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Synthesis of copper benzene-1,3, 5-tricarboxylate metal organic frameworks with mixed phases as the electrode material for supercapacitor applications

机译:混合相的铜-1,3,5-三羧酸铜金属有机骨架的合成作为超级电容器应用的电极材料

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摘要

Copper benzene@1, 3, 5-tricarboxylate (Cu@BTC) metal organic frameworks with two mixed phases (Cu3(BTC)2∙3H2O + {[Cu(BTC-H2)2∙(H2O2]∙3H2O}) are synthesized in water solvent at different temperatures. The crystalline nature, porosity and morphology of prepared products are characterized by X-ray diffraction, Brunauer–Emmett–Teller surface analyzer and transmission electron microscope, respectively. The formation mechanism of these two mixed phases has been proposed, and the electrochemical measurements of the Cu@BTC MOFs are carried out for electrode material of supercapacitors. The Cu@BTC-120 electrode shows significant enhancement of specific capacitance compared with other Cu@BTC electrodes. A maximum specific capacitance of 228 F g−1has been obtained at a current density of 1.5 A g−1and long cyclic stability up to 3000 cycles with capacitance retention of ∼89.7% has been achieved for Cu@BTC-120 electrode. The fast transportation of the electrolyte ions in substantial voids space between octahedral micro-crystals (Cu3(BTC)2∙3H2O) and micro-rods ({[Cu(BTC-H2)2∙(H2O2]∙3H2O}) of Cu@BTC-120 has greatly improved the electrochemical performance.
机译:合成了具有两个混合相(Cu3(BTC)2∙3H2O + {[Cu(BTC-H2)2∙(H2O2]∙3H2O})的苯@ 1,2,3,5-三羧酸铜(Cu @ BTC)在X射线衍射,Brunauer-Emmett-Teller表面分析仪和透射电镜下分别表征了制备产物的结晶性质,孔隙率和形貌,并提出了这两种混合相的形成机理,并对超级电容器的电极材料进行了Cu @ BTC MOF的电化学测量,与其他Cu @ BTC电极相比,Cu @ BTC-120电极的比电容显着提高,最大比电容为228 F g- Cu @ BTC-120电极的电流密度为1.5 A g-1时,获得了1的离子,并具有高达3000个循环的长循环稳定性和约89.7%的电容保持率。 Cu @ BTC-120的八面体微晶(Cu3(BTC)2∙3H2O)和微棒({[Cu(BTC-H2)2∙(H2O2]∙3H2O})之间的电化学性能大大提高。

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  • 来源
    《Applied Surface Science》 |2018年第1期|33-39|共7页
  • 作者单位

    Department of Electronic and Electrical Engineering, Southern University of Science and Technology,Shenzhen Key Laboratory of 3rd Generation Semiconductor Devices;

    Department of Electronic and Electrical Engineering, Southern University of Science and Technology,Shenzhen Key Laboratory of 3rd Generation Semiconductor Devices;

    Department of Electronic and Electrical Engineering, Southern University of Science and Technology;

    Department of Electronic and Electrical Engineering, Southern University of Science and Technology,Shenzhen Key Laboratory of 3rd Generation Semiconductor Devices;

    Department of Electronic and Electrical Engineering, Southern University of Science and Technology,Shenzhen Key Laboratory of 3rd Generation Semiconductor Devices,State Key Laboratories of Transducer Technology;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Metal organic framework; Supercapacitors; Specific capacitance; Voids space;

    机译:金属有机骨架;超级电容器;比电容;空隙空间;

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