压缩性
正交晶系
钻石
体积模量
化学
各向异性
凝聚态物理
蓝宝石
晶体结构
结晶学
复合材料
矿物学
热力学
材料科学
光学
物理
有机化学
激光器
作者
Robert W. Cumberland,Michelle B. Weinberger,John J. Gilman,S. M. Clark,Sarah H. Tolbert,Richard B. Kaner
摘要
The need for wear- and scratch-resistant materials drives the quest for new superhard materials. In this work, we apply two design parameters to identify ultra-incompressible, superhard materials-high valence electron density and high bond covalency. Our first example of such a material is OsB2. The bulk modulus of OsB2 was measured using in situ high-pressure X-ray diffraction and was determined to be in the range of 365-395 GPa. While this value is slightly less than that of the bulk modulus of diamond, due to the anisotropic crystal structure of OsB2, the axis compressibility in the orthorhombic c-direction is less than the axis compressibility found in diamond. OsB2 also scratches the surface of a sapphire window, indicating that the hardness of OsB2 exceeds 2000 kg/mm2.
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