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高度褶皱交联氧化石墨烯膜在生物和电荷存储方面的应用。

Highly wrinkled cross-linked graphene oxide membranes for biological and charge-storage applications.

机构信息

Graphene Research Centre, Department of Chemistry, National University of Singapore, 3 Science Drive 3, 117543, Singapore.

出版信息

Small. 2012 Feb 6;8(3):423-31. doi: 10.1002/smll.201101690. Epub 2011 Dec 13.

Abstract

Inspired by the amphiphilicity of graphene oxide (GO), the surface of water is used as a template for the assembly of a GO film. Methacrylate-functionalized GO sheets can be cross-linked instantaneously at the water-air interface to form a highly wrinkled membrane spreading over an extended area. The multiple covalent linkages amongst the GO sheets enhances the in-plane stiffness of the film compared to noncovalently bonded GO films. The highly convoluted GO membrane can be used in two applications: the promoting of spontaneous stem-cell differentiation towards bone cell lineage without any chemical inducers, and for supercapacitor electrodes. Due to reduced van der Waals restacking, capacitance values up to 211 F g(-1) can be obtained. The scalable and inexpensive nature of this assembly route enables the engineering of membranes for applications in regenerative medicine and energy-storage devices where secondary structures like nanotopography and porosity are important performance enhancers.

摘要

受氧化石墨烯(GO)的两亲性启发,水的表面被用作组装 GO 薄膜的模板。甲基丙烯酰基功能化的 GO 片可以在水-空气界面瞬间交联,形成一个高度褶皱的薄膜,在很大的区域上展开。与非共价键合的 GO 薄膜相比,GO 片之间的多重共价键增加了薄膜的面内刚度。高度卷曲的 GO 膜可以应用于两个方面:在没有任何化学诱导剂的情况下,促进干细胞自发向骨细胞系分化,以及作为超级电容器的电极。由于范德华堆积减少,可获得高达 211 F g(-1) 的电容值。这种组装方法具有可扩展性和成本效益,可用于再生医学和储能设备中的膜工程,其中类似纳米拓扑和多孔性的二级结构是重要的性能增强剂。

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