J. Mater. Sci. Technol. ›› 2025, Vol. 228: 34-41.DOI: 10.1016/j.jmst.2024.11.073
• Research article • Previous Articles Next Articles
Jianhong Duana, Kun Weia, He Qib,c,*, Huifen Yub, Hao Lia,*
Received:2024-10-06
Revised:2024-11-12
Accepted:2024-11-20
Published:2025-09-01
Online:2025-09-01
Contact:
*E-mail addresses: Jianhong Duan, Kun Wei, He Qi, Huifen Yu, Hao Li. High-entropy lead-free relaxors for large capacitive energy storage with superior comprehensive performance[J]. J. Mater. Sci. Technol., 2025, 228: 34-41.
| [1] M. Zhang, S. Lan, B. Yang, H. Pan, Y. Liu, Q. Zhang, J. Qi, D. Chen, H. Su, D. Yi, Y. Yang, R. Wei, H. Cai, H. Han, L. Gu, C.-W. Nan, Y.-H. Lin, Science 384 (2024) 185-189. [2] P. Zhao, Z. Cai, L. Chen, L. Wu, Y. Huan, L. Guo, L. Li, H. Wang, X. Wang, Energy Environ. Sci. 13(2020) 4882-4890. [3] A. Xie, J. Fu, R. Zuo, X. Jiang, T. Li, Z. Fu, Y. Yin, X. Li, S. Zhang, Adv. Mater. 34(2022) 2204356. [4] N. Luo, K. Han, M.J. Cabral, X. Liao, Y. Wei, Nat. Commun. 11(2020) 4824. [5] G. Wang, J. Li, X. Zhang, Z. Fan, F. Yang, A. Feteira, D. Zhou, D.C. Sinclair, T. Ma, X. Tan, Energy Environ. Sci. 12(2019) 582-588. [6] H. Pan, F. Li, Y. Liu, Q. Zhang, M. Wang, S. Lan, Y. Zheng, J. Ma, L. Gu, Y. Shen, P. Yu, S. Zhang, L.-Q. Chen, Y.-H. Lin, C.-W. Nan, Science 365 (2019) 578-582. [7] Z. Lu, W. Bao, G. Wang, S.-K. Sun, L. Li, J. Li, H. Yang, H. Ji, A. Feteira, D. Li, F. Xu, A.K. Kleppe, D. Wang, S.-Y. Liu, I.M. Reaney, Nano Energy 79 (2021) 105423. [8] B. Chu, J. Hao, P. Li, Y. Li, W. Li, L. Zheng, H. Zeng, ACS Appl. Mater. Interfaces 14 (2022) 19683-19696. [9] X. Dong, X. Li, X. Chen, Z. Tan, J. Wu, J. Zhu, H. Zhou, Nano Energy 101 (2022) 107577. [10] W. Huang, Y. Chen, X. Li, G. Wang, J. Xia, X. Dong, Chem. Eng. J. 444 (2022) 135523. [11] K. Wei, J. Duan, X. Zhou, G. Li, D. Zhang, H. Li, ACS Appl. Mater. Interfaces 15 (2023) 48354-48364. [12] S. Li, T. Hu, H. Nie, Z. Fu, X. Dong, Energy Storage Mater. 34(2021) 417-426. [13] Y. Gao, W. Qiao, X. Lou, Z. Song, X. Zhu, L. He, B. Yang, Y. Hu, J. Shao, D. Wang, Z. Chen, S. Zhang, Adv. Mater. 36(2023) 2310559. [14] H. Liu, Z. Sun, J. Zhang, H. Luo, Y. Yao, X. Wang, H. Qi, S. Deng, J. Liu L. C. Gallington, Y. Zhang, J.C. Neuefeind, J. Chen, J. Am. Chem.Soc. 145(2023) 19396-19404. [15] L. Chen, H. Yu, J. Wu, S. Deng, H. Liu, L. Zhu, H. Qi, J. Chen, Nano-Micro Lett. 15(2023) 65. [16] M. Wang, Q. Feng, C. Luo, Y. Lan, C. Yuan, N. Luo, C. Zhou, T. Fujita, J. Xu, G. Chen, Y. Wei, ACS Appl. Mater. Interfaces 13 (2021) 51218-51229. [17] H. Peng, T. Wu, Z. Liu, Z. Fu, D. Wang, Y. Hao, F. Xu, G. Wang, J. Chu, Nat. Commun. 