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Recent progress in layered transition metal carbides and/or nitrides (MXenes) and their composites: synthesis and applications

机译:层状过渡金属碳化物和/或氮化物(MXenes)及其复合材料的合成与应用研究进展

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Since their inception in 2011, from the inaugural synthesis of multi-layered Ti3C2Tx by etching Ti3AlC2 with hydrofluoric acid (HF), novel routes with a myriad of reducing agents, etchants and intercalants have been explored and many new members have been added to the two-dimensional (2D) material constellation. Despite being endowed with the rare combination of good electronic conductivity and hydrophilicity, their inherent low capacities, for instance, temper their prospect for application for electrodes in energy storage systems. MXene-based composites, however, with a probable synergistic effect in agglomeration prevention, facilitating electronic conductivity, improving electrochemical stability, enhancing pseudocapacitance and minimizing the shortcomings of individual components, exceed the previously mentioned capacitance ceiling. In this review, we summarise the development and progress in the synthesis of various multi-layered carbides, carbonitrides and nitrides, and intercalants, as well as the subsequent processing in order to delaminate them into single-and/or few-layered and incorporate into MXene-based composites, focusing on their performance and application as transparent conductive films, environmental remediation, electromagnetic interference (EMI) absorption and shielding, electrocatalysts, Li-ion batteries (LIBs), supercapacitors and other electrochemical storage systems.
机译:自 2011 年成立以来,从首次通过用氢氟酸 (HF) 蚀刻 Ti3AlC2 来合成多层 Ti3C2Tx 以来,已经探索了含有无数还原剂、蚀刻剂和插层剂的新路线,并为二维 (2D) 材料星座添加了许多新成员。尽管它们具有良好的电子导电性和亲水性的罕见组合,但它们固有的低容量,例如,削弱了它们在储能系统中电极应用的前景。然而,MXene基复合材料在防止团聚、促进电子导电性、提高电化学稳定性、增强赝电容和最大限度地减少单个元件的缺点方面可能具有协同效应,超过了前面提到的电容上限。本文综述了各种多层碳化物、碳氮化物和氮化物以及插层剂的合成进展和进展,以及将其分解成单层和/或少层并掺入MXene基复合材料的后续加工,重点介绍了其作为透明导电膜的性能和应用、环境修复、电磁干扰(EMI)吸收和屏蔽, 电催化剂、锂离子电池(LIB)、超级电容器和其他电化学存储系统。

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