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Effect of graphite oxide structure on the formation of stable self-assembled conductive reduced graphite oxide hydrogel

机译:氧化石墨结构对稳定的自组装导电还原型氧化石墨水凝胶形成的影响

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摘要

As a novel tissue engineering material and transistor, reduced graphite oxide (rGO) hydrogel is attracting more and more attention, and a stable and highly electrical conductive rGO hydrogel is the cornerstone for these applications. We controlled the structures of graphite oxides (GOs) with three different methods and the corresponding assembled rGO hydrogels were obtained using Vitamin C (VC) as the reducing agent and the stability and etectrical resistance of the rGO hydrogel were studied. The results showed that the appropriate interlayer distance and grain size of GO prepared by two-step oxidation were beneficial for VC molecules to insert in the interspace between layers for the reduction. After reduction, the loose and tangled network structure was well assembled, which determines the stability and electrical conductivity of the resulted rGO hydrogel.
机译:作为一种新型的组织工程材料和晶体管,还原型氧化石墨(rGO)水凝胶正受到越来越多的关注,而稳定且高度导电的rGO水凝胶是这些应用的基石。我们用三种不同的方法控制了氧化石墨(GOs)的结构,并以维生素C(VC)为还原剂得到了相应的组装rGO水凝胶,并研究了rGO水凝胶的稳定性和耐电性。结果表明,通过两步氧化制备合适的GO层间距离和晶粒尺寸有利于VC分子插入层间空隙中进行还原。还原后,松散缠结的网络结构组装良好,这决定了所得rGO水凝胶的稳定性和电导率。

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