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Study of Phase Transformations in ZrO2 Ceramics Stabilized by Y2O3 and Their Role in Changing Strength Characteristics and Heat Resistance
(Sustainability, 2025)
The results obtained reflect the determination of the possibility of the stability
enhancement of the strength and thermal parameters of zirconium-containing ceramic
materials via the addition of a stabilizing additive in the form of Y2O3. According to the
data obtained, a connection between phase transformations caused by the addition of the
stabilizing Y2O3 additive and an ...
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 ...
Ab Initio Investigation of the Stability, Electronic, Mechanical, and Transport Properties of New Double Half Heusler Alloys Ti2Pt2ZSb (Z = Al, Ga, In)
(Metals, 2025)
This research aimed to explore the structural, electronic, mechanical, and vibrational properties of double half Heusler compounds with the generic formula Ti2Pt2ZSb
(Z = Al, Ga, and In), using density functional theory calculations. The generalized gradient
approximation within the PBE functional was employed for structural relaxation and for
calculations of vibrational and ...
Density Functional Theory Study of Pressure-Dependent Structural and Electronic Properties of Cubic Zirconium Dioxide
(Ceramics, 2025)
In this study, the structural, electronic, and elastic properties of cubic zirconium
dioxide (c-ZrO2) were investigated using the Density Functional Theory (DFT) approach.
Lattice parameter optimization revealed that the lattice constant is 5.107 Å, the Zr–O bond
length is 2.21 Å, and the unit cell density is 6.075 g/cm3
for the B3LYP functional. The
bandgap width was ...
Study of Phase Transformations in ZrO2 Ceramics Stabilized by Y2O3 and Their Role in Changing Strength Characteristics and Heat Resistance
(Sustainability, 2025)
The results obtained reflect the determination of the possibility of the stability
enhancement of the strength and thermal parameters of zirconium-containing ceramic
materials via the addition of a stabilizing additive in the form of Y2O3. According to the
data obtained, a connection between phase transformations caused by the addition of the
stabilizing Y2O3 additive and an ...
Study of Phase Transformations in ZrO2 Ceramics Stabilized by Y2O3 and Their Role in Changing Strength Characteristics and Heat Resistance
(Sustainability, 2025)
The results obtained reflect the determination of the possibility of the stability
enhancement of the strength and thermal parameters of zirconium-containing ceramic
materials via the addition of a stabilizing additive in the form of Y2O3. According to the
data obtained, a connection between phase transformations caused by the addition of the
stabilizing Y2O3 additive and an ...
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 ...
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 ...
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 ...










