Predicting structural properties of amorphous silicon carbonitride by atomistic simulation

Q4 Engineering
N. Liao, Miao Zhang, R. Raj, S. Zhou
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引用次数: 0

Abstract

Silicon carbonitride (SiCN) has superior mechanical properties at high temperature, but its structural properties in molecular scale are not clear. In this study, atomistic simulations were applied to study the molecular structure of amorphous SiCN. The atomistic structures obtained by large-scale molecular dynamics simulations agree with current experimental results, and moreover, provide more details on molecular structure. The Si-C bonds generally keep stable proportion for all the three cases, which means the additional carbon tends to form free carbon network rather than Si-C bonds. Si-CN3 is dominant inSi-C/N tetrahedron, and as expected the increase of C content in SiCN tends to form more Si-C2N2 and Si-C3N tetrahedra.
原子模拟预测非晶碳氮化硅的结构特性
碳氮化硅(SiCN)具有优异的高温力学性能,但其在分子尺度上的结构特性尚不清楚。本研究采用原子模拟方法研究了非晶SiCN的分子结构。大尺度分子动力学模拟得到的原子结构与目前的实验结果一致,而且提供了更多的分子结构细节。三种情况下Si-C键的比例基本保持稳定,这意味着附加碳倾向于形成自由碳网络,而不是Si-C键。Si-CN3为主要的si -C/N四面体,随着SiCN中C含量的增加,Si-C2N2和Si-C3N四面体的形成趋于增多。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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