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A novel synthetic approach for designing metal-free, redox-active quinoxaline-benzimidazole-based organic polymers with high energy storage capacity

机译:一种新的合成方法,用于设计无金属,氧化氢活性喹喔啉 - 苯并咪唑基有机聚合物,具有高储能能力

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摘要

New organic framework materials, namely, polyphenylquinoxaline (QOP) and polyphenylquinoxaline-benzimidazole (QOP-BOP) were designed using a high-temperature (>100 degrees C) polymerization reaction with different monomers, i.e., 2,5-bis-[(4-benzoylcarbonyl)phenyl]-3-4 diphenyl thiophene (BbcPDT), aromatic tetraamines and biphenyl dicarboxylic acid. The QOP-BOP copolymer exhibited specific capacitance (SC) of 305 F g(-1) at the current density of 2 A g(-1) and 88% retention of its initial specific capacitance after 1000 cycles, which resulted in good cyclic stability. This work establishes the first use of thiophene integrated with quinoxaline-benzimidazole units for energy storage applications and provides strategies for further developments in the performance of such conjugated materials. Cyclic voltammetry, charge-discharge and electrochemical impedance techniques were used to evaluate the electrochemical parameters, which demonstrated their potential in future energy storage devices.
机译:使用高温(> 100℃)聚合反应与不同单体的聚合反应设计新的有机骨架材料,即多苯喹喔啉(QOP)和多苯基喹喔啉 - 苯并咪唑(QOP-BOP),即2,5-双 - [(4 - 苯甲酰羰基)苯基] -3-4二苯基噻吩(BBCPDT),芳族四胺和联苯基二羧酸。 QoP-BOP共聚物在1000次循环后,在电流密度为2Ag(-1)和88%的初始特定电容的情况下,其特定电容(Sc)为305 f g(-1),其初始特定电容为88%,这导致良好的循环稳定性。这项工作建立了噻吩与喹喔啉 - 苯并咪唑单元的首次使用,用于储能应用,并提供这种共轭材料性能的进一步发展的策略。使用循环伏安法,充放电和电化学阻抗技术来评估电化学参数,其在未来的能量存储装置中展示了它们的潜力。

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