...
【24h】

Microstructural analysis of nanoporous paracrystalline atomistic models of amorphous silicon

机译:非晶硅纳米多孔准晶原子模型的微观结构分析

获取原文
获取原文并翻译 | 示例
           

摘要

A detailed microstructural analysis of amorphous silicon is performed via numerical modeling technique. Nanoporous paracrystalline models have been proposed. Intermixed nanocrystallites and nanovoids of various sizes and concentrations have been introduced into a continuous random network that was generated with a vacancy model. Using the conjugate gradient method, the structures have been relaxed by minimizing their total strain energy described by the anharmonic Keating model. The obtained nanoporous structures are energetically competitive with the voidless paracrystalline networks. Nanoporous models with large voids are energetically more favorable than those with small voids. The nanoporous paracrystalline model is less dense than the crystalline phase, contrary to the paracrystalline model. This density decreases with increasing the void size for a fixed void volume fraction. Nanoporous paracrystalline structures reproduce the experimental structure factor better than the paracrystalline network. They account for, in particular, the intense small-angle scattering observed for some a-Si samples. The paracrystallites form amorphous zones but with local and topological ordering neatly better than the surrounding matrix. Such structural heterogeneity gives so a satisfactory explanation of the nanoscale fluctuation electron microscopy data reported recently by Treacy and Gibson.
机译:非晶硅的详细微观结构分析是通过数值建模技术进行的。已经提出了纳米多孔顺晶模型。各种大小和浓度的混合纳米微晶和纳米空隙已引入到由空位模型生成的连续随机网络中。使用共轭梯度法,通过最小化非谐基廷模型描述的结构的总应变能,使结构松弛。所获得的纳米孔结构在能量上与无空隙的顺晶网络竞争。具有大空隙的纳米孔模型在能量上比具有小空隙的模型更有利。与顺晶模型相反,纳米多孔顺晶模型的密度小于结晶相。对于固定的空隙体积分数,该密度随着空隙尺寸的增加而降低。纳米多孔顺晶结构比顺晶网络更好地再现了实验结构因子。特别是,它们解释了某些非晶硅样品中观察到的强烈小角度散射。准微晶形成无定形区,但是局部和拓扑顺序比周围的矩阵好得多。这种结构的异质性对Treacy和Gibson最近报道的纳米级波动电子显微镜数据给出了令人满意的解释。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号