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氯化乙基在银纳米颗粒上的增强光化学反应。

Enhanced photochemistry of ethyl chloride on Ag nanoparticles.

机构信息

Institute of Chemistry, The Hebrew University of Jerusalem , Edmund J. Safra Campus-Givat Ram, Jerusalem 91904, Israel.

出版信息

Nano Lett. 2015 Feb 11;15(2):936-42. doi: 10.1021/nl503700y. Epub 2015 Jan 7.

Abstract

Enhanced photodecomposition of ethyl chloride (EC) adsorbed on SiO2/Si (100) supported silver nanoparticles (Ag NPs) under ultrahigh vacuum (UHV) conditions has been studied in order to assess the potential contribution of plasmonic effects. The cross section for photodecomposition of EC and overall photoyield were found to increase with increasing photon energy regardless of the plasmon resonant wavelength and with Ag coverage without any noticeable particle size effect. The influence of EC-Ag NPs separation distance on the rate of EC decomposition was studied in order to examine potential local electric field influence on the photodissociation process. Long (∼5 nm) photoactivity decay distance has been observed which excludes local surface plasmon dominance in the photodecomposition event. These findings suggest that the alignment of excited electron energy and adsorbate affinity levels is central for efficient photochemical reactions, whereas short-range electric field enhancement by plasmon excitation on top and at the immediate vicinity of silver nanoparticles does not have any measurable effect.

摘要

在超高真空(UHV)条件下,研究了吸附在 SiO2/Si(100)负载的银纳米粒子(Ag NPs)上的乙基氯(EC)在光的作用下的分解增强现象,以评估等离子体效应的潜在贡献。结果发现,无论等离子体共振波长如何,随着光子能量的增加,EC 的光解截面和总光产额均增加,且与 Ag 的覆盖率增加有关,而与颗粒尺寸无关。为了研究 EC-Ag NPs 分离距离对 EC 分解速率的影响,我们考察了局部电场对光离解过程的潜在影响。观察到 EC 的光活性衰减距离较长(约 5nm),这排除了光分解事件中局部表面等离子体的主导作用。这些发现表明,激发电子能量和吸附物亲和能水平的排列对于有效的光化学反应至关重要,而在银纳米粒子的顶部和紧邻处通过等离子体激发产生的短程电场增强没有任何可测量的影响。

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