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atomically-dispersed-multi-site-catalysts:-bifunctional-oxygen-electrocatalysts-spice-up-versatile-zinc–air-battery-efficiency

Atomically dispersed multi-site catalysts: bifunctional oxygen electrocatalysts spice up versatile zinc–air battery efficiency

Energy Environ. Sci., 2024, Advance ArticleDOI: 10.1039/D4EE01656D, Review ArticleShengchen Wang, Mengyang Zhang, Xueqin Mu, Suli Liu, Dingsheng Wang, Zhihui DaiBased on the advancements in atomically dispersed multi-site catalysts for FZABs, this review discusses the design methodologies to regulate the performance of bifunctional oxygen electrocatalysts from

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floor-price-strengthened-and-ion-selective-layers-for-solid-steel-zinc-anodes-chemistry

Floor Price-Strengthened and Ion-Selective Layers for Solid Steel Zinc Anodes Chemistry

Energy Environ. Sci., 2024, Accepted ManuscriptDOI: 10.1039/D4EE01260G, PaperZhiquan Wei, Shixun Wang, Dedi Li, Shuo Yang, Songde Guo, Guangmeng Qu, Yihan Yang, Hongfei LiThe application of zinc (Zn) metal-based batteries is hindered by the uncontrollable thermodynamics-driven hydrogen evolution reactions and kinetics-induced dendrite growth, resulting in reduced

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structural-regulation-induced-li-electron-disentanglement-for-stabilized-oxygen-redox-of-li-excess-disordered-rock-salt-cathode-fabrics

Structural regulation-induced Li-electron disentanglement for stabilized oxygen redox of Li-excess disordered rock-salt cathode fabrics

Energy Environ. Sci., 2024, Accepted ManuscriptDOI: 10.1039/D4EE00638K, CommunicationSichen Jiao, Yujian Sun, Dekai Shi, Yuanpeng Zhang, Xuelong Wang, Jue Liu, Le Kang, Fangwei Wang, Xiqian Yu, Hong Li, Liquan Chen, Xuejie HuangSince the discovery of its electrochemical activity, Li-excess disordered rock-salt (DRX) cathode material has received

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hierarchically-stabilized-pt-unmarried-atom-catalysts-triggered-via-atomic-substitution-technique-for-environment-friendly-hydrogen-evolution-response

Hierarchically Stabilized Pt Unmarried-Atom Catalysts Triggered via Atomic Substitution Technique for Environment friendly Hydrogen Evolution Response

Energy Environ. Sci., 2024, Accepted ManuscriptDOI: 10.1039/D3EE04457B, PaperChangle Yue, Chao Feng, Guangxun Sun, Na Liu, Haoyuan Hao, Wenjing Bao, Xiaowei Zhang, Fengyue Sun, Cong Zhang, Jiahui Bi, Yan Zhou, Hsiao-Chien Chen, Yuan Pan, Daofeng Sun, Yukun LuTuning and stabilizing the chemical microenvironment of Pt-based single-atom

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assessing-the-realism-of-blank-power-projections

Assessing the Realism of Blank Power Projections

Energy Environ. Sci., 2024, Accepted ManuscriptDOI: 10.1039/D4EE00747F, Paper Open Access &nbsp This article is licensed under a Creative Commons Attribution-NonCommercial 3.0 Unported Licence.Fatemeh Rostami, Piera Patrizio, Loreano Jimenez Esteller, Carlos Pozo Fernandez, Niall MacDowellAlthough pivotal in the climate change discourse, Integrated Assessment Models (IAMs)

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sustainable-unencumber-of-mg(no3)2-from-separator-boosts-electrochemical-efficiency-of-lithium-steel-as-anodes-for-secondary-batteries

Sustainable Unencumber of Mg(NO3)2 from Separator Boosts Electrochemical Efficiency of Lithium Steel as Anodes for Secondary Batteries

Energy Environ. Sci., 2024, Accepted ManuscriptDOI: 10.1039/D4EE01426J, PaperXia Shuang, ZhiFeng Lin, Bohao Peng, Xuelong Yuan, Jingzhen Du, Xinhai Yuan, Lili Liu, Lijun Fu, Rudolf Holze, Yuping WuLithium metal batteries (LMBs) can alleviate the ‘range anxiety’ and have broad prospects due to their high energy densities.

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solvating-lithium-and-tethering-aluminium-the-use-of-di-coordination-strength-anions-for-low-temperature-lithium-steel-batteries

Solvating lithium and tethering aluminium the use of di-coordination-strength anions for low-temperature lithium steel batteries

Energy Environ. Sci., 2024, 17,4036-4043DOI: 10.1039/D3EE03809B, CommunicationJin-Xiu Chen, Jin-Hao Zhang, Xiao-Zhong Fan, Fang-Fang Wang, Wen Tang, Wei Xia, Yusheng Zhao, Long KongDi-coordination-strength anions can simultaneously solvate lithium and tether aluminium in low-temperature lithium metal batteries: the weakly coordinated anion exerts high ionic transport kinetics while

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