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首页> 外文期刊>International Journal of Refractory Metals & Hard Materials >104845 Investigation the origin and mechanical properties of unusual rigid diamond-like net analogues in manganese tetraboride
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104845 Investigation the origin and mechanical properties of unusual rigid diamond-like net analogues in manganese tetraboride

机译:104845调查锰四硼化物中异常刚性钻石样净类似物的起源和力学性能

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摘要

Higher boron concentration is generally recognized as the most direct method to improve the hardness of transition metal borides. Here, we report the synthesis of manganese tetraboride, a recently proposed superhard candidate, by high pressure and high temperature solid state reaction. Hardness measurement of MnB4 yields an asymptotic hardness value of 20.1 GPa. The measured asymptotic hardness value of MnB4 is far higher than that of low boron concentration manganese borides counterparts. On the basis the results of XPS and first principle calculations, the stabilization of this three-dimensional diamond-like boron net analogue is intimately related to the fact that B- ions are electronic isostructure to the carbon atoms in diamond. In addition, the atomic radius of transition metals, R-TM, is relevant to the formation of B24 and B12 boron cages in transition metal dodecaborides and tetraborides, respectively. Given the crystal structure and bond configuration, its high hardness originates from its diamond-like boron net analogues frameworks which indicate its strong covalent feature.
机译:较高的硼浓度通常被认为是提高过渡金属硼化物硬度的最直接方法。在这里,通过高压和高温固态反应,我们报告了最近提出的超硬候选的锰Tetraboride的合成。 MNB4的硬度测量产生20.1GPa的渐近硬度值。 MNB4的测量渐近硬度值远远高于低硼浓度锰硼化物对应物的渐近硬度值。在XPS和第一个原理计算的结果的基础上,这种三维钻石状硼净净模拟的稳定性与之与金刚石中的碳原子的电子肌肉进行了密切相关的事实。另外,过渡金属R-TM的原子半径与过渡金属十二碳硼化物和四硼化物中的B24和B12硼笼的形成相关。鉴于晶体结构和粘合配置,其高硬度源自其菱形硼净型框架,表示其强的共价特征。

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