首页> 外文期刊>Journal of the American Chemical Society >Photovoltage Mechanism for Room Light Conversion of Citrate Stabilized Silver Nanocrystal Seeds to Large Nanoprisms
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Photovoltage Mechanism for Room Light Conversion of Citrate Stabilized Silver Nanocrystal Seeds to Large Nanoprisms

机译:柠檬酸盐稳定的银纳米晶种子转变为大纳米棱镜的室内光转换的光电压机制。

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摘要

We investigate the photoconversion of aqueous 8 nm Ag nanocrystal seeds into 70 nm single crystal plate nanoprisms. The process relies on the excitation of Ag surface plasmons. The process requires dioxygen, and the transformation rate is first-order in seed concentration. Although citrate is necessary for the conversion, and is consumed, the transformation rate is independent of citrate concentration. We propose a mechanism that accounts for these features by coupling the oxidative etching of the seed and the subsequent photoreduction of aqueous Ag~+. The reduced Ag deposits onto a Ag prism of specific size that has a cathodic photovoltage resulting from plasmon "hot hole" citrate photo-oxidation. This photovoltage mechanism also explains recent experimental results involving single and dual wavelength irradiation and the core/shell synthesis of Ag layers on Au seeds.
机译:我们研究了将8 nm Ag纳米晶水溶液种子光转换为70 nm单晶板纳米棱镜的过程。该过程依赖于Ag表面等离子体激元的激发。该过程需要双氧,转化率是种子浓度的一级。尽管柠檬酸盐是转化所必需的并被消耗,但转化速率与柠檬酸盐浓度无关。我们提出了一种机制,通过结合种子的氧化蚀刻和随后的Ag〜+水溶液的光还原来解决这些特征。还原的Ag沉积到特定尺寸的Ag棱镜上,该Ag棱镜具有由于等离子体“热孔”柠檬酸盐光氧化而产生的阴极光电压。这种光电压机制还解释了最近的实验结果,涉及单波长和双波长辐射以及Au种子上Ag层的核/壳合成。

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