Spreading the full spectrum of layer-structured compounds for kinetics-enhanced aqueous multivalent metal-ion batteries
Author:
Publisher
Elsevier BV
Subject
Energy Engineering and Power Technology,General Materials Science,Renewable Energy, Sustainability and the Environment
Reference388 articles.
1. S. Chen, M. Zhang, P. Zou, B. Sun, S. Tao, Historical development and novel concepts on electrolytes for aqueous rechargeable batteries, Energy Environ. Sci. 15 (2022) 1805–1839.
2. M. Huang, X. Wang, X. Liu, L. Mai, Fast ionic storage in aqueous rechargeable batteries: from fundamentals to applications, Adv. Mater. 34 (2022) 2105611.
3. J. Xie, Y.-.C. Lu, A retrospective on lithium-ion batteries, Nat. Commun. 11 (2020) 2499.
4. S. Chu, S. Guo, H. Zhou, Advanced cobalt-free cathode materials for sodium-ion batteries, Chem. Soc. Rev. 50 (2021) 13189–13235.
5. Nagmani, A.Tyagi, S. Puravankara, Insights into the diverse precursor-based micro- spherical hard carbons as anode materials for sodium-ion and potassium-ion batteries, Mater. Adv. 3 (2022) 810–836.
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