J. Mater. Sci. Technol. ›› 2025, Vol. 229: 203-212.DOI: 10.1016/j.jmst.2024.12.061
• Research article • Previous Articles Next Articles
Xinyu Yua, Ziyi Zhanga, Xinya Chena, Lixia Baob, Jiong Penga, Xin Lia,*
Received:
2024-09-19
Revised:
2024-12-19
Accepted:
2024-12-22
Published:
2025-09-10
Online:
2025-02-25
Contact:
*E-mail address: Xinyu Yu, Ziyi Zhang, Xinya Chen, Lixia Bao, Jiong Peng, Xin Li. Engineering d-band center of Mn to strengthen Mn-O bonding for long cycle life zinc-ion battery[J]. J. Mater. Sci. Technol., 2025, 229: 203-212.
[1] J.Y. Kim, G. Liu, G.Y. Shim, H. Kim, J.K. Lee, Adv. Funct. Mater. 30(2020) 2004210. [2] H. He, H. Tong, X. Song, X. Song, J. Liu, J. Mater. Chem. A 8 (2020) 7836-7846. [3] H. Jia, Y. Li, U. Ali, B. Liu, Z. Jin, L. Li, Y. Chen, L. Zhang, T. Wang, C. Wang, Nano Energy 122 (2024) 109348. [4] J. Mao, J. Iocozzia, J. Huang, K. Meng, Y. Lai, Z. Lin, Energy Environ. Sci. 11(2018) 772-799. [5] L. Gou, K. Mou, X. Fan, M. Zhao, Y. Wang, D. Xue, D. Li, Dalton Trans. 49(2020) 711-718. [6] L. Xu, N. Xu, C. Yan, W. He, X. Wu, G. Diao, M. Chen, J. Electroanal. Chem. 888(2021) 115196. [7] Z. Liu, C. Zhu, Y. Ye, Y. Zhang, F. Cheng, H. Li, ACS Appl. Mater. Interfaces 14 (2022) 25962-25971. [8] F. Gao, X. Tang, H. Yi, C. Chu, N. Li, J. Li, S. Zhao, Chem. Eng. J. 322(2017) 525-537. [9] L.E. Blanc, D. Kundu, L.F. Nazar, Joule 4 (2020) 771-799. [10] G. Yang, Q. Li, K. Ma, C. Hong, C. Wang, J. Mater. Chem. A 8 (2020) 8084-8095. [11] N. Gao, Y. Song, C. Li, C. Hu, ACS Appl. Mater. Interfaces 15 (2023) 28044-28054. [12] R. Yang, Y. Fan, R. Ye, Y. Tang, X. Cao, Z. Yin, Z. Zeng, Adv. Mater. 33(2021) 2004862. [13] J. Song, H. Wang, Y. Zuo, K. Zhang, T. Yang, Y. Yang, C. Gao, T. Chen, G. Feng, Z. Jiang, W. Xiao, T. Luo, D. Xia, Electrochem. Energy Rev. 6(2023) 20. [14] S. Jia, L. Li, Y. Shi, C. Wang, M. Cao, Y. Ji, D. Zhang, Nanoscale 16 (2024) 1539-1576. [15] S. Islam, M.H. Alfaruqi, V. Mathew, J. Song, S. Kim, S. Kim, J. Jo, J.P. Baboo, D. T. Pham, D.Y. Putro, Y. Sun, J. Kim, J. Mater. Chem. A 5 (2017) 23299-23309. [16] R.J. Gummow, A. de Kock, M.M. Thackeray, Solid State Ionics 69 (1994) 59-67. [17] K. Amine, J. Liu, S. Kang, I. Belharouak, Y. Hyung, D. Vissers, G. Henriksen, J. Power Sources 129 (2004) 14-19. [18] X. Guo, J. Zhou, C. Bai, X. Li, G. Fang, S. Liang, Mater. Today Energy 16 (2020) 100396. [19] Y. Xu, G. Zhang, J. Liu, J. Zhang, X. Wang, X. Pu, J. Wang, C. Yan, Y. Cao, H. Yang, W. Li, X. Li, Energy Environ. Mater. 6(2023) e12575. [20] M. Lin, F. Shao, S. Weng, S. Xiong, S. Liu, S. Jiang, Y. Xu, Y. Jiao, J. Chen, Elec-trochim. Acta 378 (2021) 138147. [21] Z. Wang, Y. Wang, Y. Lin, G. Bian, H.-Y. Liu, X. Li, J. Yin, J. Zhu, ACS Appl. Mater. Interfaces 14 (2022) 47725-47736. [22] Z. Wang, J. Huang, L. Wang, Y. Liu, W. Liu, S. Zhao, Z.-Q. Liu, Angew.Chem. Int. Edit. 61(2022) e202114696. [23] P. Sivasubramanian, J. Chang, S. Nagendran, C. Dong, M. Shkir, M. Kumar, Chemosphere 307 (2022) 135652. [24] Y. Ma, M. Xu, R. Liu, H. Xiao, Y. Liu, X. Wang, Y. Huang, G. Yuan, Energy Storage Mater. 