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- W2156870225 abstract "A unique hybrid, TiO2–B nanosheets/anatase nanocrystals co-anchored on nanoporous graphene sheets, can be synthesized by a facile microwave-induced in situ reduction–hydrolysis route. The as-formed nanohybrid has a hierarchically porous structure, involving both mesopores of approximately 4 nm and meso-/macropores of 30–60 nm in the graphene sheets, and a large surface area. Importantly, electrodes composed of the nanohybrid exhibit superior rate capability (160 mA h g−1 at ca. 36 C; 154 mA h g−1 at ca. 72 C) and excellent cyclability. The synergistic effects of conductive graphene with numerous nanopores and the pseudocapacitive effect of ultrafine TiO2–B nanosheets and anatase nanocrystals endow the hybrid a superior rate capability." @default.
- W2156870225 created "2016-06-24" @default.
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- W2156870225 date "2013-12-27" @default.
- W2156870225 modified "2023-09-25" @default.
- W2156870225 title "TiO<sub>2</sub>-B Nanosheets/Anatase Nanocrystals Co-Anchored on Nanoporous Graphene: In Situ Reduction-Hydrolysis Synthesis and Their Superior Rate Performance as an Anode Material" @default.
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- W2156870225 doi "https://doi.org/10.1002/chem.201303734" @default.
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