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蜂巢状Ag(I)富勒烯微立方体作为增强型催化底物用于4-硝基苯酚的还原及橙黄G染料的光降解

Ag(I)-Hived Fullerene Microcube as an Enhanced Catalytic Substrate for the Reduction of 4-Nitrophenol and the Photodegradation of Orange G Dye.

作者信息

Liu Renxuan, Hou Ying, Jiang Shangjun, Nie Bei

机构信息

Department of Chemistry and Material Science, South-Central University of Nationalities, Wuhan 430074, P. R. China.

Chongqing Institute of Green and Intelligent Technology, Chinese Academy of Science, Chongqing 400714, P. R. China.

出版信息

Langmuir. 2020 May 19;36(19):5236-5242. doi: 10.1021/acs.langmuir.0c00580. Epub 2020 May 11.

DOI:10.1021/acs.langmuir.0c00580
PMID:32306732
Abstract

We report a facile approach to fabricate an Ag-embedded fullerene (C) catalyst by the chemical reduction of the AgNO complex encapsulated fullerene microcrystal, which showed an enhanced catalytic reduction of 4-nitrophenol because of the strong absorption and propagation of H along the fullerene surface. With the aid of visible-light radiation, photodegradation of orange G dye is achieved through the formation of an electron donor-acceptor dyad between plasmon Ag nanostructures and fullerene molecules, which effectively offsets the "electron-hole" recombination. Neither Ag nanoparticle nor fullerene crystal used in isolation could perform this chemical conversion, implying that the metal-fullerene hybrid structure is imperative for performing the catalytic reaction. The obtained Ag-embedded fullerene crystal is characterized by scanning electron microscopy (SEM), associated energy-dispersive X-ray spectroscopy (EDX) imaging, and X-ray photoelectron spectroscopy (XPS) and demonstrates that the present hybrid materials would add a supplemental member to a family of photocatalysts toward the organic synthesis and wastewater remediation.

摘要

我们报道了一种通过化学还原包裹富勒烯微晶的硝酸银络合物来制备嵌入银的富勒烯(C)催化剂的简便方法,由于氢在富勒烯表面的强吸收和传播,该催化剂对4-硝基苯酚的催化还原性能增强。在可见光辐射的帮助下,通过等离子体银纳米结构与富勒烯分子之间形成电子供体-受体二元体,实现了橙色G染料的光降解,这有效地抵消了“电子-空穴”复合。单独使用银纳米颗粒或富勒烯晶体都无法进行这种化学转化,这意味着金属-富勒烯杂化结构对于进行催化反应至关重要。通过扫描电子显微镜(SEM)、相关的能量色散X射线光谱(EDX)成像和X射线光电子能谱(XPS)对所得嵌入银的富勒烯晶体进行了表征,并证明了目前的杂化材料将为光催化剂家族增添一个用于有机合成和废水修复的补充成员。

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