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首页> 外文期刊>Journal of physical chemistry letters >In Situ Nanoscale Investigation of Catalytic Reactions in the Liquid Phase Using Zirconia-Protected Tip-Enhanced Raman Spectroscopy Probes
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In Situ Nanoscale Investigation of Catalytic Reactions in the Liquid Phase Using Zirconia-Protected Tip-Enhanced Raman Spectroscopy Probes

机译:使用氧化锆保护的尖端增强拉曼光谱探针在液相中催化反应的原位纳米级研究

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摘要

Tip-enhanced Raman spectroscopy (TERS) is a promising technique that enables nondestructive and label-free topographical and chemical imaging at the nanoscale. However, its scope for in situ characterization of catalytic reactions in the liquid phase has remained limited due to the lack of durable and chemically inert plasmonically active TERS probes. Herein, we present novel zirconia-protected TERS probes with 3 orders of magnitude increase in lifetime under ambient conditions compared to unprotected silver coated probes, together with high stability in liquid media. Employing the plasmon-assisted oxidation of p-aminothiophenol as a model reaction, we demonstrate that the highly robust, durable, and chemically inert zirconia-protected TERS probes can be successfully used for nanoscale spatially resolved characterization of a photocatalytic reaction within an aqueous environment. The reported improved lifetime and stability of probes in a liquid environment extend the potential scope of TERS as a nanoanalytical tool not only to heterogeneous catalysis but also to a range of scientific disciplines in which dynamic solid-liquid interfaces play a defining role.
机译:尖端增强的拉曼光谱(TERS)是一种有希望的技术,可在纳米级上实现无损性和无标签的地形和化学成像。然而,由于缺乏耐用和化学惰性的量动性TERS探针,其原位液相催化反应表征的范围仍然受到限制。在此,与未受保护的银涂覆探针相比,在环境条件下,在环境条件下呈现新的氧化锆保护的TERS探针,在环境条件下,与液体介质的高稳定性相比,在环境条件下寿命增加了3个峰值。采用对氨基酚苯酚的等离子体辅助氧化作为模型反应,我们证明了高度稳健,耐用和化学惰性的氧化锆保护的TERS探针可以成功用于纳米级空间分辨表征水性环境中的光催化反应。据报道,液体环境中的探针的改进寿命和稳定性延伸了作为纳米分析工具的潜在范围,而不仅仅是异质催化,而且还扩展了一种科学学科,其中动态固液界面发挥着定义作用。

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