
朱长明
主要研究方向:电介质物理与材料、多铁性材料与器件
邮箱:zhuchangming@gxnu.edu.cn
办公地址:广西师范大学育才校区第二物理实验楼(原数学楼)405
朱长明,男,博士,副教授/硕士生导师。2017年6月毕业于华中科技大学材料物理与化学专业,获工学博士学位。现任广西师范大学物理科学与技术学院实验物理教研室主任。主要从事电介质物理与材料、多铁性材料与器件的研发与调控。近年来在《ACS Applied Materials & Interfaces》、《Journal of Materials Chemistry C》、《Applied Physics Letters》等SCI收录的权威期刊上发表学术论文70余篇。主持广西科技计划项目2项,广西教育厅中青年项目1项,校级重点项目1项。任中国仪表功能材料学会电子元器件关键材料与技术专业委员会委员、JAD青年编委,并长期担任JAC、JMMM、MCP等国际学术期刊审稿人。主讲《电介质物理学》、《大学物理实验A》、《大学物理实验B1》等多门课程。
2012年9月-2017年6月 华中科技大学材料物理与化学专业 工学博士学位
2008年9月-2012年6月 鲁东大学应用物理学专业 工学学士学位
2017年6月至今 广西师范大学物理科学与技术学院 专任教师
电介质物理与材料、多铁性材料与器件
1、尖晶石Cr氧化物中的磁致多铁性能研究,广西自然科学基金,2020GXNSFBA297113,2021/1-2023/12,10万元。
2、纳米尺度下AB2O4系统中的磁交换偏置效应调控研究,广西科技计划项目,桂科AD19245144,2019/12-2022/11,20万元。
3、ACr2O4纳米系统中的磁交换偏置效应调控研究,广西高校中青年教师科研基础能力提升项目,2019KY0096,2019/1-2020/12,3万元。
4、广西师范大学校级重点项目,2018/1-2020/12,4万元。
1. X.F. Su, C.M. Zhu*, L.G. Wang*, G.B. Yu, X.L. Jiang, X.X. Zheng, N. Shen, M.Y. Qin and S. Lu, Synergistic regulation of piezoelectric-pyroelectric multifunctionality in Bi0.5Na0.5TiO3 (BNT) ceramics via high-entropy engineering, ACS Appl. Mater. Interfaces 17 (2025) 59506-59518.
2. L.G. Wang, N. Shen, C.M. Zhu*, X.F. Su, G.B. Yu, X.L. Jiang, M.Y. Qin, X.X. Zheng, S. Lu and Q.J. Zhu, Investigation of the design and performance regulation of (1-x)Bi0.5Na0.5TiO3-xBi0.2Na0.2Ba0.2Sr0.2Ca0.2TiO3 piezoelectric systems via a high-entropy strategy, J. Mater. Chem. C 13 (2025) 22166.
3. X.F. Su, C.M. Zhu*, L.G. Wang*, G.B. Yu, X.L. Jiang, R. Wang, H. Cui, M.Y. Qin and N. Shen, Regulation of dielectric relaxation behavior in BNT over a broad temperature range via a high-entropy strategy, Ceram. Int. 51 (2025) 35395-35404.
4. Z.H. Guan, C.M. Zhu*, L.G. Wang*, X.F. Su, X.L. Jiang, X.X. Zheng, N. Shen, M.Y. Qin, S. Lu, G.B. Yu, R. Wang and H. Cui, Regulation of piezoelectric properties in lead-free BNT-based ceramics via the comprehensive effect induced by high-entropy strategy, Ceram. Int. 51 (2025) 66067-66075.
5. L.G. Wang, M.Y. Qin, C.M. Zhu*, X.F. Su, N. Shen, X.X. Zheng, G.B. Yu, X.L. Jiang and S. Lu, Unveiling the adjustable electromechanical properties in (1-x)Bi0.5Na0.5TiO3-x(BiNaBaSrZn)0.2TiO3 composite system through high-entropy strategy, ACS Appl. Electron. Mater. 7 (2025) 10735-10746.
6. G.B. Yu, G.N. Yuan, R. Li, S.H. Shi, L.G. Wang and C.M. Zhu*, Low-temperature dielectric behavior induced by multiscale cooperative effects of CuCr2O4 under bias electric fields, J. Phys. Chem. C 129 (2025) 12233-12241.
