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Advanced Composite 2D Energy Materials by Simultaneous Anodic and Cathodic Exfoliation

机译:阳极和阴极同时剥离的先进复合二维能量材料

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摘要

Composite materials based on graphene and other 2D materials are of considerable interest in the fields of catalysis, electronics, and energy conversion and storage because of the unique structural features and electronic properties of each component and the synergetic effects brought about by the compositing. Approaches to the mass production of 2D materials and their composites in a facile and affordable way are urgently needed to enable their implementation in practical applications. Here a novel electro-chemical exfoliation approach to prepare 2D composites is proposed, which combines simultaneous anodic exfoliation of graphite and cathodic exfoliation of other 2D materials (namely MoS2, MnO2, and graphitic carbon nitride). The synthesis is carried out in a single-compartment electrochemical cell to in situ produce functional 2D composite materials. Applications of the as-prepared 2D composites are demonstrated as (i) effective hydrogen evolution catalysts and (ii) supercapacitor electrode materials. The method enables the compositing of semiconductive, or even insulating, 2D materials with conductive graphene in an easy, cheap, ecofriendly, yet efficient way, liberating the intrinsic functions of 2D materials, which are usually hindered by their poor conductivity. The method is believed to be widely applicable to the family of 2D materials.
机译:基于石墨烯和其他2D材料的复合材料在催化,电子学以及能量转换和存储领域中具有相当大的兴趣,因为每种组分的独特结构特征和电子特性以及复合带来的协同效应。迫切需要以便捷且负担得起的方式大规模生产2D材料及其复合材料的方法,以使其能够在实际应用中实施。在此,提出了一种新颖的电化学剥落方法来制备2D复合材料,该方法将石墨的同时阳极剥落与其他2D材料(即MoS2,MnO2和石墨氮化碳)的阴极剥落结合起来。合成在单室电化学池中进行,以原位产生功能性2D复合材料。制备的2D复合材料的应用被证明为(i)有效的析氢催化剂和(ii)超级电容器电极材料。该方法能够以容易,便宜,生态友好但有效的方式将半导电或什至绝缘的2D材料与导电石墨烯复合,从而释放2D材料的固有功能,这些功能通常由于其导电性差而受到阻碍。据信该方法广泛适用于2D材料族。

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