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2022年第3期

Volume 1 Issue 3 (Special Issue)


Editorial

Interdisciplinary Research of Materials and Energy in Honor of Nobel Laureate John B. Goodenough

材料与能源的交叉学科研究——致敬诺贝尔奖获得者John B. Goodenough先生


Review

Y. Huang. The Discovery of Cathode Materials for Lithium-Ion Batteries from the View of Interdisciplinarity. Interdiscip. Mater. 2022; 1(3): 323-329.  doi: 10.1002/idm2.12048

华中科技大学黄云辉教授综述:交叉学科视角下锂离子电池正极材料的发现


J. Yan, H. Huang, J. Tong, W. Li, X. Liu, H. Zhang, H. Huang, W. Zhou. Recent progress on the modification of high nickel content NCM: Coating, doping, and single crystallization. Interdiscip. Mater. 2022; 1(3): 330-353. doi: 10.1002/idm2.12043

北京化工大学周伟东教授团队综述:高镍三元材料改性研究进展:包覆,掺杂和单晶化


B. Zhang, L. Ren, Y. Wang, X. Xu, Y. Du, S. Dou. Gallium-based liquid metals for lithium-ion batteries. Interdiscip. Mater. 2022; 1(3): 354-372. doi: 10.1002/idm2.12042

澳大利亚技术科学与工程院窦世学院士团队综述:液态金属基材料应用于锂离子电池


M. Wang, Q. Wang, X. Ding, Y. Wang, Y. Xin, P. Singh, F. Wu, H. Gao. The prospect and challenges of sodium-ion batteries for low-temperature conditions. Interdiscip. Mater. 2022; 1(3): 373-395. doi: 10.1002/idm2.12040

北京理工大学吴锋院士、高洪才教授团队综述:钠离子电池在低温条件下的前景与挑战


C. Li, R. Li, K. Liu, R. Si, Z. Zhang, Y. Hu. NaSICON: A promising solid electrolyte for solid-state sodium batteries. Interdiscip. Mater. 2022; 1(3): 396-416. doi: 10.1002/idm2.12044

中科院物理所胡勇胜研究员团队综述:NaSICON:一种有前景的钠离子固态电解质


Perspective

X. Wang, Z. Gu, E. H. Ang, X. Zhao, X. Wu, Y. Liu. Prospects for managing end-of-life lithium-ion batteries: Present and future. Interdiscip. Mater. 2022; 1(3): 417-433. doi: 10.1002/idm2.12041

东北师范大学刘益春院士、吴兴隆教授团队:废旧锂离子电池高效循环再利用


Research Article

G. Wang, Y. Liang, H. Liu, C. Wang, D. Li, L. Fan. Scalable, thin asymmetric composite solid electrolyte for high-performance all-solid-state lithium metal batteries. Interdiscip. Mater. 2022; 1(3): 434-444. doi: 10.1002/idm2.12045

北京科技大学范丽珍教授团队:易于大面积制备非对称复合固体电解质用于高性能全固态锂金属电池

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