7. L.G. Wang, X.F. Su, C.M. Zhu*, G.B. Yu, X.L. Jiang, M.Y. Qin, N. Shen and X.X. Zheng, Regulating the polarization behavior of Bi0.5Na0.5TiO3 through high-entropy design, J. Phys. D: Appl. Phys. 58 (2025) 235503.
8. G.B. Yu, H.X. Qin, C.M. Zhu*, L.G. Wang*, R. Wang, H. Cui, X.F. Su, X.L. Jiang and M.Y. Qin, Study of the modulation of sodium bismuth titanate polarization behavior by non-stoichiometric ratio, Phys. Scr. 100 (2025) 125939.
9. H. Cui, X.X. Huang, X.L. Jiang, C.M. Zhu*, L.G. Wang*, R. Wang, S. Lu and G.B. Yu, In situ Raman scattering investigation of field-induced phase transition behavior in Na1+xNbO3 ceramics via nonstoichiometric regulation, J. Appl. Phys. 137 (2025) 194101.
10. L.G. Wang, R. Wang, C.M. Zhu*, L. Xie, G.B. Yu, H. Cui, X.F. Su, X.L. Jiang, M.Y. Qin, Phonon evolution behavior under multi-field conditions in re-entrant relaxor NaNbO3 decorated with Sb, J. Am. Ceram. Soc., 108 (2025) e20541.
11. L.G. Wang, Z.H. Guan, Q. Zhang, M.S. Wang, C.M. Zhu*, G.B. Yu, R. Wang, H. Cui, X.L. Jiang, X.F. Su, Regulating the field-induced AFE-FE transition in NaNbO3 from the perspective of powder surface energy, J. Am. Ceram. Soc., 108 (2025) e20433.
12. R. Wang, C.M. Zhu*, L.G. Wang*, G.B. Yu, H. Cui, X.F. Su, X.L. Jiang, M.Y. Qin, Z.H. Guan, Exploring the low-temperature electric polarization behavior of spinel CoMn2O4, J. Alloy. Compd. 1013 (2025) 178608.
13. L.G. Wang, X.L. Jiang, C.M. Zhu*, G.B. Yu, X.F. Su, M.Y. Qin, S. Lu, N. Shen, X.X. Zheng, Visualization of the phonon evolution behavior in NaNbO3 single crystal during field-induced phase transition by in situ Raman spectroscopy, Appl. Phys. Lett. 126 (2025) 012905.
14. G.B. Yu, X.F. Su, X.X. Huang, C.M. Zhu*, L.G. Wang*, Z.H. Guan, G.N. Yuan, K.P. Fu*, Regulation of ferroelectricity in (Na0.5K0.5)1-xAgxNb1-xTaxO3 based on phase boundary and disorder engineering, J. Mater. Sci.: Mater. Electron. 35 (2024) 2074.
15. L.G. Wang, X.X. Huang, C.M. Zhu*, X.F. Su, G.B. Yu, P.Y. Zeng, C.H. Jiang, Y.S. Wang, Modulation on structure and electric properties by tantalum of lead-free NaNbO3 ceramics, J. Raman Spectrosc. 55 (2024) 1010-1018.
16. L.G. Wang, H. Cui, C.M. Zhu*, R. Wang, G.B. Yu, X.F. Su, X.L. Jiang, Y. Jiang, Jahn-Teller effect driven dielectric anomaly and intrinsic magnetodielectric behaviors in nickel chromate, J. Appl. Phys. 136 (2024) 034102.
17. L.G. Wang, R. Wang, C.M. Zhu*, G.B. Yu, P.Y. Zeng, H. Cui, Exploring the low-temperature polarization and the multifield-manipulated dielectric tunability behavior of NiMn2O4, Ceram. Int. 50 (2024) 28786-28793.
18. L.G. Wang, H.X. Qin, C.M. Zhu*, C.H. Jiang, G.B. Yu, X.F. Su, X.L. Jiang, Identifying the opposite shift behavior between depolarization and relaxation in BNT-based ceramics, J. Phys. Chem. C 128 (2024) 13199-13206.
19. L.G. Wang, C.H. Jiang, C.M. Zhu*, Y.Q. Lv, H.Z. Dai, G. B. Yu, Tuning the microstructure, morphology, and electrical polarization behavior in BNT-BKT through hydrothermal method, J. Mater. Sci.: Mater. Electron. 35 (2024) 970.
20. L.G. Wang, Y.S. Wang, C.M. Zhu*, M.Y. Qin, J.Y. Wei, Y. Jiang, Deciphering the in situ phonon evolution of potassium sodium niobate under varying temperature and electric fields, Phys. Chem. Chem. Phys. 26 (2024) 7083.
