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A General Approach to Direct Growth of Oriented Metal–Organic Framework Nanosheets on Reduced Graphene Oxides

机译:一种直接成长的金属有机骨架纳米片纳米氧化物直接生长的一般方法

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摘要

Abstract Ultrathin metal–organic framework nanosheets (UMOFNs) deposited on graphene are highly attractive, however direct growth of UMOFNs on graphene with controlled orientations remains challenging. Here, a low‐concentration‐assisted heterogeneous nucleation strategy is reported for the direct growth of UMOFNs on reduced graphene oxides (rGO) surface with controllable orientations. This general strategy can be applied to construct various UMOFNs on rGO, including Co‐ZIF, Ni‐ZIF, Co, Cu‐ZIF and Co, Fe‐ZIF. When UMOFNs are mostly attached perpendicularly on rGO, a 3D foam‐like hierarchical architecture (named UMOFNs@rGO‐F) is formed with an open pore structure and excellent conductivity, showing excellent performance as electrode materials for Li‐ion batteries and oxygen evolution. The contribution has provided a strategy for improving the electrochemical performance of MOFs in energy storage applications.
机译:摘要沉积在石墨烯上的超薄超薄金属有机框架纳米片(UMOFNS)是具有极具吸引力的,但是具有受控取向的石墨烯上的Umofns的直接生长仍然具有挑战性。这里,据报道,低浓度辅助的非均相成核致策略用于用可控取向的氧化石墨烯氧化物(RGO)表面上的UmOfns直接生长。该一般策略可以应用于在RGO上构建各种UMOFN,包括CO-ZIF,Ni-ZIF,CO,Cu-ZIF和CO,Fe-Zif。当UMOFNS大多上垂直于RGO附加时,形成具有开放孔结构和优异的导电性的3D泡沫状分层架构(名为UMOFNS @ RGO-F),显示出优异的性能作为Li离子电池和氧气进化的电极材料。该贡献提供了一种改进MOF在能量存储应用中的电化学性能的策略。

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