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Confined-space synthesis of hierarchical SnO2 nanorods assembled by ultrasmall nanocrystals for energy storage

机译:通过超大纳米晶体组装的分层SnO2纳米棒的限制空间合成,用于储能

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摘要

A genetically modified bacterial surface not only serves as a confined environment for controlling the monodispersity of particle size, but also provides a carbon source in situ . The carbon coated SnO _(2) composite exhibits good lithium storage properties as an anode electrode, which are due to the ultrasmall size of the particles, the carbon coating and mesoporous structure.
机译:基因改性的细菌表面不仅用作控制粒径的单反面性的狭窄环境,而且还提供原位的碳源。碳涂覆的SnO _(2)复合材料表现出良好的锂储存性能作为阳极电极,这是由于颗粒的超大尺寸,碳涂层和中孔结构。

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