxima at ...
Comparative VUV Synchrotron Excitation Study of YAG: Eu and YAG: Cr Ceramics
(Crystals, 2024)
Using synchrotron radiation, a comparative VUV excitation study of YAG ceramics doped
with Eu3+ and Cr3+ ions under VUV excitation (10.5–3.7 eV) at 9 K was conducted in this work.
Both ceramics exhibit distinct excitation peaks in the VUV region, indicating high-energy transitions
related to the internal electronic levels of the dopants and interband transitions within the YAG ...
High-Temperature Methane Sensors Based on ZnGa2O4:Er Ceramics for Combustion Monitoring
(Technologies, 2025)
The use of CH4 as an energy source is increasing every day. To increase the efficiency
of CH4 combustion and ensure that the equipment meets ecological requirements, it is
necessary to measure the CH4 concentration in the exhaust gases of combustion systems. To
this end, sensors are required that can withstand extreme operating conditions, including
temperatures of at least ...










