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Insights into Reaction Intermediates to Predict Synthetic Pathways for Shape-Controlled Metal Nanocrystals

机译:洞察反应中间体以预测形状受控金属纳米晶体的合成途径

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Understanding nucleation phenomena is crucial across all branches of physical and natural sciences. Colloidal nanocrystals are among the most versatile and tunable synthetic nanomaterials. While huge steps have been made in their synthetic development, synthesis by design is still impeded by the lack of knowledge of reaction mechanisms. Here, we report on the investigation of the reaction intermediates in high temperature syntheses of copper nanocrystals by a variety of techniques, including X-ray absorption at a synchrotron source using a customized in situ cell. We reveal unique insights into the chemical nature of the reaction intermediates and into their role in determining the final shape of the metal nanocrystals. Overall, this study highlights the importance of understanding the chemistry behind nucleation as a key parameter to predict synthetic pathways for shape-controlled nanocrystals.
机译:在自然科学的所有分支中,了解成核现象至关重要。胶体纳米晶体是最通用和可调的合成纳米材料之一。尽管在合成开发中已迈出了巨大的步伐,但由于缺乏反应机理的知识,设计合成仍然受到阻碍。在这里,我们报告了通过多种技术对铜纳米晶体高温合成中的反应中间体的研究,包括使用定制的原位电池在同步加速器源处进行X射线吸收。我们揭示了对反应中间体的化学性质及其在确定金属纳米晶体最终形状中的作用的独特见解。总的来说,这项研究突出了理解成核背后的化学原理作为预测形状受控的纳米晶体的合成途径的关键参数的重要性。

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