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水凝胶中的Fe3O4各向异性纳米结构:用于快速去除废水中有机染料的高效催化剂。

Fe3 O4 Anisotropic Nanostructures in Hydrogels: Efficient Catalysts for the Rapid Removal of Organic Dyes from Wastewater.

作者信息

Gao Yang, Hu Chen, Zheng Wen Jiang, Yang Sen, Li Fei, Sun Shao Dong, Zrínyi Miklós, Osada Yoshihito, Yang Zhi Mao, Chen Yong Mei

机构信息

School of Science, State Key Laboratory for Mechanical Behavior of Materials, Collaborative Innovation Center of Suzhou Nano Science and Technology, Xi'an Jiaotong University, Xi'an, 710049, China.

State Key Laboratory for Strength and Vibration of Mechanical Structures, International Center for Applied Mechanics and School of Aerospace, Xi'an Jiaotong University, Xi'an, 710049, China.

出版信息

Chemphyschem. 2016 Jul 4;17(13):1999-2007. doi: 10.1002/cphc.201600117. Epub 2016 Mar 31.

Abstract

Fe3 O4 anisotropic nanostructures that exhibit excellent catalytic performance are rarely used to catalyze Fenton-like reactions because of the inevitable drawbacks resulting from traditional preparation methods. In this study, a facile, nontoxic, water-based approach is developed for directly regulating a series of anisotropic morphologies of Fe3 O4 nanostructures in a hydrogel matrix. In having the advantages of both the catalytic activity of Fe3 O4 and the adsorptive capacity of an anionic polymer network, the hybrid nanocomposites have the capability to effect the rapid removal of cationic dyes, such as methylene blue, from water samples. Perhaps more interestingly, hybrid nanocomposites loaded with Fe3 O4 nanorods exhibit the highest catalytic activity compared to those composed of nanoneedles and nanooctahedra, revealing the important role of nanostructure morphology. By means of scanning electrochemical microscopy, it is revealed that Fe3 O4 nanorods can efficiently catalyze H2 O2 decomposition and thus generate more free radicals ((.) OH, (.) HO2 ) for methylene blue degradation, which might account for their high catalytic activity.

摘要

具有优异催化性能的Fe3O4各向异性纳米结构由于传统制备方法不可避免的缺点而很少用于催化类芬顿反应。在本研究中,开发了一种简便、无毒、水基方法,用于在水凝胶基质中直接调控Fe3O4纳米结构的一系列各向异性形态。这种杂化纳米复合材料兼具Fe3O4的催化活性和阴离子聚合物网络的吸附能力,能够快速从水样中去除阳离子染料,如亚甲基蓝。也许更有趣的是,与由纳米针和纳米八面体组成的复合材料相比,负载Fe3O4纳米棒的杂化纳米复合材料表现出最高的催化活性,揭示了纳米结构形态的重要作用。通过扫描电化学显微镜发现,Fe3O4纳米棒可以有效催化H2O2分解,从而产生更多自由基(·OH、·HO2)用于亚甲基蓝降解,这可能是其高催化活性的原因。

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