48(2022) 212-222. [25] S. Cheng, L. Yang, D. Chen, X. Ji, Z. Jiang, D. Ding, M. Liu, Nano Energy 9 (2014) 161-167. [26] H. Zheng, Y. Zeng, H. Zhang, X. Zhao, M. Chen, J. Liu, X. Lu, J. Power Sources 433 (2019) 126684. [27] H. Xu, S. Yang, B. Li, J. Mater. Chem. A 8 (2019) 149-157. [28] P. Ruan, X. Xu, X. Gao, J. Feng, L. Yu, Y. Cai, X. Gao, W. Shi, F. Wu, W. Liu, X. Zang, F. Ma, X. Cao, Sustain. Mater. Technol. 28(2021) e00254. [29] Y. Zhang, S. Deng, Y. Li, B. Liu, G. Pan, Q. Liu, X. Wang, X. Xia, J. Tu, Energy Storage Mater. 29(2020) 52-59. [30] L. Hu, R. Gao, A. Zhang, R. Yang, X. Zang, S. Wang, S. Yao, Z. Yang, H. Hao, Y. Yan, Nano Energy 74 (2020) 104891. [31] J. Li, Q. Guan, Y. Li, P. Chai, S. Zhang, L. Li, L. Bao, J. Peng, X. Li, Chem. Eng. J. 483(2024) 149205. [32] K. Wang, J. Wang, P. Chen, M. Qin, C. Yang, W. Zhang, Z. Zhang, Y. Zhen, F. Fu, B. Xu, Small 19 (2023) 2300585. [33] G. Cui, Y. Zeng, J. Wu, Y. Guo, X. Gu, X.W. Lou, Adv. Sci. 9(2022) 2106067. [34] H. Tang, W. Chen, N. Li, Z. Hu, L. Xiao, Y. Xie, L. Xi, L. Ni, Y. Zhu, Energy Storage Mater. 48(2022) 335-343. [35] J. Wang, J. Wang, X. Qin, Y. Wang, Z. You, H. Liu, M. Shao, ACS Appl. Mater. Interfaces 12 (2020) 34949-34958. [36] L. Ding, J. Gao, T. Yan, C. Cheng, L. Chang, N. Zhang, X. Feng, L. Zhang, ACS Appl. Mater. Interfaces 14 (2022) 17570-17577. [37] H. Tang, W. Chen, N. Li, Z. Hu, L. Xiao, Y. Xie, L. Xi, L. Ni, Y. Zhu, Energy Storage Mater. 48(2022) 335-343. [38] M. Chamoun, W.R. Brant, C.W. Tai, G. Karlsson, D. Noréus, Energy Storage Mater. 15(2018) 351-360. [39] Y. Zhong, X. Xu, J.P. Veder, Z. Shao, iScience 23 (2020) 100943. [40] G. Liang, F. Mo, H. Li, Z. Tang, Z. Liu, D. Wang, Q. Yang, L. Ma, C. Zhi, Adv. Energy Mater. 9(2019) 1901838. [41] Q. Wang, G. Tian, C. Huang, D. Zhang, Small 19 (2023) 2301189. [42] Y. Gao, J. Zhou, L. Qin, Z. Xu, Z. Liu, L. Wang, X. Cao, G. Fang, S. Liang, Green Energy Environ. 8(2023) 1429-1436. [43] Z. Li, Y. Zheng, Q. Jiao, Y. Zhao, H. Li, C. Feng, Chem. Eng. J. 465(2023) 142897. [44] J. Wang, J. Wang, H. Liu, C. Wei, F. Kang, J. Mater. Chem. A 7 (2019) 13727-13735. [45] X. Yang, A.L. Rogach, Adv. Energy Mater. 9(2019) 1900747. [46] X. Wang, B. Xi, X. Ma, Z. Feng, Y. Jia, J. Feng, Y. Qian, S. Xiong, Nano Lett. 20(2020) 2899-2906. [47] D. Zhang, J. Cao, X. Zhang, N. Insin, S. Wang, J. Han, Y. Zhao, J. Qin, Y. Huang, Adv. Funct. Mater. 31(2021) 2009412. [48] Z. Li, Y. Zheng, Q. Jiao, Y. Zhao, H. Li, C. Feng, Chem. Eng. J. 465(2023) 142897. [49] Y. Wang, Y. Zhang, G. Gao, Y. Fan, R. Wang, J. Feng, L. Yang, A. Meng, J. Zhao, Z. Li, Nano-Micro Lett. 15(2023) 219. [50] H. Zhang, S. Li, L. Xu, R. Momen, W. Deng, J. Hu, G. Zou, H. Hou, X. Ji, Adv. Energy Mater. 12(2022) 2200665. [51] Z. Hou, C. Cui, Y. Li, Y. Gao, D. Zhu, Y. Gu, G. Pan, Y. Zhu, T. Zhang, Adv. Mater. 35(2023) 2209876. [52] H. Liu, X. Shu, M. Huang, B. Wu, J. Chen, X. Wang, H. Li, H. Yu, Nat. Commun. 15(2024) 2327. [53] J. Ling, A. Gao, Y. Huang, F. Yi, Q. Li, G. Wang, Y. Liu, D. Shu, Chem. Eng. J. 452(2023) 139661. [54] B. Peng, Y. Chen, F. Wang, Z. Sun, L. Zhao, X. Zhang, W. Wang, G. Zhang, Adv. Mater. 34(2022) 2103210. |
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