21. P.Y. Zeng, X.L. Jiang, C.M. Zhu*, L.G. Wang*, G.B. Yu, H. Cui, R. Wang, Analysis of the microstructural and magnetodielectric behavior in multiferrioc Cr1.3Fe0.7O3 nanoparticles, J. Magn. Magn. Mater. 588 (2023) 171388.
22. L.G. Wang, P.Y. Zeng, C.M. Zhu*, G.B. Yu, H. Cui, R. Wang, Insight into the low- temperature electrical polarization behavior of multiferroic Bi2Fe4O9, Ceram. Int. 49 (2023) 38264-38269.
23. L.G. Wang, C.M. Zhu*, J.B. Jiang, G.B. Yu, J.X. Qin, P.Y. Zeng, C.H. Jiang, Y.S. Wang, Dynamics of the phase transition in Bi0.5Na0.5TiO3 based on in situ Raman spectroscopy, J. Mater. Chem. C. 11 (2023) 13459.
24. L.G. Wang, X.F. Su, C.M. Zhu*, G.B. Yu, R.T. Huang, Influence of NaNbO3 addition to Bi0.5(Na0.8K0.2)0.5TiO3 lead-free ceramics on the energy storage properties, Solid State Commun. 371 (2023) 115259.
25. L.G. Wang, M.W. Yao, C.M. Zhu*, G.B. Yu, H.B. Zhou and R.T. Huang, Investigation on microstructure transition and electrical behavior in (1-x)Bi4Ti3O12/xBi4.5K0.5Ti4O15 lead-free composites, J. Alloy. Compd. 905 (2022) 164166.
26. L.G. Wang, X.X. Huang, C.M. Zhu*, G.B. Yu, X.F. Su, R.T. Huang, H.X. Qin and W.J. Kong, Structure transition and electric properties in lead-free (Na0.5K0.5)1-xAgxNb1-xTaxO3 ceramics with the polymorphic phase boundary region, J. Solid State Chem. 316 (2022) 123552.
27. M.W. Yao, G.B. Yu, C.M. Zhu*, L.G. Wang and P.Y. Zeng, Phase transition induced morphotropic phase boundary behavior and the electric properties in strontium modulated Bi4.5Na0.5Ti4O15 lead-free ceramics, Ceram. Int. 47 (2021) 22889-22899.
28. Y.T. Zhao, G.B. Yu, C.M. Zhu*, L.G. Wang and M.W. Yao, Evolution of structure and the exchange bias behavior with annealing temperature in nanoscale NiCr2O4, J. Alloy. Compd. 858 (2021) 157663.
29. Z.H. Huang, M.W. Yao, Q. Huang, G.B. Yu, L.G. Wang*, C.M. Zhu*, Y.T. Zhao and P.Y. Zeng, The regulation of magnetic and dielectric behaviors in lead-free (1-x)(0.75Bi4Ti3O12- 0.25Bi0.5Na0.5TiO3)-xMgFe2O4 composites, J. Solid State Chem. 300 (2021) 122243.
30. C.M. Zhu*, G.B. Yu, L.G. Wang, M.W. Yao, F.C. Liu and W.J. Kong, Dielectric relaxation and magnetodielectric effect in the spinel NiCr2O4, J. Magn. Magn. Mater. 506 (2020) 166803.
31. L.G. Wang, X.X. Wang, C.M. Zhu*, G.B. Yu, Y.T. Zhao, Z.H. Huang, W.J. Kong, F.C. Liu and F.Z. Lv, Influences of annealing temperature in dielectric, magnetic and magnetoelectric coupling properties of 0.7Bi0.5Na0.5TiO3-0.3NiFe2O4 ceramics, J. Magn. Magn. Mater. 494 (2020) 165773.
32. L.G. Wang, G.B. Yu, C.M. Zhu*, M.W. Yao, F.C. Liu and W.J. Kong, Synthesis and room- temperature multiferroic properties of lead-free Bi4Ti3O12/NiFe2O4 nanocomposite films, Ceram. Int. 46 (2020) 16973-16978.
33. C.M. Zhu*, L.G. Wang, F.C. Liu and W.J. Kong, Exchange bias behavior up to room temperature in NiCo2O4/NiO nanoparticle system, Ceram. Int. 45 (2019) 9878-9883.
