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首页> 外文期刊>Nanoscale >Boosting potassium-storage performance via the functional design of a heterostructured Bi2S3@RGO composite
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Boosting potassium-storage performance via the functional design of a heterostructured Bi2S3@RGO composite

机译:通过提高potassium-storage性能功能设计的用Bi2S3@RGO复合

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摘要

Potassium-ion batteries (PIBs) are considered a promising alternative to lithium-ion batteries (LIBs) for next-generation energy storage due to the abundance and competitive cost of potassium resources. However, the excavation and the development of proper electrodes for PIBs are still confronted with great challenges. Herein, a self-assembled bismuth sulfide microsphere wrapped with reduced graphene oxide was fabricated to form a heterostructured Bi2S3@RGO composite via a visible-light-assisted method and served as the anode for PIBs. The as-prepared Bi2S3@RGO composite presented a high reversible specific capacity of 538 mA h g(-1) at 0.2 A g(-1) and superior rate capability of 237 mA h g(-1) at a high current density of 2 A g(-1) after 300 cycles. In particular, the high capacity could be ascribed to the synergistic effect of the conversion and alloying reactions during the electrochemical processes, which was validated by ex situ X-ray diffraction. The fabrication of a unique heterostructure combining the self-assembled Bi2S3 microspheres and flexible RGO boosted the facile charge transfer, leading to the enhanced cyclic stability and rate performance.
机译:钾离子电池(本文)被认为是有前途的替代锂离子电池(LIBs)下一代储能由于钾离子的丰度和竞争成本资源。适当的电极对本文的发展仍然面临着巨大的挑战。自组装硫化铋微球用降低石墨烯氧化物组装形成用Bi2S3@RGO通过visible-light-assisted方法和复合作为本文的阳极。Bi2S3@RGO复合高可逆具体的容量538毫安h 0.2 g (1)g(1)和优越的速度能力237 mA的hg(1)在高电流密度的2 g (1)300年之后周期。能力可以归因于协同转换和合金化反应的影响在电化学过程中,验证了非原位x射线衍射。制造一个独特的异质结构结合自组装Bi2S3微球灵活RGO提升了灵巧的电荷转移,导致增强的循环稳定性和速度的性能。

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