首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Bond Nature of Raman Shift in CdSexS1-x Nanocrystals: A Bond-by-Bond Approach
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Bond Nature of Raman Shift in CdSexS1-x Nanocrystals: A Bond-by-Bond Approach

机译:Cdsexs1-X纳米晶体中拉曼偏移的粘合性质:键合方法

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Owing to the alloying effect, the bond composition of CdSexS1-x nanocrystals is complex. To reveal the bond nature of the Raman red shift in complex-alloyed nanocrystals, we propose the concept of a basic bond unit for nanocrystalline alloy systems. An alloyed nanocrystal can be decomposed into basic bond units according to a bond-by-bond approach. A local-mode model of alloyed nanocrystals is developed, which is applied to determine the Raman red shift of the destination bonds in a basic bond unit. Using this theory, the Raman spectra of CdSexS1-x nanocrystals are obtained. The calculated Raman curves are in good agreement with the experimental ones, indicating that the concept of basic bond unit can well demonstrate the chemical bond nature of the Raman spectra of the alloyed nanocrystals. Based on the strategy of breaking up the whole alloyed nanocrystal into basic bond units, the nanosize effect of Raman shifts may be accurately predicted even just by a pocket calculator.
机译:由于合金化效果,CdsexS1-X纳米晶体的键组合物是复杂的。 为了揭示复合合金纳米晶体中拉曼红移的粘合性,我们提出了纳米晶合金系统的基本键合单元的概念。 合金纳米晶体可以根据键合方法分解成基本键合单元。 开发了合金纳米晶体的局部模式模型,用于确定基本键合单元中目的地键的拉曼红移。 使用该理论,获得CdsexS1-X纳米晶体的拉曼光谱。 计算出的拉曼曲线与实验结果吻合良好,表明基本键合单元的概念可以很好地证明合金纳米晶体的拉曼光谱的化学键性质。 基于将整个合金化纳米晶体分解为基本键合单元的策略,即使仅由袋计算器也可以精确地预测拉曼偏移的纳米效应。

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