34. Y.Y. Liang, J.X. Lei, X.X. Wang, L.G. Wang and C.M. Zhu*, Structure, magnetic and electrical properties of Ba-modified Bi2Fe4O9, J. Mater. Sci.: Mater. Electron. 30 (2019) 1691-1698.
35. L.G. Wang, G.B.Yu, C.M. Zhu*, F.Z. Lv, F.C. Liu and W.J. Kong, Preparation and investigation of structure, magnetic, and dielectric properties of (1-x)Bi2Fe4O9-xMgFe2O4 bicomponent ceramics, J. Mater. Sci.: Mater. Electron. 30 (2019) 20556-20565.
36. C.M. Zhu, L.G. Wang, L. Chen, D. Bao, M.C. Wang and S.L. Yuan*, Structural and magnetic properties of NiCr1.9Mn0.1O4, J. Mater. Sci. 51 (2016) 9415-9423.
37. C.M. Zhu, L.G. Wang, L. Chen, C.L. Li, Z.M. Tian and S.L. Yuan*, Negative magnetization behavior in Co1-xCuxCr2O4 ceramics, Mater. Lett. 182 (2016) 155-158.
38. C.M. Zhu, L.G. Wang, K. Wu, Z.M. Tian and S.L. Yuan*, Effect of annealing temperature on negative magnetization behavior in Co0.775Cu0.225Cr2O4 ceramics, J. Sol-Gel Sci. Techn. 80 (2016) 495-503.
39. C.M. Zhu, L.G. Wang, D. Bao, H. Luo, Z.M. Tian and S.L. Yuan*, Tunable magnetic properties in CuCr2-xFexO4 ceramics by doping Fe, J. Electron. Mater. 45 (2016) 4476-4483.
40. C.M. Zhu, L.G. Wang, Z.M. Tian, H. Luo, D. Bao, C.Y. Yin, S. Huang and S.L.Yuan*, Effect of annealing temperature on the multiferroic properties of 0.7BiFeO3- 0.3Bi0.5Na0.5TiO3 solid solution prepared by sol-gel method, Ceram. Int. 42 (2016) 3930-3937.
41. C.M. Zhu, Z.M. Tian, L.G. Wang and S.L. Yuan*, Exchange bias effect in spin glass CoCr2O4 nanoparticles, J. Magn. Magn. Mater. 393 (2015) 116-120.
42. C.M. Zhu, L.G. Wang, S.L. Yuan* and Z.M. Tian, Room-temperature multiferroic properties of 0.6BiFeO3-0.4(Bi0.5Na0.5)(1-x)BaxTiO3 solid-solution ceramics, J. Sol-Gel Sci. Techn. 76 (2015) 289-297.
广西师范大学第二届“学生最喜爱的教师”,2019年,广西师范大学
本科课堂教学优秀教师,2019-2020年,广西师范大学
本科课堂教学优秀教师,2020-2021年,广西师范大学
本科课堂教学优秀教师,2021-2022年,广西师范大学
校级优秀班主任,2022年,广西师范大学
全国高等学校物理基础课程青年教师讲课比赛广西赛区二等奖,2022年,广西物理学会
广西师范大学第七届“学生最喜爱的教师”,2024年,广西师范大学
团队部分研究生毕业去向:
王 冉 2022级 北京科技大学 推免读博
崔 涵 2022级 北京邮电大学世纪学院 任教
曾品一 2021级 华中科技大学 推免读博
黄小夏 2020级 南宁学院 任教
余贵波 2018级 广西师范大学 任教
团队部分本科生毕业去向:
石胜桦 2022级 保研至深圳大学
袁桂宁 2022级 保研至广西师范大学
官政华 2021级 保研至中科院固体所
张 琦 2021级 保研至南方科技大学
王一双 2020级 保研至南方科技大学
蒋长好 2020级 保研至华南师范大学
黄日涛 2019级 保研至华中科技大学
柯冰倩 2019级 保研至华中师范大学
郭远清 2019级 保研至华南理工大学
曾品一 2017级 保研至广西师范大学
梁又元 2016级 保研至华中科技大学
王鑫鑫 2016级 保研至山东大学
雷静娴 2016级 保研至广西师范大学
主讲课程:《电介质物理学》《大学物理实验A》、《大学物理实验B1》、《大学物理实验B2》
主编教材:《大学物理实验(专业类)》
电子邮箱:zhuchangming@gxnu.edu.cn
办公地址:广西师范大学育才校区第二物理实验楼(原数学楼)405