15(2024) 5232. [18] Q. Hu, Y. Tian, Q. Zhu, J. Bian, L. Jin, H. Du, D.O. Alikin, V. Ya Shur, Y. Feng, Z. Xu, X. Wei, Nano Energy 67 (2020) 104264. [19] C. Li, J. Liu, L. Lin, W. Bai, S. Wu, P. Zheng, J. Zhang, J. Zhai, Small 19 (2023) 2206662. [20] Z. Sun, J. Zhang, H. Luo, Y. Yao, N. Wang, L. Chen, T. Li, C. Hu, H. Qi, S. Deng, L. C. Gallington, Y. Zhang, J.C. Neuefeind, H. Liu, J. Chen, J. Am. Chem.Soc. 145(2023) 6194-6202. [21] D. Li, D. Xu, W. Zhao, M. Avdeev, H. Jing, Y. Guo, T. Zhou, W. Liu, D. Wang, D. Zhou, Energy Environ. Sci. 16(2023) 4511-4521. [22] S. Chen, T. Wang, S. Xie, J. Leng, Q. Zhu, K. Li, W. Gong, J. Zhu, Q. Wang, ACS Appl. Mater. Interfaces 16 (2024) 12521-12533. [23] B. Yang, Q. Zhang, H. Huang, H. Pan, W. Zhu, F. Meng, S. Lan, Y. Liu, B. Wei, Y. Liu, L. Yang, L. Gu, L.-Q. Chen, C.-W. Nan, Y.-H. Lin, Nat. Energy 8 (2023) 956-964. [24] Y. Ning, Y. Pua, C. Wu, S. Zhou, L. Zhang, J. Zhang, X. Zhang, Y. Shang, J. Mater. Sci.Technol. 145(2023) 66-73. [25] L. Wu, L. Tang, Y. Zhai, Y. Zhang, J. Sun, D. Hu, Z. Pan, Z. Su, Y. Zhang, J. Liu, J. Materiomics 8 (2022) 537-544. [26] Z. Wang, R. Kang, W. Liu, L. Zhang, L. He, S. Zhao, H. Duan, Z. Yu, F. Kang, Q. Sun, T. Zhang, P. Mao, J. Wang, L. Zhang, Chem. Eng. J. 427(2022) 131989. [27] W. Zhao, D. Xu, D. Li, M. Avdeev, H. Jing, M. Xu, Y. Guo, D. Shi, T. Zhou, W. Liu, D. Wang, D. Zhou, Nat. Commun. 14(2023) 5725. [28] F. Yan, X. Zhou, X. He, H. Bai, S. Wu, B. Shen, J. Zhai, Nano Energy 75 (2020) 105012. [29] X. Zhu, Y. Gao, P. Shi, R. Kang, F. Kang, W. Qiao, J. Zhao, Z. Wang, Y. Yuan, X. Lou, Nano Energy 98 (2022) 107276. [30] Z. Lu, G. Wang, W. Bao, J. Li, L. Li, A. Mostaed, H. Yang, H. Ji, D. Li, A. Feteira, F. Xu, D.C. Sinclair, D. Wang, S.-Y. Liu, I.M. Reaney, Energy Environ. Sci. 13(2020) 2938-2948. [31] L. Chen, T. Hu, X. Shi, H. Yu, H. Zhang, J. Wu, Z. Fu, H. Qi, J. Chen, Adv. Mater. 36(2024) 2313285. [32] M. Yina, Y. Zhang, H.-R. Bai, P.Li, Y.-C. Li, W.-F. Han, J.-G. Hao, W. Li, C.-M. Wang, P. Fu, J. Mater. Sci. Technol. 184(2024) 207-220. [33] B. Yang, Y. Zhang, H. Pan, W. Si, Q. Zhang, Z. Shen, Y. Yu, S. Lan, F. Meng, Y. Liu, H. Huang, J. He, L. Gu, S. Zhang, L.-Q. Chen, J.Zhu, C.-W. Nan, Y.-H. Lin, Nat. Mater. 21(2022) 1074-1080. [34] L. Chen, S. Deng, H. Liu, J. Wu, H. Qi, J. Chen, Nat. Commun. 