J. Mater. Sci. Technol. ›› 2024, Vol. 199: 197-205.DOI: 10.1016/j.jmst.2024.01.084
• Research article • Previous Articles Next Articles
Shaopan Qin, Min Wu, Hongshun Zhao, Jianbin Li, Maoyin Yan, Yurong Ren*, Yanli Qi*
Received:
2023-12-08
Revised:
2024-01-30
Accepted:
2024-01-30
Published:
2024-11-10
Online:
2024-11-07
Contact:
*E-mail addresses: Shaopan Qin, Min Wu, Hongshun Zhao, Jianbin Li, Maoyin Yan, Yurong Ren, Yanli Qi. An in-situ cross-linked network PMMA-based gel polymer electrolyte with excellent lithium storage performance[J]. J. Mater. Sci. Technol., 2024, 199: 197-205.
[1] X. Fan, C. Wang, Chem. Soc. Rev. 50(2021) 10486-10566. [2] K. Xu, Chem. Rev. 114(2014) 11503-11618. [3] J. Lu, Z. Chen, F. Pan, Y. Cui, K. Amine, Electrochem. Energy Rev. 1(2018) 35-53. [4] J. Xiang, Y. Zhang, B. Zhang, L. Yuan, X. Liu, Z. Cheng, Y. Yang, X. Zhang, Z. Li, Y. Shen, J. Jiang, Y. Huang, Energy Environ. Sci. 14(2021) 3510-3521. [5] S. Matsuda, M. Ono, H. Asahina, S. Kimura, E. Mizuki, E. Yasukawa, S. Yam- aguchi, Y.Kubo, K. Uosaki, Adv. Energy Mater. 13(2023) 2203062. [6] S. Matsuda, Y. Kubo, K. Uosaki, S. Nakanishi, J. Phys. Chem.Lett. 8(2017) 1142-1146. [7] F. Lin, D. Nordlund, I.M. Markus, T. Weng, H.L. Xin, M.M. Doeff, Energy Environ. Sci. 7(2014) 3077-3085. [8] M. Liu, J. Vatamanu, X. Chen, L. Xing, K. Xu, W. Li, ACS Energy Lett 6 (2021) 2096-2102. [9] J. Wang, Z. Wang, J. Ni, L. Li, Electrochem. Energy Rev. 5(2021) 211-241. [10] H. Jung, W. Lee, Electrochim. Acta. 58(2011) 674-680. [11] C. Yang, K. Fu, Y. Zhang, E. Hitz, L. Hu, Adv. Mater. 29(2017) 923-932. [12] X. Cheng, Y. Wang, J. Ni, L. Li, Sci. China Mater. 65(2022) 1789-1796. [13] A. Song, Y. Huang, X. Zhong, H. Cao, B. Liu, Y. Lin, M. Wang, X. Li, J. Membr. Sci. 556(2018) 203-213. [14] T. Chen, Y. Liao, X. Wang, X. Luo, X. Li, W. Li, Electrochim. Acta 191 (2016) 923-932. [15] R. Chen, Q. Li, X. Yu, L. Chen, H. Li, Chem. Rev. 120(2019) 6820-6877. [16] Q. Yu, K. Jiang, C. Yu, X. Chen, C. Zhang, Y. Yao, B. Jiang, H. Long, Chin. Chem. Lett. 32(2021) 2659-2678. [17] G. Xi, M. Xiao, S. Wang, D. Han, Y. Li, Y. Meng, Adv. Funct. Mater. 31(2020) 2007598. [18] S. Chen, J. Zheng, D. Mei, K.S. Han, M.H. Engelhard, W. Zhao, W. Xu, J. Liu, J.G. Zhang, Adv. Mater. 30(2018) 1706102. [19] N. Piao, X. Ji, H. Xu, X. Fan, L. Chen, S. Liu, M.N. Garaga, S.G. Greenbaum, L. Wang, C. Wang, X. He, Adv. Energy Mater. 10(2020) 1903568. [20] Z. Zhou, Y. Feng, J. Wang, B. Liang, Y. Li, Z. Song, D.M. Itkis, J. Song, Chem. Eng. J. 396(2020) 125254. [21] B. Liu, Y. Huang, L. Zhao, Y. Huang, A. Song, Y. Lin, M. Wang, X. Li, H. Cao, J. Membr. Sci. 564(2018) 62-72. [22] L. Yue, J. Ma, J. Zhang, J. Zhao, S. Dong, Z. Liu, G. Cui, L. Chen, Energy Storage Mater 5 (2016) 139-164. [23] L. Yu, Y. Zhang, J. Wang, H. Gan, S. Li, X. Xie, Z. Xue, Macromolecules 54 (2021) 874-887. [24] P. Jaumaux, Q. Liu, D. Zhou, X. Xu, T. Wang, Y. Wang, F. Kang, B. Li, G. Wang, Angew. Chem. Int. Ed. 