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Bifunctional Metal Nanocrystals for Catalyzing and Reporting on Chemical Reactions

机译:双官能金属纳米晶体催化和报告化学反应

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摘要

Bifunctional nanocrystals with integrated plasmonic and catalytic activities hold great promise for analyzing chemical reactions by in situ surface-enhanced Raman spectroscopy. This Minireview gives a brief introduction to the general strategies for designing such nanocrystals, followed by four typical examples, including their fabrication, characterization, and potential limitation. We then use the reduction of 4-nitrothiophenol and oxidation of 4-aminothiophenol as two model systems to demonstrate the capabilities of these bifunctional nanocrystals to monitor chemical reactions for the elucidation of reaction mechanisms and measurement of kinetics. We conclude with perspectives on further development of these bifunctional nanocrystals into a viable platform for investigating other types of catalytic reactions.
机译:具有综合等离子体和催化活动的双官能纳米晶体具有通过原位表面增强的拉曼光谱分析化学反应的巨大希望。 该MiniView简要介绍了设计这种纳米晶体的一般策略,其次是四种典型的例子,包括它们的制造,表征和潜在限制。 然后,我们使用4-硝基酚苯酚的减少和4-氨噻吩醇的氧化作为两个模型系统,以证明这些双官能纳米晶体的能力监测用于阐明反应机制和动力学的测量的化学反应。 我们通过对这些双官能纳米晶体的进一步发展成为调查其他类型的催化反应的可行性平台,得知。

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