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MoS_(2)/Ti_(3)C_(2)复合材料的制备及储钠研究
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作者 张昊臻 彭洲浩 孙萍萍 《广州化工》 CAS 2024年第22期45-47,70,共4页
Ti_(3)C_(2)是一种导电性优异的新型二维材料,被广泛应用于储能方面。但是,其片层易发生堆叠,影响了比容量和倍率性能。MoS_(2)具有较高的理论容量,然而,纯MoS_(2)电极导电性较差且在充放电过程中面临巨大的体积膨胀和粉化等问题,容量... Ti_(3)C_(2)是一种导电性优异的新型二维材料,被广泛应用于储能方面。但是,其片层易发生堆叠,影响了比容量和倍率性能。MoS_(2)具有较高的理论容量,然而,纯MoS_(2)电极导电性较差且在充放电过程中面临巨大的体积膨胀和粉化等问题,容量衰减快和结构不稳定。MoS_(2)与Ti_(3)C_(2)复合能够发挥二者的协同效应,不仅能有效抑制MoS_(2)的体积膨胀和聚集,而且可以有效增强界面电荷转移和界面结构的稳定性。基于此,本研究介绍了MoS_(2)/Ti_(3)C_(2)复合材料的制备方法和储钠研究。 展开更多
关键词 MoS_2 Ti_3C_2 制备方法 储钠
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Research progress of modification of Ti_(3)C_(2)T_(x) in sodium-ion batteries
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作者 SUN Pingping YU Huan +3 位作者 ZHANG Haozhen WANG Haoen PENG Zhouhao QIN Sai 《分子科学学报》 CAS 2024年第2期115-124,共10页
As a new two-dimensional layered structural material,Ti_(3)C_(2)T_(x)has excellent electrical conductivity,mechanical properties,hydrophilicity and rich functional groups,showing a wide application prospect in the fie... As a new two-dimensional layered structural material,Ti_(3)C_(2)T_(x)has excellent electrical conductivity,mechanical properties,hydrophilicity and rich functional groups,showing a wide application prospect in the field of energy storage.However,when Ti_(3)C_(2)T_(x)is used as the electrode material of energy storage device,it is easy to stack due to the van der Waals forces between the layers,which hinders the reaction between the surface active site and electrolyte ions,lengthens the path of ion diffusion,and affects its specific capacity and rate performance.To address the above problems,this paper summarizes the research progress of Ti_(3)C_(2)T_(x)surface modification including designing three-dimensional nanostructures,constructing intercalated structural composites(composite with monomers,oxides,sulfides,and selenides),and doping with heteroatoms in sodium-ion batteries,and describes in detail the strategies or mechanisms of battery performance enhancement in conjunction with its preparation methods.Finally,its future research direction and development prospects are envisioned. 展开更多
关键词 MXene Ti_(3)C_(2)T_(x) MODIFICATION Na-ion battery
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