论文著作:
[1] M. Zhu,X. Zhu*, M. Zhang, H. Wang, W. Qiao, Y. Gao, R. Kang, M. Bai, J. Mei, N. Tian, C. You*, X. Lou*,Structural engineering for excellent energy storage and photoluminescence properties in (Bi0.5Na0.5)TiO3-based lead-free ferroelectrics ceramics, Ceram. Int.https://doi.org/10.1016/j.ceramint.2025.08.417. (SCI二区)
[2]W. Qiao, J. Mei, M. Bai, J. Xu, Y. Gao,X. Zhu*, Y. Hu*, Y. Li, X. Hao, X. Lou*, Enhanced energy storage properties in BNST-based lead-free relaxor ferroelectric ceramics achieved via a high-entropy strategy, Scripta Mater. 243 (2024) 115966. (SCI二区)
[3]W. Qiao, M. Bai, Y. Gao,X. Zhu*, Y. Hu, D. Wang*, X. Lou*, Enhancement of energy storage properties of BNST-based lead-free relaxor ferroelectrics via optimization strategy, Ceram. Int. 50 (2024) 51754–51761. (SCI一区)
[4]W. Qiao, Z. Xu, W. Yuan, J. Xu, Y. Gao, M. Bai,X. Zhu*,Y. Hu*, X. Lou*, Highperformance energy storage in BNST-based lead-free ferroelectric ceramics achieved through high-entropy engineering, Chem. Eng. J. 477 (2023) 147167. (SCI一区)
[5]X. Zhu#, Y. Gao#, P. Shi, R. Kang, F. Kang, W. Qiao, J. Zhao, Z. Wang, Y. Yuan, X. Lou*, Ultrahigh energy storage density in (Bi0.5Na0.5)0.65Sr0.35TiO3-based lead-free relaxor ceramics with excellent temperature stability, Nano Energy 98 (2022) 107276. (SCI一区)
[6]X. Zhu#, P. Shi#, Y. Gao, R. Kang, J. Zhao, A. Xiao*, W. Qiao, J. Zhao, Z. Wang, X. Lou*, Enhanced energy storage performance of 0.88(0.65Bi0.5Na0.5TiO3-0.35SrTiO3)-0.12Bi(Mg0.5Hf0.5)O3lead-free relaxor ceramic by composition design strategy, Chem. Eng. J. 437 (2022) 135462. (SCI一区)
[7]X. Zhu, Y. Gao, R. Kang, P. Shi, Z. Wang, X. Lou*, Remarkably enhanced recoverable energy density in lead-free relaxor Ba0.94Ca0.06Ti1-xSnxO3ceramics by the synergistic effect of nanodomains and refined grains, Journal of Alloys and Compounds 897 (2022) 163212. (SCI二区)
[8]P. Shi#,X. Zhu#, X. Lou*, B. Yang, Q.D. Liu, C.C. Kong, S. Yang*, L.Q. He, R.R. Kang, J.T. Z, Tailoring ferroelectric polarization and relaxation of BNT-based lead-free relaxors for superior energy storage properties, Chemical Engineering Journal 428 (2022) 132612. (SCI一区)
[9]P. Shi#, Z. Hong#,X. Zhu#, Q.D. Liu, B. Yang, T.Y. Li, R.R. Kang, J.T. Zhao, C.C. Kong, Y.H. Hu, X.Q. Ke*, S. Yang*, X.J. Lou*, Enhancement of energy storage properties of Bi0.5Na0.5TiO3-based relaxor ferroelectric under moderate electric field,Applied Physics Letters120 (2022) 132903. (SCI二区)
[10]X. Zhu#, P. Shi#, R. Kang, S. Li, Z. Wang, W. Qiao, X. Zhang, L. He, Q. Liu, X. Lou*, Enhanced energy storage density of Sr0.7BixTiO3lead-free relaxor ceramics via Asite defect and grain size tuning, Chem. Eng. J. 420 (2021) 129808. (SCI一区)
[11]X. Zhu#, P. Shi#, X. Lou*, Y. Gao, X. Guo, H. Sun, Q. Liu*, Z. Ren, Remarkably enhanced energy storage properties of lead-free Ba0.53Sr0.47TiO3thin films capacitors by optimizing bottom electrode thickness, J. Eur. Ceram. Soc. 40 (15) (2020) 5475-5482. (SCI一区)
[12]X. Zhu, M. Guo, B. Sun, P. Shi, M. Wu, Z. Wu, Y. Gao, H. Sun, B. Zhang, Q. Liu*, X. Lou*, Significantly enhanced energy storage density of epitaxial Ba0.53Sr0.47TiO3thin films by optimizing bottom electrode material, Ceram. Int. 46 (2020) 13900-13906. (SCI一区)