13(2022) 3089. [35] W. Cao, R. Lin, X. Hou, L. Li, F. Li, D. Bo, B. Ge, D. Song, J. Zhang, Z. Cheng, Adv. Funct. Mater. 33(2023) 2301027. [36] J. Zhao, T. Hu, Z. Fu, Z. Pan, L. Tang, X. Chen, H. Li, J. Hu, L. Lv, Z. Zhou, J. Liu, P. Li, J. Zhai, Small 19 (2023) 2206840. [37] H. Wang, Q. He, X. Gao, Y. Shang, W. Zhu, W. Zhao, Z. Chen, H. Gong, Y. Yang, Adv. Mater. 36(2023) 2305453. [38] C. Yang, J. Huang, Q. Huang, Z. Deng, Y. Wang, X. Li, Z. Zhou, J. Chen, Z. Liu, W. Guo, J. Adv. Ceram. 11(2022) 901-911. [39] C. Chen, S. Zhang, B. Li, Ceram. Int. 50(2024) 650-659. [40] L. Chen, F. Long, H. Qi, H. Liu, S. Deng, J. Chen, Adv. Funct. Mater. 32(2022) 2110478. [41] C. Zuo, S. Yang, Z. Cao, H. Yu, X. Wei, Chem. Eng. J. 442(2022) 136330. [42] X. Li, Z. Tan, J. Xing, F. Wang, L. Xie, W. Zhang, N. Chen, H. Chen, J. Zhu, ACS Appl. Mater. Interfaces 14 (2022) 42245-42257. [43] J. Xing, Y. Huang, Q. Xu, B. Wu, Q. Zhang, Z. Tan, Q. Chen, J. Wu, J. Zhu, ACS Appl. Mater. Interfaces 13 (2021) 28472-28483. [44] J. Liu, C. Li, W. Bai, Y. Yuan, P. Zheng, Q. Fan, S. Wu, J. Zhang, J. Zhai, J. Mater. Chem. A 11 (2023) 15931-15942. [45] Z. Yang, F. Gao, H. Du, L. Jin, L. Yan, Q. Hu, Y. Yu, S. Qu, X. Wei, Z. Xu, Y.-J. Wang, Nano Energy 58 (2019) 768-777. [46] X. Dong, X. Li, H. Chen, Q. Dong, J. Wang, X. Wang, Y. Pan, X. Chen, H. Zhou, J. Adv. Ceram. 11(2022) 729-741. [47] Q. Ma, L. Chen, H. Yu, J. Wu, L. Zhu, J. Yang, H. Qi, Small 19 (2023) 2303768. [48] J. Duan, K. Wei, Q. Du, L. Ma, H. Yu, H. Qi, Y. Tan, G. Zhong, H. Li, Nat. Commun. 15(2024) 6754. [49] H. Ji, D. Wang, W. Bao, Z. Lu, G. Wang, H. Yang, A. Mostaed, L. Li, A. Feteira, S. Sun, F. Xu, D. Li, C.-J. Ma, S.-Y. Liu, I.M. Reaney, Energy Storage Mater. 38(2021) 113-120. [50] D.I. Woodward, I.M. Reaney, Acta Crystallogr. B 61 (2005) 387-399. [51] Y. Zhang, L. Chen, H. Liu, S. Deng, H. Qi, J. Chen, InfoMat 5 (2023) 12488. [52] Q. Liu, Y. Zhang, J. Gao, Z. Zhou, H. Wang, K. Wang, X. Zhang, L. Li, J.-F. Li, Energy Environ.Sci. 11(2018) 3531-3539. [53] A .A. Bokov, Z.G. Ye, J. Mater. Sci. 41(2006) 31-52. [54] G. Smolensky, Ferroelectrics 53 (2011) 129-135. [55] J. Duan, K. Wei, Q. Du, L. Ma, H. Qi, H. Li, Adv. Funct. Mater. 34(2024) 2409446. [56] C. Zuo, J. Xu, S. Yang, Z. Cao, H. Yu, J. Liu, X. Wei, Mater. Horiz. 11(2024) 1732-1740. [57] L. Chen, F. Long, H. Qi, H. Liu, S. Deng, J. Chen, Adv. Funct. Mater. 