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Graphene-Wrapped Nanoporous Nickel-Cobalt Oxide Flakes for Electrochemical Supercapacitors

机译:石墨烯包裹的纳米多孔镍钴氧化物薄片用于电化学超级电容器

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abstract_textpA novel approach for hybridizing nanoporous NiCo oxide flakes with graphene sheets is reported. Positively charged cyano-bridged CoNi coordination polymer flakes (CoNi-CP) are mixed with graphene (G) suspension with negatively charged surface. Due to effective electrostatic interaction, both the materials are hybridized to form CoNi-CP/G composite. The as-prepared CoNi-CP/G composite is thermally treated in air, to remove the organic components without affecting the integrity of the parent G sheets. Through the thermal treatment, the CoNi-CP flakes wrapped into G sheets are converted to NiCo oxide, resulting in a new composite consisting of NiCo oxide flakes and G sheets. The NiCo-oxide/G composite shows the high specific capacitance (similar to 199 F g-1) at 5 mV/s, and features the good capacitance retention of similar to 68 at 100 mV(similar to 135 F g(-1))./p/abstract_text
机译:报道了一种将纳米多孔氧化镍钴薄片与石墨烯片杂交的新方法。将带正电荷的氰基桥接CoNi配位聚合物薄片(CoNi-CP)与表面带负电荷的石墨烯(G)悬浮液混合。由于有效的静电相互作用,两种材料杂化形成CoNi-CP/G复合材料。制备的CoNi-CP/G复合材料在空气中进行热处理,以去除有机成分,而不影响母G片的完整性。通过热处理,包裹在G片中的CoNi-CP薄片转化为氧化镍钴,从而形成由氧化镍钴薄片和G片组成的新型复合材料。NiCo-oxide/G复合材料在5 mV/s时表现出高比电容(类似于199 F g-1),在100 mV时具有良好的电容保持率,接近68%(类似于135 F g(-1))。

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