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Large-pore mesoporous covalent organic frameworks as fast ion sieves via kinetics-mediated micelle assembly for aqueous batteries

Energy Environ. Sci., 2026, Advance Article
DOI: 10.1039/D6EE01393G, Paper
Ying Wan, Lei Huang, Fanxing Bu, Zhihao Sun, Siyuan Zhang, Zaiwang Zhao, Laiquan Li, Dongliang Chao, Dongyuan Zhao, Wei Luo
A versatile kinetics-mediated micelle assembly strategy is developed for the controllable synthesis of large-pore mesoporous covalent organic frameworks, enabling the construction of a fast ion sieve coating for stable aqueous Zn–I2 batteries.
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Dual characteristics of Mn2+ dissolution from manganese oxide cathode materials in aqueous zinc batteries: trade-offs between active material loss and double capacity contribution

Energy Environ. Sci., 2026, Advance Article
DOI: 10.1039/D6EE00712K, Perspective
Yaozhi Liu, Lu Lin, Shuqi He, Hong Wu, Daihuo Liu, Dongliang Chao, Xiaoqi Sun
This perspective systematically evaluates Mn2+ dissolution behavior in aqueous Zn–MnO2 batteries to understand its dual characteristics of active material loss vs. double capacity contribution, aiming to advance energetic aqueous batteries.
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Molecular engineering of conjugated polymer cathodes via the one-pot preparation of high-rate and ultra-stable aqueous/seawater Zn-ion batteries under harsh conditions

Energy Environ. Sci., 2026, Advance Article
DOI: 10.1039/D6EE00199H, Paper
Open Access Open Access
Quanwei Ma, Cheng Ji, Zeyu Wang, Rui Wang, Longhai Zhang, Hongbao Li, Ying Xu, Qianyu Zhang, Dongliang Chao, Chaofeng Zhang
Featuring heterocyclic conjugated units, PMPZ exhibits enhanced electron affinity and π-delocalization, while its synergistic CO/CN sites enable multielectron redox for efficient charge storage and fast kinetics over a wide temperature range.
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Rational application mapping of diverse aqueous battery systems

Energy Environ. Sci., 2026, 19,2814-2832
DOI: 10.1039/D6EE00998K, Review Article
Junnan Hao, Qianru Chen, Chun-Chuan Kao, Dongliang Chao, Shi-Zhang Qiao
A systematic application-oriented mapping redefines aqueous batteries from a unified concept into differentiated technologies, guiding their rational deployment across diverse real-world energy storage scenarios.
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