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From polymeric carbon nitride to carbon materials: extended application to electrochemical energy conversion and storage

机译:从聚合物碳氮化碳材料:扩展应用电化学能源转换和存储

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摘要

As an emerging photocatalyst, polymeric carbon nitride (PCN) currently has drawn ever-increasing attention for electrochemical energy conversion and storage due to its graphite-like structure, metal-free characteristic and excellent structural tunability. Nonetheless, its practical applications are still hindered by the poor electrical conductivity induced irreversible capacity loss. Recently, PCN-derived carbon materials with improved conductivity have received increasing interest and made tremendous progress for advanced electrochemical energy conversion and storage. This review highlights the latest research advancements regarding the electrochemical energy conversion (hydrogen evolution reaction, oxygen reduction/evolution reaction, nitrogen reduction reaction, carbon dioxide reduction reaction,etc.) and storage (Li-ion batteries, Li-S batteries, supercapacitors,etc.) application from PCN to PCN-derived carbon materials. A perspective about the challenges and trends in the electrochemical application of PCN and PCN-derived carbon materials is also provided at the end of the review.
机译:作为一个新兴的光催化剂,高分子碳目前氮化(PCN)吸引了越来越多注意对电化学能源转换由于其graphite-like和存储结构,不含金属的特性和优秀的结构的可调性。应用程序仍然是阻碍了穷人导电性导致不可逆转的容量损失。改善导电性的材料受到了越来越多的兴趣和巨大的先进的电化学能源进展转换和存储。有关的最新研究进展电化学能量转换(氢进化的反应,氧气减少/进化反应,氮还原反应,碳二氧化碳还原反应等)和存储(Li-S电池,锂离子电池超级电容器等。从PCN)应用程序PCN-derived碳材料。电化学的挑战和发展趋势应用PCN和PCN-derived碳最后还提供了材料审查。

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