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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Mixed-Ligand Architected Unique Topological Heterometallic Sodium/Cobalt-Based Metal-Organic Framework for High-Performance Supercapacitors
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Mixed-Ligand Architected Unique Topological Heterometallic Sodium/Cobalt-Based Metal-Organic Framework for High-Performance Supercapacitors

机译:用于高性能超级电容器的混合配体独特的拓扑杂项钠/钴基金属框架

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摘要

A new Na/Co-based heterometallic metal-organic framework, [Na2Co(SDCA)(mu(2)-OH)(2)(mu(2)-H2O)(2) (Azopy)](n) (where Azopy = 4,4'-Azopyridine and SDCA = 2,5'-thiophenedicarboxylic acid) (1) with nanorod-shaped morphology was synthesized using mixed-ligand approach via slow-diffusion technique under ambient conditions. The crystal structure study demonstrates the proportion of Co(II) and Na(I) metal node to be 1:2 and the acquired coordination network reveals as a 3D architecture. Topologically, the 4-c Na(I) ion directs in situ assembly of 4-c SDCA linker and 6-c Co(II) ion, resulting in the formation of 4,4,6-c net with a topology named as smm3. Additionally, 1 was incorporated as a binder-free material for a glassy carbon electrode (1-GCE) to explore its supercapacitor performance, which reveals a high specific capacitance of 321.8 F g(-1) at 4 A g(-1) and notable rate performance (similar to 78.9% of initial capacitance up to 16 A g(-1)) as well as excellent cycling stability (retains 97.4% after 5000 cycles). The demonstrated strategy of employing different heterometallic clusters with mixed ligands markedly increases MOF's complexity and induces synergistic properties, which is highly favorable for electrochemical applications. Hence, the present approach can be extended to build a wide range of MOFs and synergistically enhanced electrochemical performance can be achieved.
机译:一种新的Na / Co-Co-Co类杂金属 - 有机框架,[Na 2 CO(SDCA)(MU(2)-OH)(2)(mu(2)-H2O)(2)(氮杂)](n)(其中zopopy在环境条件下,使用混合配体方法合成了纳米棒形形态的4,4'-氮杂物和SDCA = 2,5'-噻吩二羧酸)(1)。晶体结构研究证明了CO(II)和NA(I)金属节点的比例为1:2,所获取的协调网络揭示为3D架构。拓扑上,4-C na(i)离子直接原位组装4-c sdca接头和6-c co(ii)离子,导致形成4,4,6-c net,拓扑显示为smm3 。另外,将1作为玻璃碳电极(1-GCE)的无粘合剂材料掺入,以探讨其超级电容器性能,其在4Ag(-1)中显示出321.8f g(-1)的高比电容值得注意的速率性能(类似于78.9%的初始电容,高达16Ag(-1))以及出色的循环稳定性(在5000次循环后保留97.4%)。使用混合配体采用不同的异象簇的证明策略显着增加了MOF的复杂性并诱导协同性质,这对电化学应用具有高度有利的性能。因此,可以扩展本方法以构建各种MOF,并且可以实现协同增强的电化学性能。

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