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纳米颗粒尺寸对等离子体驱动反应效率的影响。

Effect of Nanoparticle Size on Plasmon-Driven Reaction Efficiency.

作者信息

Kim Seokheon, Lee Sungwoon, Yoon Sangwoon

机构信息

Department of Chemistry, Chung-Ang University, 84 Heukseok-ro, Dongjak-gu, Seoul 06974, Korea.

出版信息

ACS Appl Mater Interfaces. 2022 Jan 26;14(3):4163-4169. doi: 10.1021/acsami.1c21441. Epub 2022 Jan 10.

Abstract

Hot electron chemistry is of paramount significance because of its applicability to photocatalytic reactions, solar energy conversion, and waste decomposition. The nonradiative decay of excited plasmons in gold nanoparticles (AuNPs) generates highly energetic nonthermal electrons and holes that can induce chemical reactions when transferred to nearby molecules. In this study, we explore the relationship between AuNP size (26-133 nm) and the plasmon-induced reaction yield. To isolate the size from other structural parameters, we prepare perfectly round gold nanospheres (AuNSs) with narrow size distributions. The use of a nanoparticle-on-mirror configuration, in which the reactant molecules (4-mercaptobenzoic acid) are positioned in nanogaps between the AuNSs and a Au film, promotes the generation of hot carriers and allows the highly sensitive detection of the reaction products (benzenethiol) using surface-enhanced Raman spectroscopy. We show that the reaction yield increases as the AuNS size increases up to 94 nm and then decreases for larger AuNSs. This peculiar Λ-shaped size-dependent reactivity can be explained by considering both the plasmonic absorption efficiency of AuNSs and the decay rate of plasmons electron-surface scattering. The product of the calculated absorption cross section and the inverse of the AuNS size reproduces our experimental results remarkably well. These findings will contribute to the design of highly efficient plasmonic photocatalysts and photovoltaic devices.

摘要

热电子化学因其在光催化反应、太阳能转换和废物分解中的适用性而具有至关重要的意义。金纳米颗粒(AuNP)中激发等离子体激元的非辐射衰变会产生高能非热电子和空穴,当它们转移到附近分子时可引发化学反应。在本研究中,我们探索了AuNP尺寸(26 - 133纳米)与等离子体激元诱导反应产率之间的关系。为了将尺寸与其他结构参数区分开来,我们制备了尺寸分布狭窄的完美圆形金纳米球(AuNS)。使用纳米颗粒 - 镜面配置,其中反应物分子(4 - 巯基苯甲酸)位于AuNS与金膜之间的纳米间隙中,促进了热载流子的产生,并允许使用表面增强拉曼光谱对反应产物(苯硫酚)进行高灵敏度检测。我们表明,反应产率随着AuNS尺寸增加到94纳米而增加,然后对于更大尺寸的AuNS则下降。这种特殊的Λ形尺寸依赖性反应性可以通过考虑AuNS的等离子体吸收效率和等离子体激元 - 电子 - 表面散射的衰减率来解释。计算得到的吸收截面与AuNS尺寸的倒数的乘积与我们的实验结果非常吻合。这些发现将有助于高效等离子体光催化剂和光伏器件的设计。

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