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首页> 外文期刊>Journal of superhard materials: Sverkhtverdye materialy >Crystal structures, elastic properties, and hardness of high-pressure synthesized CrB2 and CrB4
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Crystal structures, elastic properties, and hardness of high-pressure synthesized CrB2 and CrB4

机译:高压合成CrB2和CrB4的晶体结构,弹性和硬度

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Chromium tetraboride (CrB4), a recently proposed candidate for superhard materials, has been synthesized at high pressure and temperature by a solid-state reaction. As a byproduct, chromium diboride (CrB2) also forms and co-exists with CrB4 in the final product. The comparative studies of crystal structure, elastic property, and hardness of both phases have been conducted at the same sample environment conditions. The crystal structure of CrB4 has been refined with an orthorhombic symmetry of Immm(space group no. 71) or Pnnm (space group no. 58) using X-ray diffraction data. Further simulations indicate that the structural distinction between Immm and Pnnm can be resolved by neutron diffraction, due to the high scattering cross-section of boron (B-11) by neutrons. Although CrB2 and CrB4 have close bulk modulus at about 230 GPa, the measured asymptotic Vickers hardness yields 16 GPa for CrB2 but 30 GPa for CrB4, which is nearly two times that of CrB2. The dramatic enhancement in hardness in CrB4 is attributed to the strong three-dimensional Cr-B network, in contrast to the layered lattice structure of hexagonal CrB2.
机译:四硼化铬(CrB4)是一种最近提出的超硬材料候选物,已通过固相反应在高压和高温下合成。作为副产物,二硼化铬(CrB2)也会与CrB4形成并共存于最终产物中。在相同的样品环境条件下进行了两相的晶体结构,弹性和硬度的比较研究。 CrB4的晶体结构使用X射线衍射数据以Immm(空间群编号71)或Pnnm(空间群编号58)的正交对称性进行了精制。进一步的模拟表明,由于中子对硼(B-11)的高散射截面,可以通过中子衍射来解决Immm和Pnnm之间的结构区别。尽管CrB2和CrB4在约230 GPa时具有接近的体积模量,但测得的渐近维氏硬度对于CrB2而言为16 GPa,而对于CrB4为30 GPa,几乎是CrB2的两倍。与六角形CrB2的层状晶格结构相反,CrB4硬度的显着提高归因于强大的三维Cr-B网络。

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