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首页> 外文期刊>Journal of Materials Science >Stoichiometric amorphous boron carbide (BC)
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Stoichiometric amorphous boron carbide (BC)

机译:化学计量非晶硼化物(BC)

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In this work, a stoichiometric amorphous boron carbide (a-BC) network is constructed via an ab initio molecular dynamics approach. Its structural, electrical and mechanical features are reconnoitered in details and compared with those of turbostratic BC and some important graphite-like amorphous materials. Our computer-generated structure exhibits strong chemical disorder as seen in turbostratic BC. However, it has mixed sp(2) and sp(3) hybridizations and the average coordination number of B and C atoms is projected to be similar to 3.22 and 3.46, correspondingly. Consequently, a-BC appears to be structurally different from turbostratic BC and graphite-like amorphous systems. a-BC is semiconductor having a theoretical band gap of similar to 0.20 eV. The bulk, Young's and shear moduli are estimated as similar to 105, 142 and 56 GPa, respectively. Its Vickers hardness is calculated to be about 7-8.5 GPa. a-BC is anticipated to be electronically and mechanically parallel to amorphous boron carbonitride.
机译:在这项工作中,通过AB Initio分子动力学方法构建化学计量非晶碳化碳化物(A-BC)网络。其结构,电气和机械特征在细节中重新核开并与涡轮棘轮BC和一些重要的石墨类非晶材料相比。我们的计算机生成的结构表现出强烈的化学障碍,如涡轮机BC所示。然而,它具有混合的SP(2)和SP(3)杂交,并且B和C原子的平均配位数量被投射到相应于3.22和3.46。因此,A-BC似乎与涡轮静脉BC和石墨类似的无定形系统结构不同。 A-BC是具有与0.20eV类似的理论带隙的半导体。批量,杨氏和剪切模量分别估计为类似于105,142和56 GPA。其维氏硬度计算为约7-8.5GPa。预计A-BC以电子方式和机械平行于无定形硼碳氮化物。

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