首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Ultrafast post-synthetic modification of a pillared cobalt(ii)-based metal-organic framework via sulfurization of its pores for high-performance supercapacitors
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Ultrafast post-synthetic modification of a pillared cobalt(ii)-based metal-organic framework via sulfurization of its pores for high-performance supercapacitors

机译:超快合成的柱状钴(II)的后型金属有机骨架通过其孔的高性能超级电容器硫化

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In this study, a fast and simple technique (2 min) has been developed to modify the pores of a novel micro-porous, amide-functionalized Co(ii)-based MOF [Co(oba)(2)(bpfb)(4)](DMF)(2), TMU-61, (H(2)oba = 4,4-oxybis(benzoic acid) and bpfb = N,N-bis-(4-pyridylformamide)-1,4-benzenediamine). The material produced through sulfurization of TMU-61, at ambient temperatures, can be used as an appropriate electrode material for supercapacitors (SCs). The highest specific capacitance of a system with three electrodes is 636.6 F g(-1) at a current density of 5 A g(-1), and the specific capacitance retention is nearly 94% after 6000 cycles, demonstrating an impressive long-term cycling stability. The asymmetric SC (ASC) based on S-TMU-61 showed the highest energy density (25.73 W h kg(-1)) and power density (2549.3 W kg(-1)). Additionally, it is observed that two S-TMU-61 ASCs connected in series are enough to supply energy for lighting blue, yellow, green and red light emitting diodes (LED) for 22 min and driving a mini rotating motor, demonstrating the excellent potential of the new material for a variety of applications. To the best of the authors' knowledge, this is the first study to use post synthetic modification of a MOF with a suitable pore size to optimize the material for use in SCs.
机译:在该研究中,已经开发了一种快速简便的技术(2分钟)以改变新的微多孔,酰胺官能化CO(II)的孔 - 基础MOF [CO(OBA)(2)(BPFB)(4 )](DMF)(2),TMU-61,(H(2)OBA = 4,4-羟基乙酸(苯甲酸)和BPFB = N,N-BIS-(4-吡啶基甲酰胺)-1,4-苯二胺) 。通过在环境温度下通过TMU-61硫化产生的材料,可用作超级电容器(SCS)的适当电极材料。具有三个电极的系统的最高特定电容为636.6 f g(-1),电流密度为5 a g(-1),在6000次循环后,特定的电容保持近94%,令人印象深刻的长期循环稳定性。基于S-TMU-61的非对称SC(ASC)显示出最高能量密度(25.73WH kg(-1))和功率密度(2549.3W kg(-1))。另外,观察到串联连接的两个S-TMU-61 ASC足以为照明蓝色,黄色,绿色和红色发光二极管(LED)提供22分钟的能量,并驱动迷你旋转电机,展示优异的电位各种应用的新材料。据作者所知,这是第一次使用合成孔径的合成修饰,具有合适的孔径,以优化用于SCS的材料。

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