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首页> 外文期刊>Chemical engineering journal >A novel solid-state electrochromic supercapacitor with high energy storage capacity and cycle stability based on poly(5-formylindole)/WO3 honeycombed porous nanocomposites
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A novel solid-state electrochromic supercapacitor with high energy storage capacity and cycle stability based on poly(5-formylindole)/WO3 honeycombed porous nanocomposites

机译:一种新型固态电致变色超级电容器,具有高储能容量和基于聚(5-甲酰吲哚)/ WO3蜂窝多孔多孔纳米复合材料的循环稳定性

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摘要

Novel honeycombed porous poly(5-formylindole) (P5FIn)/WO3 nanocomposites are successfully prepared through combining hydrothermal synthesis and electrochemical polymerization. The morphology and structure of prepared P5FIn/WO3 nanocomposites are characterized by SEM, TEM, FTIR, Raman spectra, XRD and XPS. Due to the synergistic effect of P5FIn and WO3, the prepared nanocomposites exhibit excellent electrochemical, electrochromic, supercapacitive properties and cycle stability. The areal specific capacitance of the nanocomposites is 34.1 mF cm(-2). After 5000 cycles charge and discharge, the nanocomposites can still maintain 93% of its initial capacitance value. A high coloration efficiency (137 cm(2) C-1) is also shown when the nanocomposites reversibly switches among dark green, yellow and yellow green. The fabricated electrochromic supercapacitor based on P5FIn/WO3 and poly(3,4-ethylenedioxythiophene) (PEDOT) shows high specific capacitance (10.38 mF cm(-2)), high coloration efficiency (627 cm(2) C-1) and stable cyclic stability up to 5000 charge/ discharge cycles. By means of color change and transmittance change during the charging and discharging process, the smart visual monitoring of the energy storage state of the supercapacitor is realized. After charged, the supercapacitor can light up a LED, indicating good practical application ability. The fabricated electrochromic supercapacitor may have practical application in electronics fields due to its high energy storage capacity and cycling stability.
机译:通过组合水热合成和电化学聚合,成功制备了新型蜂窝状多孔聚(5-甲酰基吲哚)(P5Fin)/ WO3纳米复合材料。制备的P5Fin / WO3纳米复合材料的形态和结构的特征在于SEM,TEM,FTIR,拉曼光谱,XRD和XPS。由于P5FIN和WO3的协同作用,所制备的纳米复合材料具有出色的电化学,电致变色,超级特性和循环稳定性。纳米复合材料的面积特异性电容为34.1mF cm(-2)。在5000个循环充电和放电后,纳米复合材料仍然可以保持其初始电容值的93%。当纳米复合材料可逆地切换深绿色,黄色和黄绿色时,还显示了高着色效率(137cm(2)C-1)。基于P5Fin / WO3和聚(3,4-乙腈)(PEDOT)的制造的电致变色超级电容器显示出高比电容(10.38mF cm(-2)),高着色效率(627cm(2)C-1)和稳定循环稳定性高达5000充电/放电循环。通过在充电和放电过程中通过颜色变化和透射率改变,实现了超级电容器的能量存储状态的智能视觉监测。充电后,超级电容器可以点亮LED,表明良好的实用应用能力。由于其高储能容量和循环稳定性,所制造的电致变色超级电容器可能具有在电子领域的实际应用。

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