
性别:男
职称:副教授
博士生导师:是
硕士生导师:是
学历:博士研究生毕业
学位:博士
所在单位:电子科学与工程学院
电子邮箱:
毕业院校:北京大学
2021-10至今,西安交通大学,电信学部,副教授
2018-07至2021-10,西安交通大学,电信学部,讲师
2013-09至2018-06,北京大学,力学(先进材料与力学)专业,博士
2009-09至2013-06,中国地质大学(武汉),材料科学与工程专业,学士
吴金根,西安交通大学副教授,博士生导师,从事压电器件、磁电耦合器件的研究,包括:磁电传感器及能量收集器、小型化声波谐振磁电天线、电流传感器等,累计发表SCI/EI论文100余篇,第一作者/通讯作者SCI论文40余篇,申请/授权国家发明专利20余项,第一/通讯作者论文主要发表在Energy & Environmental Science、Advanced Functional Materials、Acta Materialia、Small、Mechanical Systems and Signal Processing、IEEE Transactions on Industrial Electronics、IEEE Transactions on Antennas and Propagation、IEEE Transactions on Instrumentation and Measurement等学术期刊上,获中国物理学会“2021年度最有影响论文”奖,中国硅酸盐学会微纳技术分会青年理事,《微机电系统(MEMS)技术MEMS磁传感器技术规范》国家标准委员会成员。
担任Advanced Materials、Small、IEEE Transactions on Antennas and Propagation、Journal of Alloys and Compounds、IEEE Sensors Journal、IEEE Transactions on Mechatronics、IEEE Transactions on Magnetics、Journal of Advanced Dielectrics、RSC Advances、Acta Mechanica Solida Sinica、《中国科学: 物理学 力学 天文学》等期刊审稿人。
所在团队:
刘明教授-智能磁电材料与器件创新团队
团队链接:http://gr.xjtu.edu.cn/web/mingliu/liu-s-group
招生链接:https://mp.weixin.qq.com/s/vbHrtS4mIMY8ZYI7nf7E9A
[1] Yongjun Du, Jingen Wu*, Zhaoqiang Chu, Jiacheng Qiao, Zhongqiang Hu*, Zinan Zhao*, Miaomiao Cheng, Ming Liu. A novel phenomenological model for duffing nonlinearity in magnetoelectric resonators. International Journal of Mechanical Sciences, 323 (2026) 111745, https://doi.org/10.1016/j.ijmecsci.2026.111745
[2] Jingen Wu, Sheng Zou, Bingfeng Ge, Jiacheng Qiao, Min Lu, Ming Zhang, Zhongqiang Hu, Ming Liu. Wide-Range and High-Precision Magnetoelectric Current Sensor for Power Frequency Current Detection, IEEE Sensors Journal, 26(15), 2026, pp. 22292-22301, https://doi.org/10.1109/JSEN.2026.3700811
[3] Yang Li, Jiacheng Qiao, Jingen Wu*, Xianfeng Liang, Yongjun Du, Xin He, Yiwei Xu, Yang Lu, Dengfeng Ju, Jinghong Guo, Zhongqiang Hu*, Ming Liu. Enhanced Performance in Low Frequency Bending Mode Magnetoelectric Resonator by Structural Design and Internal Series Connection. Chinese Physics B, 2026, https://doi.org/10.1088/1674-1056/ae71ac
[4] Yuhang Ma, Zhongyu Feng, Bing Tian, Jiguang Zhao, Jingen Wu*, Zhongqiang Hu, Zhiguang Wang*, Ming Liu. LC resonant giant magneto-impedance sensor with high SNR for weak magnetic field detection. Measurement, 262, 120105 2026, https://doi.org/10.1016/j.measurement.2025.120105
[5] Yiwei Xu, Xin He, Xianfeng Liang, Heng Huang, Jingen Wu*, Dengfeng Ju, Jinghong Guo, Shuxiang Dong, Zhongqiang Hu*, and Ming Liu*. Multiple-coupling optimization strategy for significantly enhancing the output power density of a compact magneto-mechano-electric energy harvester. Energy & Environmental Science, 18(17) 8339-9351 (2025), https://doi.org/10.1039/d5ee01346a
[6] Xin He, Yiwei Xu, Jingen Wu*, Xianfeng Liang,* Guanying Wang, Heng Huang,Xuan Sun, Yang Lu, Dengfeng Ju, Shuxiang Dong, Zhongqiang Hu,* and Ming Liu. Maximizing Power Density and Lifespan of Magneto-Mechano-Electric Generator via Optimizing the Selection of Piezoelectric Ceramic Plate. Small, e05332 (2025), https://doi.org/10.1002/smll.202505332
