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Electroactive nanoparticle directed assembly of functionalized graphene nanosheets into hierarchical structures with hybrid compositions for flexible supercapacitors

机译:电活性纳米粒子定向组装的功能化石墨烯nanosheets进层次结构和混合成分对柔性超级电容器

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摘要

Hierarchical structures of hybrid materials with the controlled compositions have been shown to offer a breakthrough for energy storage and conversion. Here, we report the integrative assembly of chemically modified graphene (CMG) building blocks into hierarchical complex structures with the hybrid composition for high performance flexible pseudocapacitors. The formation mechanism of hierarchical CMG/Nafion/RuO2 (CMGNR) microspheres, which is triggered by the cooperative interplay during the in situ synthesis of RuO2 nanoparticles (NPs), was extensively investigated. In particular, the hierarchical CMGNR microspheres consisting of the aggregates of CMG/Nafion (CMGN) nanosheets and RuO2 NPs provided large surface area and facile ion accessibility to storage sites, while the interconnected nanosheets offered continuous electron pathways and mechanical integrity. The synergistic effect of CMGNR hybrids on the supercapacitor (SC) performance was derived from the hybrid composition of pseudocapacitive RuO2 NPs with the conductive CMGNs as well as from structural features. Consequently, the CMGNR-SCs showed a specific capacitance as high as 160 F g~(-1), three-fold higher than that of conventional graphene SCs, and a capacitance retention of >95% of the maximum value even after severe bending and 1000 charge-discharge tests due to the structural and compositional features.
机译:层次结构的混合材料控制成分已被证明对能量存储和提供了一个突破转换。组装的化学改性石墨烯(发生)构建块层次复杂结构的混合成分高灵活的pseudocapacitors性能。形成机制的层次没有发生/电解质/ RuO2 (CMGNR)微球,这是引发的合作中相互作用原位合成RuO2纳米颗粒(NPs),广泛的调查。分层CMGNR微球组成的总量发生/电解质(CMGN) nanosheets和RuO2 NPs提供大的表面积和肤浅离子存储网站的可访问性,互联nanosheets提供连续电子通路和机械完整性。CMGNR混合动力车的协同效应超级电容器(SC)源自性能的混合成分pseudocapacitive RuO2NPs导电CMGNs以及结构特点。显示一个特定的电容高达华氏160度g ~(1),高出三倍传统的石墨烯SCs,和一个电容保留>即使最大值的95%严重的弯曲和1000的充放电测试由于结构和组成特征。

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