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采用液体电池电子显微镜对钯纳米晶体的氧化刻蚀进行原位研究。

In situ study of oxidative etching of palladium nanocrystals by liquid cell electron microscopy.

机构信息

State Key Laboratory of Silicon Materials, Key Laboratory of Advanced Materials and Applications for Batteries of Zhejiang Province, Cyrus Tang Center for Sensor Materials and Applications, and Department of Materials Science and Engineering, Zhejiang University , Hangzhou, Zhejiang 310027, P. R. China.

出版信息

Nano Lett. 2014 Jul 9;14(7):3761-5. doi: 10.1021/nl500670q. Epub 2014 Jun 19.

Abstract

Oxidative etching has widely prevailed in the synthesis of a crystal and played a critical role in determining the final growth behavior. In this Letter, we report an in situ microscopic study on the oxidative etching of palladium cubic nanocrystals by liquid cell scanning transmission electron microscopy. The etching was realized with oxidative radiation reactants from electron-water interaction in the presence of Br(-) ions. Dissolution dynamics of monodispersed and aggregated nanocrystals were both investigated and compared. Analyses on the dissolution kinetics of nanocrystals and the diffusion kinetics of the dissolved agents were carried out based on the scanning transmission electron microscopy characterizations. The results presented here pave a way toward the quantitative understanding of the oxidative etching reaction and its application in the functionally orientated fabrication of nanocrystals with certain sizes, structures, and morphologies.

摘要

氧化刻蚀在晶体的合成中得到了广泛的应用,并在决定最终的生长行为方面起着关键作用。在这封信中,我们通过液体池扫描透射电子显微镜报告了钯立方纳米晶体的氧化刻蚀的原位微观研究。在 Br(-)离子存在下,通过电子-水相互作用的氧化辐射反应物实现了刻蚀。我们研究并比较了单分散和聚集纳米晶体的溶解动力学。基于扫描透射电子显微镜的特征,对纳米晶体的溶解动力学和溶解剂的扩散动力学进行了分析。这里呈现的结果为定量理解氧化刻蚀反应及其在具有特定尺寸、结构和形态的纳米晶体的功能导向制造中的应用铺平了道路。

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