[7] Bingfeng Ge, Jingen Wu*, Xianfeng Liang, Jiacheng Qiao, Yongjun Du, Yiwei Xu, Xin He, Yanan Zhao, Zhiguang Wang, Jinghong Guo, Zhongqiang Hu*, Ming Liu.High Sensitivity and Ultra-Low Power Consumption in DC Magnetic Field Sensor Based on (1-1) Connective Magnetoelectric Composites. IEEE Transactions on Industrial Electronics, (2025), https://doi.org/10.1109/TIE.2025.3579054
[8] Jingen Wu, Jiacheng Qiao, Sheng Zou, Xianfeng Liang, Bingfeng Ge, Junhao Chen, Yongjun Du, Yiwei Xu, Zhiguang Wang, Jinghong Guo, Zhongqiang Hu*, and Ming Liu*. Magnetoelectric sensors with hollowed-out resonant structure fabricated by laser cutting, IEEE Sensors Journal, 25(14) (2025), https://doi.org/10.1109/JSEN.2025.3575602
[9] Dan Xian, Yanan Zhao, Yongjun Du, Yiwei Xu, Jiacheng Qiao, Jingen Wu*, Qijing Lin*, Ming Liu*, Zhuangde Jiang. Highly magneto-electric-mechanical coupling effect in self-biased magnetoelectric composite induced by laser thermal annealing. Microsystems & Nanoengineering (2025) 11:142, https://doi.org/10.1038/s41378-025-00875-w
[10] Jieqiang Gao, Jingen Wu*, Xuan Sun, Bomin Lin, Jintao Mo, Yiwei Xu, Xianfeng Liang, Mengmeng Guan, Fuchao Li, Hui Huang, Haifeng Gao,Jinghong Guo, Zhongqiang Hu*, Ming Liu. Magnetoelectric DC current sensor operating in d36 face-shear mode for smart grid application, Sensors and Actuators: A. Physical, 393 (2025), https://doi.org/10.1016/j.sna.2025.116777
[11] Yiwei Xu, Jingen Wu*, Xin He, Heng Huang, Yongjun Du, Zhongqiang Hu*, Ming Liu. Performance analysis of non-uniform magneto-mechano-electric energy harvesters via equivalent circuit method, Mechanical Systems and Signal Processing, 230 (2025), https://doi.org/10.1016/j.ymssp.2025.112642
[12] Xin He, Yiwei Xu, Jingen Wu*, Heng Huang, Xianfeng Liang, Yongjun Du, Jiacheng Qiao, Yang Li, Hui Huang, Dengfeng Ju, Zhongqiang Hu*, and Ming Liu*. Enhanced Power Density by Resonant Frequency Optimization in Magneto-Mechano-Electric Generator for Multifunctional Wireless Sensor System, Small, 21(20) (2025), https://doi.org/10.1002/smll.202412214
[13] Jiacheng Qiao, Jingen Wu*, Fuzhe Fan, Xianfeng Liang, Guanying Wang, Yongjun Du, Yiwei Xu, Ming Zhang, Zhongqiang Hu*, and Ming Liu*.Highly Sensitive Magnetoelectric Sensor for Characteristic Current Detection in Smart Grid,IEEE Transactions on Instrumentation and Measurement, 74 (2025), https://doi.org/10.1109/TIM.2025.3545839
[14] Jingen Wu, Jiacheng Qiao, Yongjun Du, Yiwei Xu, Xin He, Bingfeng Ge, Zhiguang Wang, Zhongqiang Hu*, Shuxiang Dong, and Ming Liu*. Ferroelectricity in tetragonal polycrystalline ceramics: matrix transformation of electric dipoles, Journal of Materials Chemistry C, 13 (2025), https://doi.org/10.1039/D5TC01347J
