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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >3D Lithiophilic and Conductive N-CNT@Cu2O@Cu Framework for a Dendrite-Free Lithium Metal Battery
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3D Lithiophilic and Conductive N-CNT@Cu2O@Cu Framework for a Dendrite-Free Lithium Metal Battery

机译:3D Lithiophilic and Conductive N-CNT@Cu2O@Cu Framework for a Dendrite-Free Lithium Metal Battery

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摘要

The lithium (Li) metal serves as a promising anode for rechargeable batteries, but dendrite growth and low Coulombic efficiency (CE) hamper its commercialization. Herein, we fabricate a 3D lithiophilic and conductive email protected_(2)email protected framework to suppress Li dendrites for the first time. It is a nitrogen-doped carbon nanotube (N-CNT) network with core–shell Cu_(2)email protected N-CNTs and Cu_(2)O are lithiophilic for Li nucleation. CNTs and Cu nanoparticles on Cu_(2)O constitute a conductive framework to effectively transfer electrons and Li~(+) and reduce local current density. Moreover, Cu_(2)email protected serves as a concentrator to attract Li~(+) and connect several N-CNT fibers for effective current transmission. This structure proves to have an eminent synergistic effect in suppressing dendrites, which shows excellent electrochemical performance: a high CE of about 97 even after 1100 cycles with the Li–S electrolyte, which exceeds that of almost all published works to inhibit Li dendrites. It also exhibits impressive electrochemical performance in symmetric and full cells. It would shed light on the research of impeding dendrites and prospering the development of alkali-metal batteries.

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