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Porous Carbons: Structure-Oriented Design and Versatile Applications

机译:多孔碳:面向结构的设计和多种应用

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摘要

Porous carbon materials have demonstrated exceptional performance in a variety of energy- and environment-related applications. Over the past decades, tremendous efforts have been made in the coordinated design and fabrication of porous carbon nanoarchitectures in terms of pore sizes, surface chemistry, and structure. Herein, structure-oriented carbon design and applications are reviewed. The unique properties of porous carbon materials that offer them promising design opportunities and broad applicability in some representative fields, including water remediation, CO2 capture, lithium-ion batteries, lithium-sulfur batteries, lithium metal anodes, Na-ion batteries, K-ion batteries, supercapacitors, and the oxygen reduction reaction are highlighted. Then, the most up-to-date strategies for structural control and functionalization of porous carbons are summarized, toward tailoring microporous, mesoporous, macroporous, and hierarchically porous carbons with disordered or ordered, amorphous or graphitic structures. Meanwhile, the emerging features of these structures in various applications are introduced where applicable. Finally, insights into the challenges and perspectives for future development are provided.
机译:多孔碳材料在各种与能源和环境有关的应用中均表现出卓越的性能。在过去的几十年中,在孔径,表面化学和结构方面,在多孔碳纳米结构的协调设计和制造方面做出了巨大的努力。在此,综述了面向结构的碳的设计和应用。多孔碳材料的独特性能为其提供了广阔的设计机遇,并在某些代表性领域具有广泛的适用性,包括水修复,CO2捕集,锂离子电池,锂硫电池,锂金属阳极,Na离子电池,K离子重点介绍了电池,超级电容器和氧还原反应。然后,总结了用于多孔碳的结构控制和功能化的最新策略,以定制具有无序或有序,无定形或石墨结构的微孔,中孔,大孔和分层多孔碳。同时,在适用的地方介绍了这些结构在各种应用中的新兴功能。最后,提供了对未来发展的挑战和观点的见解。

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