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首页> 外文期刊>Angewandte Chemie >Visible-Light-Induced Electron Transport from Small to Large Nanoparticles in Bimodal Gold Nanoparticle-Loaded Titanium(IV) Oxide
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Visible-Light-Induced Electron Transport from Small to Large Nanoparticles in Bimodal Gold Nanoparticle-Loaded Titanium(IV) Oxide

机译:可见光诱导电子在双峰金纳米颗粒负载的四氧化钛中从小到大的纳米颗粒传输。

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摘要

A key to realizing the sustainable society is to develop highly active photocatalysts for selective organic synthesis effectively using sunlight as the energy source. Recently, metal-oxide-supported gold nanoparticles (NPs) have emerged as a new type of visible-light photocatalysts driven by the excitation of localized surface plasmon resonance of Au NPs. Here we show that visible-light irradiation (λ> 430 nm) of TiO2-supported Au NPs with a bimodal size distribution (BM-Au/TiO2) gives rise to the long-range (> 40 nm) electron transport from about 14 small (ca. 2 nm) Au NPs to one large (ca. 9 nm) Au NP through the conduction band of TiO2. As a result of the enhancement of charge separation, BM-Au/TiO2 exhibits a high level of visible-light activity for the one-step synthesis of azobenzenes from nitro- benzenes at 25°C with a yield greater than 95% and a selectivity greater than 99%, whereas unimodal Au/TiO2 (UM-Au/TiO2) is photocatalytically inactive.
机译:实现可持续发展社会的关键是开发有效利用阳光作为能源的,用于选择性有机合成的高活性光催化剂。近年来,金属氧化物负载的金纳米颗粒(NPs)作为一种新型的可见光光催化剂出现了,该催化剂由Au NPs的局部表面等离子体激元共振的激发驱动。在这里我们显示了具有双峰尺寸分布(BM-Au / TiO2)的TiO2负载的Au NP的可见光照射(λ> 430 nm)从大约14个小电子引起长距离(> 40 nm)电子传输(约2 nm)Au NPs通过TiO2的导带变成一个大(约9 nm)Au NPs。由于增强了电荷分离,因此BM-Au / TiO2在25°C下由硝基苯一步合成偶氮苯显示出高水平的可见光活性,收率大于95%,并且具有选择性大于99%,而单峰Au / TiO2(UM-Au / TiO2)则没有光催化活性。

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