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[资源] ACS Nano 最新综述:石墨烯构筑的化学控制

本综述详尽介绍了平面石墨烯的结构与性质,石墨烯的制备,氧化石墨烯的制备与化学环境,石墨烯片层的折叠与弯曲,石墨烯构筑的模板的相互影响,石墨烯通过水热法处理与凝结的三维关联,石墨烯的氧官能团反应,石墨烯片层表面与内部间的化学反应,石墨烯构筑的影响性质等,对石墨烯的研究有积极的指导意义。
Chemical Control of Graphene Architecture: Tailoring Shape and Properties 共22页 引文188篇
Raymond L. D. Whitby
School of Engineering, Nazarbayev University, 53, Kabanbay Batyr Avenue, Astana 010000, Kazakhstan and Nanoscience & Nanotechnology Group, Huxley Building,University of Brighton, Brighton, Sussex BN2 4GJ, United Kingdom

Single layer graphene and graphene oxide feature useful and occasionally unique properties by virtue of their two-dimensional structure. Given that there is a strong correlation between graphene architecture and its conductive, mechanical, chemical, and sorptive properties, which lead to useful technologies, the ability to systematically deform graphene into three-dimensional structures, therefore, provides a controllable, scalable route toward tailoring such properties in the fi nal system. However, the advent of chemical methods to control graphene architecture is still coming to fruition and requires focused attention. The fl exibility of the graphene system and the direct and indirect methods available to induce morphology changes of graphene sheets are fi rst discussed in this review. Focus is then given toward chemical reactions that in fl uence the shape of presynthesized graphene and graphene oxide sheets, from which a toolbox can be extrapolated and used in controlling the spatial arrangement of graphene sheets within composite materials and ultimately tailoring graphene-based device performance. Finally, the properties of three-dimensionally controlled graphene-based systems are highlighted for their use as batteries, strengthening additives, gas or liquid sorbents, chemical reactor platforms, and supercapacitors.ACS Nano 最新综述:石墨烯构筑的化学控制
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Thank you !
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