Review of photoreduction and synchronous patterning of graphene oxide toward advanced applications
H. B. Jiang,B. Zhao,Y. Liu,S. Y. Li,J. Liu,Y. Y. Song,D. D. Wang,W. Xin and L. Q. Ren
刊名Journal of Materials Science
2020
卷号55期号:2页码:480-497
ISSN号0022-2461
DOI10.1007/s10853-019-03981-z
英文摘要In view of the bulk production, resolvability, dispersibility of aqueous solution, graphene oxides (GO) prepared by strong chemical oxidation of graphite flakes have been widely used for the production of graphene-like materials. However, because of the insulating nature caused by amounts of defects on its surface, the application of GO material is greatly constrained. Hence, effective reduction of GO becomes critical. The photoreduction of GO showed more attractive properties than conventional thermal/chemical routes due to its synchronous reduction and flexible patterning, which facilitates a number of applications, such as the electrochemical energy storage devices, electronic devices, and biomimetic substrates. In this review, we dedicatedly summarized the latest advances in photoreduction including the fabrications and applied values in multiple fields. We deem that the photoreduction and synchronous patterning of GO will have very prospects in the development of graphene devices.
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语种英语
内容类型期刊论文
源URL[http://ir.ciomp.ac.cn/handle/181722/64862]  
专题中国科学院长春光学精密机械与物理研究所
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H. B. Jiang,B. Zhao,Y. Liu,S. Y. Li,J. Liu,Y. Y. Song,D. D. Wang,W. Xin and L. Q. Ren. Review of photoreduction and synchronous patterning of graphene oxide toward advanced applications[J]. Journal of Materials Science,2020,55(2):480-497.
APA H. B. Jiang,B. Zhao,Y. Liu,S. Y. Li,J. Liu,Y. Y. Song,D. D. Wang,W. Xin and L. Q. Ren.(2020).Review of photoreduction and synchronous patterning of graphene oxide toward advanced applications.Journal of Materials Science,55(2),480-497.
MLA H. B. Jiang,B. Zhao,Y. Liu,S. Y. Li,J. Liu,Y. Y. Song,D. D. Wang,W. Xin and L. Q. Ren."Review of photoreduction and synchronous patterning of graphene oxide toward advanced applications".Journal of Materials Science 55.2(2020):480-497.
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