用于长寿命水性有机氧化还原液流电池的铠装五元吡咯烷亚硝基化合物阴离子的空间结构调控

IF 42.9 Q1 ELECTROCHEMISTRY
Hao Fan , Kai Liu , Xudong Zhang , Yunpeng Di , Pan Liu , Jiaqi Li , Bo Hu , Hongbin Li , Mahalingam Ravivarma , Jiangxuan Song
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引用次数: 0

摘要

具有高潜力的五元吡咯啉亚硝基化合物作为水性有机氧化还原液流电池(AORFB)的阴极溶质令人着迷,然而,它的主要缺陷是开环副反应导致的稳定性不足。在此,我们报告了一种通过主-客化学来调节空间结构的策略,即将 3-氨基甲酰基-2,2,5,5-四甲基吡咯啉-1-氧(CPL)封装到水溶性环糊精(CD)中,其包合物结构为 N-O- 头朝向空腔底部,从而显著提高了吡咯啉亚硝基化合物的溶解性和可循环性。在组装的 AORFB 中,0.05-0.5 M 的铠装 CPL(CPL⊂HP-β-CD)阴极溶液与 0.05 M 的单一 CPL 相比,在 500 个循环周期内,电池容量衰减率低至 0.002 %/循环(0.233 %/天)(0.039 %/循环或 5.23 %/天)。N-O- 头朝向 CD 腔底部的优化倾斜空间结构有效抑制了路易斯碱物种对吡咯啉环中氢抽取位点的攻击,从而避免了吡咯啉亚硝基化合物的开环副反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Spatial structure regulation towards armor-clad five-membered pyrroline nitroxides catholyte for long-life aqueous organic redox flow batteries

Spatial structure regulation towards armor-clad five-membered pyrroline nitroxides catholyte for long-life aqueous organic redox flow batteries

Spatial structure regulation towards armor-clad five-membered pyrroline nitroxides catholyte for long-life aqueous organic redox flow batteries

Five-membered pyrroline nitroxides with high-potential is fascinating as catholyte for aqueous organic redox flow batteries (AORFBs), however, it suffers from a primary deficiency of insufficient stability due to ring-opening side reaction. Herein we report a spatial structure regulation strategy by host-guest chemistry, encapsulating 3-carbamoyl-2,2,5,5-tetramethylpyrroline-1-oxyl (CPL) into hydrosoluble cyclodextrins (CDs) with an inclusion structure of N–O· head towards cavity bottom, to boost the solubility and cyclability of pyrroline nitroxides significantly. The armor-clad CPL (CPL⊂HP-β-CD) catholyte in 0.05–0.5 ​M presents a battery capacity fade rate as low as 0.002 ​%/cycle (0.233 ​%/day) compared to the sole CPL in 0.05 ​M (0.039 ​%/cycle or 5.23 ​%/day) over 500 cycles in assembled AORFBs. The optimized reclining spatial structure with N–O· head towards CD cavity bottom effectively inhibits the attack of Lewis base species on the hydrogen abstraction site in pyrroline ring, and thus avoids the ring-opening side reaction of pyrroline nitroxides.

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