...
首页> 外文期刊>Nanotechnology >Nanoinstabilities of Cu2O porous nanostructured films as driven by nanocurvature effect and thermal activation effect
【24h】

Nanoinstabilities of Cu2O porous nanostructured films as driven by nanocurvature effect and thermal activation effect

机译:由纳米细胞效应和热活化效应驱动的Cu2O多孔纳米结构薄膜的纳米能力

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

In this work, the instabilities at the nanoscale (i.e. nanoinstabilities) of triangular pyramids-like Cu2O porous nanostructured films (PNFs) are studied by heating treatments under different atmosphere and temperature. It is found that the nanoscale building triangular pyramids turn round preferentially at the sharp angles and/or coalesce with their contacting ones by directional diffusion and plastic flow of atoms, which are driven by the nonuniformly-distributed surface nanocurvature. As a result, the triangular pyramids become quasi-sphere shape and the PNF evolves into a big, dense particles film. It is also observed that the heating or thermal activation effect efficiently promotes the reduction or oxidation of Cu2O pyramids and the crystallization or growth of the as-achieved Cu or CuO grains. The above physical and chemical instabilities or changes at the nanoscale of Cu2O PNFs can be well accounted for by the combined mechanism of nanocurvature effect and thermal activation effect. The nanocurvature effect can lower the energy barrier for the atom diffusion or plastic flow and lower the activation energy for the chemical reactions, while the thermal activation effect can supply the required kinetic energy or activation energy and make the atomic transportations and reactions kinetically possible. The findings reveal the evolution laws of morphology, crystal structure and composition of triangular pyramids-like Cu2O PNF during heating treatments, which can further be extended to other types of Cu2O PNFs. Also, the findings have important implications for the nanoinstabilities of Cu2O PNFs-based devices, especially those working at a high temperature.
机译:在这项工作中,在纳米级的三角形的不稳定性(即nanoinstabilities)金字塔样的Cu2O多孔纳米结构膜(pNFS的)通过加热不同的气氛和温度下处理进行了研究。据发现,所述纳米级构建三角锥回转优先在锐角和/或聚结与其接触的人通过方向性扩散和原子,其是由不均匀分布的表面nanocurvature驱动的塑性流动。其结果是,三角锥成为准球形形状和PNF演变成一个大的,致密颗粒膜。还观察到的是,加热或热活化作用有效地促进还原或氧化亚铜金字塔的氧化和作为-实现Cu或CuO的晶粒的结晶或生长。上述物理和化学不稳定性或在氧化亚铜的pNFS的纳米尺度的变化可以通过的nanocurvature效应和热活化效果的组合机构被很好考虑。所述nanocurvature效果可降低对原子扩散或塑性流动的能量势垒,并降低的化学反应的活化能,而热活化作用可以提供所需要的动能或活化能,使原子运输和反应动力学可能的。这些发现期间加热处理,其可以进一步被扩展到其他类型的Cu2O的pNFS的揭示形态,晶体结构和三棱锥状的Cu2O PNF的组合物的演变规律。此外,研究结果对基于pNFS的-氧化亚铜的设备,尤其是那些在高温下工作的nanoinstabilities重要的意义。

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