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Effect of Lithium Nitride on Chemical Interaction of Hafnium and Tantalum Diborides with Iridium
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DOI:10.1111/jace.70985.png)
Abstract
En 中文
The primary products formed by the interaction of hafnium and tantalum diborides with lithium nitride over the temperature range of 800°C–1400°C are solid solution phases based on metal monoborides and hexagonal boron nitride. Density functional theory calculations indicate that nitrogen and oxygen atoms stabilize the crystal lattices of metal monoborides. In the reaction products of equimolar multicomponent HfB2–Li3N–Ir system, metal monoboride and boron nitride phases coexist with the iridium-containing compounds Hf2Ir5B2 and HfIr3Bx. In the equimolar TaB2–Li3N–Ir system, TaB and BN phases coexist with TaIr3. X-ray diffraction analysis does not reveal the formation of iridium borides or boron-rich ternary compounds, such as HfIr3B4 or TaIr2B2.
Keywords:
borides
lithium nitride
iridium-containing intermetallics
solid solutions
Journal
IF:
3.8
Papers:
1.7W
Citations:
5.4W
