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一种具有高效π电子离域的长程平面聚合物用于卓越的质子存储。

A Long-Range Planar Polymer with Efficient π-Electron Delocalization for Superior Proton Storage.

作者信息

Wang Renyuan, He Jing, Yan Chao, Jing Renwei, Zhao Yue, Yang Jun, Shi Minjie, Yan Xingbin

机构信息

School of Materials Science and Engineering, Jiangsu University of Science and Technology, Zhenjiang, 212003, P. R. China.

School of Materials Science and Engineering, Sun Yat-Sen University, Guangzhou, 510275, P. R. China.

出版信息

Adv Mater. 2024 Sep;36(36):e2402681. doi: 10.1002/adma.202402681. Epub 2024 Jul 30.

DOI:10.1002/adma.202402681
PMID:39077938
Abstract

Due to the unique "Grotthus mechanism", aqueous proton batteries (APBs) are promising energy devices with intrinsic safety and sustainability. Although polymers with tunable molecular structures are ideal electrode materials, their unsatisfactory proton-storage redox behaviors hinder the practical application in APB devices. Herein, a novel planar phenazine (PPHZ) polymer with a robust and extended imine-rich skeleton is synthesized and used for APB application for the first time. The long-range planar configuration achieves ordered molecular stacking and reduced conformational disorder, while the high conjugation with strong π-electron delocalization optimizes energy bandgap and electronic properties, enabling the polymer with low proton diffusion barriers, high redox activity, and superior electron affinity. As such, the PPHZ polymer as an electrode material exhibits fast, stable, and unrivaled proton-storage redox behaviors with a large capacity of 273.3 mAh g at 0.5 A g (1 C) in 1 M HSO electrolyte, which is the highest value among proton-inserted electrodes in aqueous acidic electrolytes. Dynamic in situ techniques confirm the high redox reversibility upon proton uptake/removal, and the corresponding protonation pathways are elucidated by theoretical calculations. Moreover, a pouch-type APB cell using PPHZ electrode exhibits an ultralong lifespan over 30 000 cycles, further verifying its promising application prospect.

摘要

由于独特的“Grotthus机制”,水系质子电池(APB)是具有本质安全性和可持续性的有前景的能量装置。尽管具有可调分子结构的聚合物是理想的电极材料,但其不尽人意的质子存储氧化还原行为阻碍了其在APB装置中的实际应用。在此,首次合成了一种具有坚固且富含亚胺骨架的新型平面吩嗪(PPHZ)聚合物,并将其用于APB应用。长程平面构型实现了有序的分子堆积并减少了构象无序,而与强π电子离域的高共轭优化了能带隙和电子性质,使该聚合物具有低质子扩散势垒、高氧化还原活性和优异的电子亲和力。因此,作为电极材料的PPHZ聚合物在1 M HSO电解质中以0.5 A g(1 C)表现出快速、稳定且无与伦比的质子存储氧化还原行为,容量高达273.3 mAh g,这是水性酸性电解质中质子插入电极中的最高值。动态原位技术证实了质子吸收/去除时的高氧化还原可逆性,并通过理论计算阐明了相应的质子化途径。此外,使用PPHZ电极的软包型APB电池在超过30000次循环中表现出超长寿命,进一步验证了其广阔的应用前景。

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