研究论文
Elucidating the intercalation mechanism of zinc ions into α-MnO 2 for rechargeable zinc batteries
Boeun Lee, Hae Ri Lee, Haesik Kim, Kyung Yoon Chung, Byung Won Cho, Si Hyoung Oh
Korean Association Of Science and Technology Studies Korea Institute of Science and Technology
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摘要与影响
摘要 · 完整
The intercalation mechanism of zinc ions into 2 × 2 tunnels of an α-MnO2 cathode for rechargeable zinc batteries was revealed. It involves a series of single and two-phase reaction steps and produces buserite, a layered compound with an interlayer spacing of 11 Å as a discharge product.
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学术脉络
学科主题
工程Advanced battery technologies research
Advancements in Battery Materials · Advanced Battery Materials and Technologies
参考文献 33
Hydrothermal Soft Chemical Process for Synthesis of Manganese Oxides with Tunnel Structures
被引 130Qi Cheng Feng, Kazumichi Yanagisawa, Nakamichi Yamasaki · Journal of Porous Materials · 1998
Todorokite as a Li Insertion Cathode: Comparison of a Large Tunnel Framework “” Structure with Its Related Layered Structures
被引 58Morven J. Duncan, Fabrice Leroux, J. M. Corbett · Journal of The Electrochemical Society · 1998
Prototype systems for rechargeable magnesium batteries
被引 2,377Doron Aurbach, Z. Lu, Alex Schechter · Nature · 2000
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引用本文 542
Reversible aqueous zinc/manganese oxide energy storage from conversion reactions
被引 3,088Huilin Pan, Yuyan Shao, Pengfei Yan · Nature Energy · 2016
Recent Advances in Aqueous Zinc-Ion Batteries
被引 2,273Guozhao Fang, Jiang Zhou, Anqiang Pan · ACS Energy Letters · 2018
Recent Advances in Zn‐Ion Batteries
被引 2,212Ming Song, Hua Tan, Dongliang Chao · Advanced Functional Materials · 2018
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