32(2022) 2110478. [58] W. Cao, P. Chen, R. Lin, F. Li, B. Ge, D. Song, Z. Cheng, C. Wang, Compos. Part B-Eng. 255(2023) 110630. [59] X. Zeng, J. Lin, Y. Chen, S. Wang, P. Zhou, F. Yu, X. Wu, M. Gao, C. Zhao, T. Lin, L. Luo, C. Lin, Small 20 (2024) 2309992. [60] C. Zuo, S. Yang, Z. Cao, W. Jie, X. Wei, Ceram. Int. 49(2023) 25486-25494. [61] S. Zhou, Y. Pu, X. Zhang, Y. Shi, Z. Gao, Y. Feng, G. Shen, X. Wang, D. Wang, Chem. Eng. J. 427(2022) 131684. |
| [1] | Shengyang Dong, Ruiqi Ren, Jingyuan Zhang, Xiaozhi Bao, Xin Liu, Qiuwei Shi, Zhijie Chen, Huaiyu Shao. High-entropy oxides: Emergent materials for electrochemical energy storage and conversion [J]. J. Mater. Sci. Technol., 2025, 227(0): 192-215. |
| [2] | Qianbiao Du, Linzhao Ma, Jianhong Duan, Longxiang Jiang, Hao Li, Hanning Xiao. Crystal structure, sintering behavior, and microwave dielectric properties of LiF-tailored high entropy Li2Mg6ZnTi6O20 ceramics [J]. J. Mater. Sci. Technol., 2025, 220(0): 290-298. |
| [3] | Ding Ai, Chenglong Wu, Yuting Han, Yuan Chang, Zongliang Xie, Hao Yu, Yanhao Ma, Yonghong Cheng, Guanglei Wu. Polymer nanocomposites with concurrently enhanced dielectric constant and breakdown strength at high temperature enabled by rationally designed core-shell structured nanofillers [J]. J. Mater. Sci. Technol., 2025, 210(0): 170-178. |
| [4] | Lei Hu, Li Zhang, Wei Cui, Qinyou An, Ting Ma, Qiuwang Wang, Liqiang Mai. Carbon-based porous materials for performance-enhanced composite phase change materials in thermal energy storage: Materials, fabrication and applications [J]. J. Mater. Sci. Technol., 2025, 210(0): 204-226. |
| [5] | Yinzhong Wang, Shiqi Liu, Xianwei Guo, Boya Wang, Qinghua Zhang, Yuqiang Li, Yulong Wang, Guoqing Wang, Lin Gu, Haijun Yu. Elements gradient doping in Mn-based Li-rich layered oxides for long-life lithium-ion batteries [J]. J. Mater. Sci. Technol., 2025, 207(0): 266-273. |
| [6] | Ming Yin, Ying Zhang, Hai-Rui Bai, Peng Li, Yu-Chao Li, Wei-Fang Han, Ji-Gong Hao, Wei Li, Chun-Ming Wang, Peng Fu. Preeminent energy storage properties and superior stability of (Ba(1-x)Bix)(Ti(1-x)Mg2x/3Tax/3)O3 relaxor ferroelectric ceramics via elongated rod-shaped grains and domain structural regulation [J]. J. Mater. Sci. Technol., 2024, 184(0): 207-220. |
| [7] | Xuqing Zhang, Yongping Pu, Yating Ning, Lei Zhang, Bo Wang, Zhemin Chen. Ultrahigh energy storage with superfast charge-discharge capability achieved in linear dielectric ceramic [J]. J. Mater. Sci. Technol., 2024, 177(0): 59-67. |