59(2020) 9134-9142. [25] D. Zhou, D. Shanmukaraj, A. Tkacheva, M. Armand, G. Wang, Chem 5 (2019) 2326-2352. [26] M. Liu, D. Zhou, Y.B. He, Y. Fu, X. Qin, C. Miao, H. Du, B. Li, Q. Yang, Z. Lin, T.S. Zhao, F. Kang, Nano. Energy 22 (2016) 278-289. [27] S. Wang, R.H. Colby, Macromolecules 51 (2018) 2757-2766. [28] Y. Niu, Y. Yin, W. Wang, P. Wang, W. Ling, Y. Xiao, Y. Guo, CCS Chem. 2(2020) 589-597. [29] J. Duan, X. Tang, H. Dai, Y. Yang, W. Wu, X. Wei, Y. Huang, Electrochem. Energy Rev. 3(2019) 1-42. [30] Y. Liang, T. Feng, J. Wu, J. Tan, M. Wu, ACS. Appl. Polym. Mater. 5(2023) 3564-3573. [31] Y. Wu, C. Zhang, W. Tu, G. Du, X. Zeng, R. Sun, Y. Xu, L. Ren, Compos. Commun. 37(2023) 101452. [32] F. Nardelli, L. Calucci, E. Carignani, S. Borsacchi, M. Cettolin, M. Arimondi, L. Gi- annini, M. Geppi, F. Martini, Polymers 14 (2022) 767. [33] Q. Zhu, K. Han, S. Wang, E.M. Muhindo, W. Wei, J. Li, T. Wu, V. Fersht, M. Zhang, Int. J. Biol. Macromol. 213(2022) 824-833. [34] M. Hahn, D. Rosenbach, A. Krimalowski, T. Nazarenus, R. Moos, M. Thelakkat, M. A. Danzer, Electrochim. Acta 344 (2020) 136060. [35] X. Zhang, S. Zhao, W. Fan, J. Wang, C. Li, Electrochim. Acta 301 (2019) 304-311. [36] S. Jamalpour, M. Ghahramani, S.R. Ghaffarian, M. Javanbakht, Polymers 228 (2021) 123924. [37] Y. Lai, J.Chen C.Lin, C. Wang, K. Huang, K. Liu, K. Lin, J. Lin, K. Ho, Sol. Energy Mater. Sol. Cells 94 (2010) 668-674. [38] Z. Wang, K. Yang, Y. Song, H. Lin, K. Li, Y. Cui, L. Yang, F. Pan, Nano Res 13 (2020) 2431-2437. [39] A. Hosseinioun, E. Paillard, J. Membr. Sci. 594(2020) 117456. [40] D. Xu, J. Jin, C. Chen, Z. Wen, ACS Appl. Mater. Interfaces 10 (2018) 38526-38537. [41] P.N. Didwal, R. Verma, A.G. Nguyen, H.V. Ramasamy, G.H. Lee, C.J. Park, Adv. Sci. 9(2022) e2105448. [42] H. Sun, J. Liu, J. He, H. Wang, G. Jiang, S. Qi, J. Ma, Sci. Bull. 67(2022) 725-732. [43] S. Jamalpour, M. Ghahramani, S.R. Ghaffarian, M. Javanbakht, Polymers 195 (2020) 122427. [44] W. Chen, Y. Liu, Y. Ma, W. Yang, J. Power Sources 273 (2015) 1127-1135. [45] K. Deng, J. Qin, S. Wang, S. Ren, D. Han, M. Xiao, Y. Meng, Small(2018) e1801420. [46] H. Wang, Q. Wang, X. Cao, Y. He, K. Wu, J. Yang, H. Zhou, W. Liu, X. Sun, Adv. Mater. 32(2020) e2001259. [47] J. Shi, Y. Yang, H. Shao, J. Membr. Sci. 547(2018) 1-10. [48] Q. Lu, J. Yang, W. Lu, J. Wang, Y. Nuli, Electrochim. Acta 152 (2015) 4 89-4 95. [49] L. Tang, B. Chen, Z. Zhang, C. Ma, J. Chen, Y. Huang, F. Zhang, Q. Dong, G. Xue, D. Chen, C. Hu, S. Li, Z. Liu, Y. Shen, Q. Chen, L. Chen, Nat. Commun. 14(2023) 2301. [50] L. Zhou, H. Zhao, K. Liang, J. Chen, J. Li, X. Huang, Y. Qi, Y. Ren, J. Colloid.Interface Sci. 613(2022) 606-615. [51] X.Cheng X.Zhang, X. Chen, C.Yan, Q. Zhang, Adv. Funct. Mater. 27(2017) 1605989. [52] S. Qi, M. Li, Y. Gao, W. Zhang, S. Liu, J. Zhao, L. Du, Adv. Mater. 35(2023) 2304951. |
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