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USA-CO-NULL Azienda Directories
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Azienda News:
- mp-7020: LiYO2 (monoclinic, P2_1 c, 14) - Materials Project
LiYO2 crystallizes in the monoclinic P2_1 c space group The structure is three-dimensional Li1+ is bonded in a distorted T-shaped geometry to three O2- atoms There are a spread of Li–O bond distances ranging from 1 92–2 02 Å Y3+ is bonded to six O2- atoms to form a mixture of distorted edge and corner-sharing YO6 octahedra The corner-sharing octahedra tilt angles range from 18–37° There are a spread of Y–O bond distances ranging from 2 22–2 37 Å There are two inequivalent
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- Synthesis of crystalline particles of LiYO 2 by sol-gel method and its . . .
[Li(CH 3COO)]2H 2O [Y(NO 3)36H 2O] of 1:3 and 1:2, respectively, at 950°C and 1000°C, with a heating period of 6 hours LiYO2's reaction and synthesis mechanism was examined and put forth I discovered that exothermic reactions were created during diffractometer, it was established what LiYO 2 looked like in terms of phase structure and purity The starting material was subjected to DSC TGA analysis under a 10 mL min air circulation at a heating rate of 15–30
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- Chemical stability of LiYO 2 as an insulating material
Ternary oxide includes Li, such as Li 2 TiO 3 or LiAlO 2, can be sintered from Li 2 CO 3 and metal oxide [10], [11] A LiYO 2 also has been synthesized from Li 2 CO 3 and Y 2 O 3 [12] by solid state reaction In this study, powder of Li 2 CO 3 and Y 2 O 3 were used as starting material, and these reagents had more than 99 9% purity These powders were mixed with 1:1 mole ratio and milled by a planetary ball mill for 30 min Next, it pressed into a 10 mm rectangular pellet with 1 mm thickness
- Effect of LiYO2 on the synthesis and pressureless sintering . . . - Springer
Second, with introduction of LiYO 2, a Li–Si–Y–O liquid phase developed at 980 °C, favoring reaction between Y 2 O 3 –SiO 2 Third, LiYO 2 can decompose into Li 2 O and Y 2 O 3 at ≈1400 °C, and Li 2 O would evaporate rapidly due to its high evaporation pressure 18 Matovic et al 13 measured the evaporation rate of LiYO 2 during sintering of Si 3 N 4 with LiYO 2 additive
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- Spark plasma sintering of ZrC–SiC ceramics with LiYO
The LiYO 2 additive was already used in comparison to mixtures of lithia and yttria, which have been effective single-component additives [13] and it offers several advantages For example, it is less susceptible to hydrolysis and has a lower vapor pressure than Li 2 O The use of LiYO 2 leads to high relative densities and lower weight loss, when compared to the samples sintered with Li 2 O+Y 2 O 3 mixture The difference in sintering behavior occurs because of the heterogeneity of the
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