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用于非水氧化还原液流电池的二酮吡咯并吡咯衍生物的电化学评估

Electrochemical Evaluation of Diketopyrrolopyrrole Derivatives for Nonaqueous Redox Flow Batteries.

作者信息

Sharma Shikha, Rathod Suman, Prakash Yadav Satya, Chakraborty Arunavo, Shukla Ashok K, Aetukuri Nagaphani, Patil Satish

机构信息

Solid State and Structural Chemistry Unit, Indian Institute of Science, Bangalore, 560012, India.

出版信息

Chemistry. 2021 Aug 19;27(47):12172-12180. doi: 10.1002/chem.202101516. Epub 2021 Jul 5.

Abstract

Redox flow batteries (RFBs) employing nonaqueous electrolytes could potentially operate at much higher cell voltages, and therefore afford higher energy and power densities, than RFBs employing aqueous electrolytes. The development of such high-voltage nonaqueous RFBs requires anolytes that are electrochemically stable, especially in the presence of traces of oxygen and/or moisture. The inherent atmospheric reactivity of anolytes mandates judicious molecular design with high electron affinity and electrochemical stability. In this study, diketopyrrolopyrrole (DPP)-based TDPP-Hex-CN is proposed as a stable redox-active molecule for anolytes in nonaqueous organic RFBs. We demonstrate organic RFBs using TDPP-Hex-CN as anolyte with unisol blue (UB) 1,4-bis(isopropylamino)anthraquinone and 1,4-di-tert-butyl-2,5-bis(2-methoxyethoxy)benzene (DBBB) as catholytes. Cyclic voltammetry measurements with scans repeated over 200 cycles were performed to establish the electrochemical stability of the redox pairs. Symmetric flow-cell studies show that TDPP-Hex-CN exhibits stable capacity up to 700 cycles. Redox flow cells employing TDPP-Hex-CN /UB and TDPP-Hex-CN /DBBB as redox pairs demonstrate that DPP derivatives are propitious materials for anolytes in all organic nonaqueous RFBs.

摘要

与使用水性电解质的氧化还原液流电池(RFB)相比,采用非水性电解质的氧化还原液流电池可能在更高的电池电压下运行,因此具有更高的能量和功率密度。开发这种高压非水性RFB需要电化学稳定的阳极电解液,尤其是在存在微量氧气和/或水分的情况下。阳极电解液固有的大气反应性要求进行具有高电子亲和力和电化学稳定性的明智分子设计。在本研究中,基于二酮吡咯并吡咯(DPP)的TDPP-Hex-CN被提议作为非水性有机RFB中阳极电解液的一种稳定的氧化还原活性分子。我们展示了使用TDPP-Hex-CN作为阳极电解液,以非那索蓝(UB)1,4-双(异丙基氨基)蒽醌和1,4-二叔丁基-2,5-双(2-甲氧基乙氧基)苯(DBBB)作为阴极电解液的有机RFB。进行了扫描重复超过200次循环的循环伏安法测量,以确定氧化还原对的电化学稳定性。对称液流电池研究表明,TDPP-Hex-CN在高达700次循环时表现出稳定的容量。采用TDPP-Hex-CN /UB和TDPP-Hex-CN /DBBB作为氧化还原对的氧化还原液流电池表明,DPP衍生物是所有有机非水性RFB中阳极电解液的有利材料。

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