Synthesis of Binary Transition Metal Nitrides, Carbides and Borides from the Elements in the Laser-Heated Diamond Anvil Cell and Their Structure-Property Relations

Синтез бинарных нитридов, карбидов и боридов переходных металлов из простых веществ в алмазной наковальне с лазерным нагревом и взаимосвязи между их структурой и свойствами
Alexandra Friedrich, Björn Winkler, Erick A. Juárez‐Arellano, Lkhamsuren Bayarjargal
2011-09-28

high-pressure propertieslaser-heated diamond anvil celltransition metal boridestransition metal carbidestransition metal nitrides
Transition metal nitrides, carbides and borides have a high potential for industrial applications as they not only have a high melting point but are generally harder and less compressible than the pure metals. Here we summarize recent advances in the synthesis of binary transition metal nitrides, carbides and borides focusing on the reaction of the elements at extreme conditions generated within the laser-heated diamond anvil cell. The current knowledge of their structures and high-pressure properties like high-(p; T) stability, compressibility and hardness is described as obtained from experiments.
1
Binary transition-metal nitrides, carbides, and borides can be synthesized from their constituent elements under extreme pressure and temperature in a laser-heated diamond anvil cell.
2
The paper emphasizes structure–property relationships in binary transition-metal nitrides, carbides, and borides produced under extreme conditions.
3
The review summarizes experimentally determined crystal structures and high-pressure properties, including pressure–temperature stability, compressibility, and hardness.
4
These compounds are promising industrial materials because they generally have higher melting points, greater hardness, and lower compressibility than the corresponding pure metals.

Binary transition metal nitrides, carbides, and borides synthesized from the elements under extreme pressure and temperature in a laser-heated diamond anvil cell

Their crystal structures and high-pressure properties, including high-(p,T) stability, compressibility, and hardness

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2011-09-28
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Alexandra Friedrich
Björn Winkler
Erick A. Juárez‐Arellano
Lkhamsuren Bayarjargal
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