| [8] | Faiza Bibi, Irfan Ali Soomro, Abdul Hanan, Muhammad Nazim Lakhan, Amjad Khan, Naila Riaz Goraya, Zaeem Ur Rehman, Iftikhar Hussain, Kaili Zhang. Advances in 2D/2D MXenes-based heterostructures for energy storage/conversion applications [J]. J. Mater. Sci. Technol., 2024, 202(0): 82-118. |
| [9] | Zhengdong Wang, Mengli Li, Botao Liu, Ganqiu Yang, Meng Luo, Tong Zhang, Ling Li, Yonghong Cheng, Zirui Jia, Guanglei Wu. Enhanced energy storage characteristics of the epoxy film with rigid phenyl-flexible etherified methylene chains [J]. J. Mater. Sci. Technol., 2024, 183(0): 12-22. |
| [10] | Deqing He, Chunyu Zhu, Yutao Huo, Zhonghao Rao. Enhancing lithium-sulfur battery performance with In2O3-In2S3@NSC heterostructures: Synergistic effects of double barrier and catalytic transformation [J]. J. Mater. Sci. Technol., 2024, 169(0): 105-114. |
| [11] | Junfeng Shen, Yanqi Ma, Fan Zhou, Xinxin Sheng, Ying Chen. Thermophysical properties investigation of phase change microcapsules with low supercooling and high energy storage capability: Potential for efficient solar energy thermal management [J]. J. Mater. Sci. Technol., 2024, 191(0): 199-208. |
| [12] | Piers Coia, Bhagya Dharmasiri, Filip Stojcevski, David J. Hayne, Elmer Austria Jr., Behnam Akhavan, Joselito M. Razal, Ken Aldren S. Usman, Melissa K. Stanfield, Luke C. Henderson. Scalable electrochemical grafting of anthraquinone for fabrication of multifunctional carbon fibers [J]. J. Mater. Sci. Technol., 2024, 200(0): 162-175. |
| [13] | Xiang Li, Jing Wang, Xingyuan San, Ning Wang, Lei Zhao. High energy storage performance in AgNbO3 relaxor ferroelectric films induced by nanopillar structure [J]. J. Mater. Sci. Technol., 2023, 155(0): 160-166. |
| [14] | Ramu Manikandan, Antonysamy Dennyson Savariraj, Goli Nagaraju, A.M. Kale, J. Puigdollers, Hyejin Park, Hyun-Soo Kim, Jae-Min Oh, C. Justin Raj, Byung Chul Kim. Mixed-phase composites derived from cobalt terephthalate as efficient battery-type electrodes for high-performance supercapattery [J]. J. Mater. Sci. Technol., 2023, 157(0): 220-233. |
| [15] | Junhao Xing, Feng Luo, Yaoyi Qin, Xiaolu Chen, Yingying Liang, Zhixin Gao, Fei Shang, Huarui Xu, Guohua Chen. Multi-ratio optical thermometry and energy storage characteristics of Yb3+/Er3+/Tm3+ doped BaNb2O6 transparent glass-ceramics [J]. J. Mater. Sci. Technol., 2023, 138(0): 138-148. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||
WeChat
