4.8 Article

Synthesis, Crystal Structure, and Elastic Properties of Novel Tungsten Nitrides

期刊

CHEMISTRY OF MATERIALS
卷 24, 期 15, 页码 3023-3028

出版社

AMER CHEMICAL SOC
DOI: 10.1021/cm301516w

关键词

tungsten nitride; high-pressure synthesis; ion exchange

资金

  1. China 973 Program [2011CB808205]
  2. National Natural Science Foundation of China [11027405]
  3. Carnegie Institute of Washington
  4. Carnegie DOE Alliance Center
  5. University of Nevada at Las Vegas
  6. Lawrence Livermore National Laboratory through DOE National Nuclear Security Administration, DOE Basic Energy Sciences
  7. NSF
  8. DOE-BES [DE-AC02-06CH11357]
  9. Directorate For Geosciences
  10. Division Of Earth Sciences [911492] Funding Source: National Science Foundation

向作者/读者索取更多资源

Among transition metal nitrides, tungsten nitrides possess unique and/or superior chemical, mechanical, and thermal properties. Preparation of these nitrides, however, is challenging because the incorporation of nitrogen into tungsten lattice is thermodynamically unfavorable at atmospheric pressure. To date, most materials in the W-N system are in the form of thin films produced by nonequilibrium processes and are often poorly crystallized, which severely limits their use in diverse technological applications. Here we report synthesis of tungsten nitrides through new approaches involving solid-state ion exchange and nitrogen degassing under pressure. We unveil a number of novel nitrides including hexagonal and rhombohedral W2N3. The final products are phase-pure and well-crystallized in bulk forms. For hexagonal W2N3, hexagonal WN, and cubic W3N4, they exhibit elastic properties rivaling or even exceeding cubic-BN. All four nitrides are prepared at a moderate pressure of 5 GPa, the lowest among high-pressure synthesis of transition metal nitrides, making it practically feasible for massive and industrial-scale production.

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