[15] Xuan Sun, Jingen Wu*, Xianfeng Liang, Yang Lu, Yiwei Xu, Liwen Liang, Sizhe Wang, Xin He, Xu Liu, Dengfeng Ju, Zhongqiang Hu*, and Ming Liu. Statistical Reliability Analysis and Lifetime Prediction for Magnetoelectric Sensors, IEEE Transactions on Instrumentation and Measurement, 74 (2025), https://doi.org/10.1109/TIM.2025.3581629
[16] Yang Li, Jingen Wu*, Yiwei Xu, Jiacheng Qiao, Yongjun Du, Heng Huang, Fuzhe Fan, Zhiguang Wang, Zhongqiang Hu*, Ming Liu. A Modified Ellipsoid Calibration Method for Three-Axis Magnetometer Based on Anisotropic Magnetoresistive Sensors. IEEE Transactions on Magnetics, 61(11), 2025, https://doi.org/10.1109/TMAG.2025.3610542
[17] Qiuyu Shao, Jingen Wu*, Jiacheng Qiao, Yongjun Du, Xiangbo Zhang, Yiwei Xu, Zhongqiang Hu, Ming Liu. Effect of DC curing magnetic field on the magnetoelectric performance of Metglas/PZT bilayer composites. Applied Physics Letters, 127, 182901 (2025), https://doi.org/10.1063/5.0288768
[18] Jiacheng Qiao, Jingen Wu*, Yongjun Du, Qiuyu Shao, Xianfeng Liang, Xin He, Yiwei Xu, Hui Huang, Dengfeng Ju, Jinghong Guo, Zhongqiang Hu*, Ming Liu. Performance Enhancement for Bending Mode Magnetoelectric Resonators with Variable Section via Equivalent Circuit Model. IEEE Sensors Journal, 25(23), pp. 42649-42658, 2025, https://doi.org/10.1109/JSEN.2025.3624747
[19] Jingen Wu*, Jiacheng Qiao, Xianfeng Liang, Yongjun Du, Jieqiang Gao, Yiwei Xu, Jinghong Guo, Min Lu, Ming Zhang, Zhongqiang Hu. A Portable Magnetoelectric Gaussmeter Based on Torque Effect. Sensors, 2025, 25(3), 855, https://doi.org/10.3390/s25030855
[20] Jiacheng Qiao, Jingen Wu*, Yongjun Du, Yiwei Xu, He Bai, Zhiguang Wang, Wanzhao Cui, Zhongqiang Hu, Ming Liu. Amplitude Modulation Scheme for Acoustically Actuated Magnetoelectric Antenna Using Field-dependent Magneto-mechanical Effect. IEEE Transactions on Antennas and Propagation, 72(9), pp. 6939-6949 (2024), https://doi.org/10.1109/TAP.2024.3434402
[21] Xuan Sun, Jingen Wu*, Yiwei Xu, Jieqiang Gao, Bomin Lin, Guannan Yang, Bingfeng Ge, Zhongqiang Hu*, Ming Liu*. Reducing equivalent magnetic noise by electrode design and magnetic annealing in Quartz/Metglas magnetoelectric sensors. Sensors and Actuators A: Physical, 379, 115903 (2024), https://doi.org/10.1016/j.sna.2024.115903
[22] Yongjun Du, Jiacheng Qiao, Jingen Wu*, Yiwei Xu, Tianxiang Nan, Shuxiang Dong, Zhongqiang Hu*, Ming Liu. Performance analysis of acoustically actuated magnetoelectric antennas via equivalent circuit method. Journal of Applied Physics, 135, 114101 (2024); https://doi.org/10.1063/5.0192222
[23] Yongjun Du, Jingen Wu*, Jiacheng Qiao, Yiwei Xu, Zhongqiang Hu*, Ming Liu. Research on Acoustically Actuated Magnetoelectric Transceivers via Equivalent Circuit Model with Electromagnetic Duality. 2024 IEEE 12th Asia-Pacific Conference on Antennas and Propagation (APCAP), Page 1-2, https://doi.org/10.1109/APCAP62011.2024.10881068(EI会议论文)
[24] Yiwei Xu, Yongjun Du, Jiacheng Qiao, Jingen Wu*, Zhongqiang Hu*, Ming Liu. A Portable VLF Communication System Based on Magnetoelectric Antennas. A Portable VLF Communication System Based on Magnetoelectric Antennas. 2024 IEEE 12th Asia-Pacific Conference on Antennas and Propagation (APCAP), pp.1-2, https://doi.org/10.1109/APCAP62011.2024.10880923(EI会议论文)
