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提升三维镍基金属有机框架中的结构共轭以提高电导率和比电容

Upgrading Structural Conjugation in Three-Dimensional Ni-Based Metal-Organic Frameworks for Promoting Electrical Conductivity and Specific Capacitance.

作者信息

Tai Hongbo, Ding Wenyu, Zhang Xuan, Liang Kaicheng, Rong Yang, Liu Zhiliang

机构信息

College of Chemistry and Chemical Engineering, Inner Mongolia University, Hohhot 010021, P.R. China.

出版信息

Inorg Chem. 2024 Sep 30;63(39):18083-18091. doi: 10.1021/acs.inorgchem.4c02829. Epub 2024 Sep 19.

Abstract

Metal-organic frameworks (MOFs) have emerged as promising candidates for electrochemical energy storage and conversion due to their high specific surface areas, abundant active sites, and excellent chemical and structural tunability. However, the direct utilization of MOFs as electrochemical materials is a challenge because of the poor electroconductivity induced by the insulating nature of most organic linkers. Herein, a conjugated three-dimensional Ni-MOF {Ni(HBTC)(BPE)} () with a 2-fold interpenetrating structure was developed via the coordination polymerization of Ni, a HBTC ligand (1,3,5-benzenetricarboxylic acid), and a vinyl-functionalized bipyridine linker (1,2-di(4-pyridyl)ethylene, BPE). displayed an enhanced conjugation system compared to analogous and insulated that is constructed by the Ni-BTC layer and ordinary bipyridine linker (4,4'-bipyridine, BPY). Notably, upgrading structural conjugation promoted a dramatical ∼204 times increase in the electroconductivity of compared to . More importantly, displayed a higher specific capacitance of 633.2 F g (316.6 C g) at 1 A g, which exhibited a significant ∼1.5-fold enhancement than . Furthermore, the asymmetric supercapacitor can reach a good energy density of 25.2 Wh kg with a reasonable cycle stability of 71.0% over 5000 cycles. This work provides an effective method for optimizing the structure of insulating MOFs to enhance the electroconductivity and specific capacitance.

摘要

金属有机框架材料(MOFs)因其高比表面积、丰富的活性位点以及出色的化学和结构可调控性,已成为电化学能量存储和转换领域颇具潜力的候选材料。然而,由于大多数有机连接体的绝缘性质导致其导电性较差,直接将MOFs用作电化学材料具有挑战性。在此,通过镍、1,3,5-苯三甲酸(HBTC)配体和乙烯基功能化联吡啶连接体(1,2-二(4-吡啶基)乙烯,BPE)的配位聚合反应,制备了一种具有2重穿插结构的共轭三维镍基MOF{Ni(HBTC)(BPE)}。与由镍-对苯二甲酸层和普通联吡啶连接体(4,4'-联吡啶,BPY)构建的类似绝缘MOF相比,{Ni(HBTC)(BPE)}展现出增强的共轭体系。值得注意的是,结构共轭的提升使{Ni(HBTC)(BPE)}的电导率相较于[对比的MOF]显著提高了约204倍。更重要的是,{Ni(HBTC)(BPE)}在1 A g电流密度下表现出633.2 F g(316.6 C g)的较高比电容,相较于[对比的MOF]有显著的约1.5倍提升。此外,该不对称超级电容器能够达到25.2 Wh kg的良好能量密度,在5000次循环中具有71.0%的合理循环稳定性。这项工作为优化绝缘MOFs的结构以提高电导率和比电容提供了一种有效方法。

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