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Synergy of polypyrrole and carbon x-aerogel in lithium-oxygen batteries

机译:协同作用的聚吡咯和碳x-aerogellithium-oxygen电池

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摘要

A crucial step in the development of lithium-oxygen (Li-O-2) batteries is to design an oxygen cathode with high catalytic activity and stable porous structure. Achieving such design requires an integrated strategy in which porosity, conductivity, catalytic activity, and mechanical durability are all considered in a battery system. Here, we develop polypyrrole-coated carbon x-aerogels with macroscopic 3D architecture, and demonstrate their potential as oxygen cathodes for Li-O-2 batteries. This material, a novel and mechanically strong composite aerogel with polymer-cross-linked structure, not only provides effective pores that allow to store the discharge products and open channels for better oxygen diffusion, but also forms a robust 3D catalytic network that promotes both oxygen reduction and evolution reactions with improved mechanical and electrochemical stability. This work highlights the synergy between the 3D porous, conductive carbon aerogel framework and the polypyrrole catalytic layer, which maintains stable catalytic activity without deactivation and provides a more effective gas-liquid-solid interface for rapid oxygen absorption and diffusion, thereby leading to significant improvements in the capacity, rate capability and cycle life of the cathode.
机译:发展的一个至关重要的一步lithium-oxygen (Li-O-2)是设计一个电池氧和高催化活性和阴极稳定的多孔结构。需要一个集成的策略孔隙度、导电性、催化活性和机械耐久性都考虑电池系统。polypyrrole-coated碳x-aerogels宏观三维架构,并演示他们的潜力作为Li-O-2氧阴极电池。机械强大的复合气凝胶polymer-cross-linked结构,不仅提供了有效的毛孔,使存储放电产品和开放渠道更好的氧气扩散,也形成了一个强大的3 d催化网络,促进氧还原和进化与改进的机械和反应电化学稳定性。三维多孔之间的协同作用,导电碳气凝胶和聚吡咯的框架催化层,保持稳定的催化活动没有失活和提供了更多为快速有效gas-liquid-solid接口氧气吸收和扩散,从而导致在能力,显著改善阴极的性能和循环寿命。

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