[25] Jingen Wu, Chaoyu Wu, Jiacheng Qiao, Yiwei Xu, Yongjun Du, Zhiguang Wang, He Bai, Wanzhao Cui, Zhongqiang Hu*, Ming Liu. Quantitative domain evaluation in rhombohedral BS-PT piezoelectric ceramics via diffraction-plane-transformation model. Applied Physics Letters, 123, 232902 (2023), https://doi.org/doi: 10.1063/5.0176684
[26] Yongjun Du#, Yiwei Xu#, Jingen Wu*, Jiacheng Qiao, Zhiguang Wang, Zhongqiang Hu*, Zhuangde Jiang, Ming Liu*. Very-Low-Frequency Magnetoelectric Antennas for Portable Underwater Communication: Theory and Experiment. IEEE Transactions on Antennas and Propagation, 71 (3), 2023, pp.2167-2181. https://doi.org/10.1109/TAP.2022.3233665
[27] Jingen Wu, Zhongqiang Hu*, Chaoyu Wu, Ming Ma, Xin He, Jiacheng Qiao, Zhiguang Wang, Shuxiang Dong, Ming Liu. In-situ measurement of thermal depolarization in tetragonal BS-PT piezoelectric ceramics. Journal of Alloys and Compounds, 967 (2023) 171641. https://doi.org/10.1016/j.jallcom.2023.171641
[28] Jingen Wu, Yongjun Du, Yiwei Xu, Jiacheng Qiao, Yuhan Qu, Zhiguang Wang, Shuxiang Dong, Zhongqiang Hu*, Ming Liu. Self-biased magnetoelectric sensor operating in d36 face-shear mode. IEEE Sensors Journal, 23(19), 2023, pp. 22366 - 22372. https://doi.org/10.1109/JSEN.2023.3306350
[29] Xuan Sun, Jingen Wu*, Xianfeng Liang, Yongjun Du, Yiwei Xu, Yuhan Qu, Mengmeng Guan, Hui Huang, Fuchao Li, Sujie Liu, Dengfeng Ju, Zhiguang Wang, Zhongqiang Hu*, Jinghong Guo, Ming Liu. Effects of Amplitude and Frequency of the Modulation Field on the Sensitivity for Low-Frequency Magnetic Field in Magnetoelectric Sensors. IEEE Sensors Journal, 23(12), 2023, pp.12695-12701. https://doi.org/10.1109/JSEN.2023.3268741
[30] Miaomiao Cheng, Jingen Wu*, Xianfeng Liang, Ruohao Mao, Hui Huang, Dengfeng Ju, Zhongqiang Hu*, Jinghong Guo, Ming Liu. Hybrid multi-mode magneto-mechano-electric generator with enhanced magnetic field energy harvesting performance. Sensors & Actuators: A. Physical 352 (2023) 114194. https://doi.org/10.1016/j.sna.2023.114194
[31] Jiacheng Qiao, Jingen Wu*, Yongjun Du, Yiwei Xu, Zhongqiang Hu*, Ming Liu. A Portable VLF Magnetoelectric Antenna with High Communication Rate Based on Direct Antenna Amplitude Modulation. 2022 IEEE MTT-S International Microwave Workshop Series on Advanced Materials and Processes for RF and THz Applications (IMWS-AMP), https://doi.org/10.1109/IMWS-AMP54652.2022.10106834(EI会议论文)
[32] Yiwei Xu#, Mengmeng Guan#, Jingen Wu*, Dan Xian, Yongjun Du, Xianfeng Liang, Zhiguang Wang, Hui Huang, Dengfeng Ju, Libo Zhao, Shuxiang Dong, Zhongqiang Hu*, Jinghong Guo, Zhuangde Jiang, Ming Liu. An AC magnetic compass based on magnetoelectric effect integrated with a calibration algorithm. Sensors & Actuators: A. Physical, 347, (2022) 113955. https://doi.org/10.1016/j.sna.2022.113955
[33] