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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Electrochemical Energy Storage in Poly(dithieno[3,2-b:2 ',3 '-d]pyrrole) Bearing Pendant Nitroxide Radicals
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Electrochemical Energy Storage in Poly(dithieno[3,2-b:2 ',3 '-d]pyrrole) Bearing Pendant Nitroxide Radicals

机译:聚氯乙烯能量储存在聚(DITHIENO [3,2-B:2',3'-D]吡咯)轴承侧氮氧化物自由基

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摘要

The design and electrochemical synthesis of a conjugated radical polymer (CRP), poly(dithieno[3,2-b:2',3'-d]pyrrole) bearing pendant nitroxide radicals, is reported. Conjugated radical polymers potentially offer simultaneous conductivity and redox activity in the context of organic energy storage. One challenge is understanding the internal electron transfer that occurs in CRPs, which affects the electrochemical energy storage properties. The CRP here is purposefully designed to examine the case of when the conjugated backbone's redox potential is less than that of the organic radical group. Cyclic voltammetry on the as-prepared CRP exhibits two well-resolved redox peaks at E-pa1 = 3.15 V and E-pa2 = 3.61 V vs Li/Li+, corresponding to the redox activities of the (dithieno[3,2-b:2',3'-d]pyrrole) (DTP) backbone and nitroxide radical, respectively. Galvanostatic charge/discharge studies also reveal a twostep charge/discharge process. The lower oxidation potential of DTP contributes to a conductive pathway during the charge/discharge process. An internal electron transfer process occurs during the decay of the open circuit potential, as the final potential stabilizes around 3 V. This strategy emphasizes the effects on energy storage when the redox active polymer contains two moieties that are redox active at different potentials, thus impacting future CRP design.
机译:报道了缀合的自由基聚合物(CRP)的设计和电化学合成,聚(Dithieno [3,2-B:2',3'-D]吡咯)轴承侧掺物氮氧化物自由基。共轭的自由基聚合物在有机能量储存的背景下可能提供同时电导率和氧化还原活性。一个挑战是理解在CRP中发生的内部电子转移,这影响了电化学能量存储特性。这里的CRP故意设计用于检查缀合的骨干的氧化还原电位小于有机基团组的壳体。制备的CRP上的循环伏安法在E-PA1 = 3.15 V和E-PA2 = 3.61V与Li / Li +上表现出两种良好分辨的氧化还原峰,对应于(Dithieno [3,2-B: 2',3'-D]吡咯)(DTP)骨架和氮氧化物自由基。电镀电荷/放电研究还揭示了扭力的充电/放电过程。 DTP的较低氧化电位在充电/放电过程中有助于导电通路。在开路电位的衰减期间发生内部电子转移过程,因为最终电位稳定在3 V左右。该策略在氧化还原活性聚合物含有两部分氧化还原在不同电位的情况下,强调对能量储存的影响,因此影响未来的CRP设计。

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