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用于提高法拉第电容的无孔高导电配位聚合物Cu BHT(x = 3、4和5,BHT = 苯六硫醇)中电子储库数量的增加

The Increasing Number of Electron Reservoirs in Nonporous, High-Conducting Coordination Polymers Cu BHT (x = 3, 4, and 5, BHT = Benzenehexathiol) for Improved Faradaic Capacitance.

作者信息

Sun Yong, Jin Yigang, Xu Cheng, Zhu Mengsu, Li Yang, Li Ze, Sun Yimeng, Xu Wei, Zhu Daoben

机构信息

Beijing National Laboratory for Molecular Sciences, Key Laboratory of Organic Solids, Institute of Chemistry, Chinese Academy of Sciences, Beijing, 100190, P. R. China.

University of Chinese Academy of Sciences, Beijing, 100049, P. R. China.

出版信息

Small. 2022 Jul;18(30):e2203702. doi: 10.1002/smll.202203702. Epub 2022 Jun 30.

DOI:10.1002/smll.202203702
PMID:35771097
Abstract

Although asymmetric supercapacitors (ASCs) can achieve high energy density, the lifespan and power density are severely suppressed due to the low conductivity of using pseudocapacitive or battery-type electrode materials. Recently, nonporous conductive coordination polymers (c-CPs) have sparked interests in supercapacitors. However, their performance is expected to be limited by the nonporous features, low specific surface area and absence of ion-diffusion channels. Here, it is demonstrated that the capacity of nonporous CPs will be significantly enhanced by maximizing the number of faradaic redox sites in their structures through a comparative investigation on three highly conductive nonporous c-CPs, Cu BHT(x = 3, 4, 5.5). They show excellent capacitance of 312.1 F g (374.5 C g ) (Cu BHT), 186.7 F g (224.0 C g ) (Cu BHT) and 89.2 F g (107.0 C g ) (Cu BHT) at 0.5 A g in a sequence related to the number of electron storage units in structures and outstanding rate performance and cycle stability. Furthermore, the constructed Cu BHT//MnO ASC device exhibits capacity retention of 92% (after 1500 cycles at 3 A g ) and delivers a high energy density of 39.1 Wh kg at power density of 549.6 W kg within a large working potential window of 0-2.2 V.

摘要

尽管不对称超级电容器(ASC)能够实现高能量密度,但由于使用赝电容或电池型电极材料时导电性较低,其寿命和功率密度受到严重抑制。最近,无孔导电配位聚合物(c-CP)引发了人们对超级电容器的兴趣。然而,它们的性能预计会受到无孔特性、低比表面积和缺乏离子扩散通道的限制。在此,通过对三种高导电性无孔c-CP(Cu BHT,x = 3、4、5.5)进行对比研究表明,通过最大化其结构中法拉第氧化还原位点的数量,无孔CP的容量将得到显著提高。它们在0.5 A g下分别展现出优异的电容,依次为312.1 F g(374.5 C g)(Cu BHT)、186.7 F g(224.0 C g)(Cu BHT)和89.2 F g(107.0 C g)(Cu BHT),这与结构中电子存储单元的数量有关,并且具有出色的倍率性能和循环稳定性。此外,构建的Cu BHT//MnO ASC器件在3 A g下循环1500次后容量保持率为92%,在0至2.2 V的大工作电位窗口内,在549.6 W kg的功率密度下可提供39.1 Wh kg的高能量密度。

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