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用于高性能超级电容器的具有大层间距和高强度的阳离子诱导TiCT MXene@三聚氰胺海绵气凝胶

Cation-induced TiCT MXene@melamine sponge aerogels with large layer spacing and high strength for high-performance supercapacitors.

作者信息

Cai Debin, Wu Shuai, Tian Zhen, Guo Li, Wang Yanzhong

机构信息

School of Materials Science and Engineering, North University of China, Taiyuan 030051, PR China; Shanxi Key Laboratory of Efficient Hydrogen Storage & Production Technology and Application, North University of China, Taiyuan 030051, PR China.

Shanxi Key Laboratory of Efficient Hydrogen Storage & Production Technology and Application, North University of China, Taiyuan 030051, PR China.

出版信息

J Colloid Interface Sci. 2024 Jul;665:232-239. doi: 10.1016/j.jcis.2024.03.135. Epub 2024 Mar 21.

Abstract

The self-assembled aerogels are considered as an efficient strategy to address the aggregation and restacking of TiCT MXene nanosheets for high-performance supercapacitors. However, the low mechanical strength of the MXene aerogel results in the structural collapse of the self-standing supercapacitor electrode materials. Herein, a low-cost melamine sponge (MS) absorbed different cations (H, K, Mg, Fe, Co, Ni and Al), serves as a carrier and crosslinker for loading MXene hydrogel induced by the absorbed cations on the skeleton surface and the pores of MS, resulting in the high loading mass MXene aerogels with high mechanical strength. The experimental results show that the Mg-TiCT@MS aerogel exhibits the maximum area capacitance of 702.22 mF cm at 3 mA cm, and the area capacitance is still 603.12 mF cm even at 100 mA cm, indicating the high rate capability with a capacitance retention of 85.89 %. It is worth noting that the constructed asymmetric supercapacitor with activated carbon achieves high energy densities of 104.53 μWh cm and 93.87 μWh cm at 800 μW cm and 7999 μW cm, respectively. Furthermore, the asymmetric supercapacitor shows the high cycling stability with 90.2 % capacity retention after 10,000 cycles. This work provides a feasible strategy to prepare TiCT MXene aerogels with large layer spacing and high strength for high-performance supercapacitors.

摘要

自组装气凝胶被认为是解决用于高性能超级电容器的TiCT MXene纳米片的聚集和重新堆叠问题的有效策略。然而,MXene气凝胶的低机械强度导致自支撑超级电容器电极材料的结构坍塌。在此,一种低成本的三聚氰胺海绵(MS)吸收了不同的阳离子(H、K、Mg、Fe、Co、Ni和Al),作为载体和交联剂,用于在MS的骨架表面和孔隙上负载由吸收的阳离子诱导的MXene水凝胶,从而得到具有高机械强度的高负载质量MXene气凝胶。实验结果表明,Mg-TiCT@MS气凝胶在3 mA cm时表现出最大面积电容为702.22 mF cm,即使在100 mA cm时面积电容仍为603.12 mF cm,表明其具有85.89%的电容保持率的高倍率性能。值得注意的是,与活性炭构建的不对称超级电容器在800 μW cm和7999 μW cm时分别实现了104.53 μWh cm和93.87 μWh cm的高能量密度。此外,该不对称超级电容器显示出高循环稳定性,在10000次循环后容量保持率为90.2%。这项工作为制备具有大层间距和高强度的TiCT MXene气凝胶用于高性能超级电容器提供了一种可行的策略。

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