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水热阳离子交换实现Au@ZnS-AgAuS核壳纳米晶体的逐步演化及其可见光光催化应用

Hydrothermal Cation Exchange Enabled Gradual Evolution of Au@ZnS-AgAuS Yolk-Shell Nanocrystals and Their Visible Light Photocatalytic Applications.

作者信息

Feng Jingwen, Liu Jia, Cheng Xiaoyan, Liu Jiajia, Xu Meng, Zhang Jiatao

机构信息

Beijing Key Laboratory of Construction-Tailorable Advanced Functional Materials and Green Applications School of Materials Science & Engineering Beijing Institute of Technology Beijing 100081 China.

出版信息

Adv Sci (Weinh). 2017 Nov 20;5(1):1700376. doi: 10.1002/advs.201700376. eCollection 2018 Jan.

Abstract

Yolk-shell hybrid nanoparticles with noble metal core and programmed semiconductor shell composition may exhibit synergistic effects and tunable catalytic properties. In this work, the hydrothermal cation exchange synthesis of Au@ZnS-AgAuS yolk-shell nanocrystals (Y-S NCs) with well-fabricated void size, grain-boundary-architectured ZnS-AgAuS shell and in situ generated Au cocatalyst are demonstrated. Starting from the novel cavity-free Au@AgAuS core-shell NCs, via aqueous cation exchange reaction with Zn, the gradual evolution with produced Au@ZnS-AgAuS Y-S NCs can be achieved successfully. This unprecedented evolution can be reasonably explained by cation exchange initialized chemical etching of Au core, followed by the diffusion through the shell to be AgAuS and then ZnS. By hydrothermal treatment provided optimal redox environment, Au ions in shell were partially reduced to be Au NCs on the surface. The UV-vis absorption spectra evolution and visible light photocatalytic performances, including improved photodegradation behavior and photocatalytic hydrogen evolution activity, have demonstrated their potential applications. This new one-pot way to get diverse heterointerfaces for better photoinduced electron/hole separation synergistically can be anticipated for more kinds of photocatalytic organic synthesis.

摘要

具有贵金属核和可编程半导体壳层组成的蛋黄壳杂化纳米颗粒可能表现出协同效应和可调谐的催化性能。在这项工作中,展示了通过水热阳离子交换合成具有良好制备的空隙尺寸、晶界结构的ZnS-AgAuS壳层以及原位生成的Au助催化剂的Au@ZnS-AgAuS蛋黄壳纳米晶体(Y-S NCs)。从新型无腔Au@AgAuS核壳纳米晶开始,通过与Zn的水相阳离子交换反应,可以成功实现生成Au@ZnS-AgAuS Y-S NCs的逐步演化。这种前所未有的演化可以通过阳离子交换引发的Au核化学蚀刻,随后通过壳层扩散形成AgAuS,再形成ZnS来合理解释。通过水热处理提供了最佳的氧化还原环境,壳层中的Au离子部分还原为表面的Au纳米晶。紫外-可见吸收光谱的演化以及可见光光催化性能,包括改善的光降解行为和光催化析氢活性,都证明了它们的潜在应用。这种获得多种异质界面以协同实现更好的光致电子/空穴分离的新型一锅法,有望应用于更多种类的光催化有机合成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9efe/5770678/8b610dc3940e/ADVS-5-na-g001.jpg

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