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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Modeling the Size-Dependent Solid-Solid Phase Transition Temperature of Cu2S Nanosolids
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Modeling the Size-Dependent Solid-Solid Phase Transition Temperature of Cu2S Nanosolids

机译:Cu2S纳米固体的尺寸相关固-固相变温度建模

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The present study provides a simple model to predict the favored phase of Cu2S nanosolids upon variation of their size, shape, and temperature. Insight into the phase stability at the nanoscale will aid in the design of new nanomaterials. A study of the solid-solid phase transition demonstrated that the low-chakocite to high-chalcocite transition temperature of Cu2S nanowires increases with increasing wire diameter consistent with recent experimental data.31 At ambient temperature, the high-chalcocite phase is the most stable phase for nanofilms with a thickness below 1.5 nm, nanowires with a diameter below 3 run and nanopartides smaller than 4.S nm, all in agreement with experimental observations.
机译:本研究提供了一个简单的模型来预测Cu2S纳米固体的尺寸,形状和温度变化时的有利相。洞悉纳米级的相稳定性将有助于设计新的纳米材料。对固-固相变的研究表明,Cu2S纳米线的从低白云母到高白云母的转变温度随着线径的增加而增加,与最近的实验数据一致。31在环境温度下,高白云母相是最稳定的相对于厚度小于1.5 nm的纳米膜,直径小于3纳米的纳米线和小于4.S nm的纳米粒子,均与实验观察一致。

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