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Investigating Robust Honeycomb Borophenes Sandwiching Manganese Layers in Manganese Diboride

机译:研究将二硼化锰中的锰层夹在中间的坚固的蜂窝硼硼化物

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摘要

We report a robust honeycomb boron layers sandwiching manganese layers compound, MnB2, synthesized by high pressure and high temperature. First-principle calculation combined with X-ray photoelectron spectrum unravel that the honeycomb boron structure was stabilized by filling the empty pi band via grabbing electrons from manganese layers. Honeycomb boron layers sandwiching manganese layers is an extraordinary prototype of this type of sandwiched structure exhibiting electronic conductivity and ferromagnetism. Hydrostatic compression of the crystal structure, thermal expansion, and the hardness testing reveal that the crystal structure is of strong anisotropy. The strong anisotropy and first-principle calculation suggests that B-B bonds in the honeycomb boron structure are a strong directional covalent feature, while the Mn-B bonds are soft ionic nature. Sandwiching honeycomb boron layers with manganese layers that combine p-block elements with magnetic transition metal elements could endow its novel physical and chemical properties.
机译:我们报告了一个坚固的蜂窝硼层,夹着通过高压和高温合成的锰层化合物MnB2。第一性原理计算与X射线光电子能谱的结合揭示了蜂窝状硼结构是通过从锰层中捕获电子来填充空pi带而得以稳定的。夹着锰层的蜂窝硼层是这种夹层结构的非凡原型,具有电子导电性和铁磁性。晶体结构的静水压缩,热膨胀和硬度测试表明,该晶体结构具有很强的各向异性。强各向异性和第一性原理计算表明,蜂窝硼结构中的B-B键具有很强的方向共价特征,而Mn-B键则具有软离子性质。将蜂窝状硼层与锰层夹在中间,将p嵌段元素与磁性过渡金属元素结合在一起,可以赋予其新颖的物理和化学特性。

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