Two-dimensional porous conducting polymer nanosheets as a functional interlayer in lithium organic batteries
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Conducting polymers have attracted considerable attention across various fields, including sensors, energy devices, and catalysts, owing to their advantageous features such as high electrical conductivity, flexibility, and ease of production. In this study, we synthesized high crystalline 2D conducting polymer nanosheets using an ice template, which allowed for uniform and high-conductivity nanosheets in a short time. Moreover, we introduced nanoparticles during the ice-templated conducting polymer synthesis, resulting in nanoporous structures. These engineered porous nanosheets with enhanced electrical conductivity showed promise as interlayers in lithium-organic batteries, effectively addressing the issues of active materials dissolution into liquid electrolytes. This advancement holds great promise for the development of environmentally-friendly future energy storage systems.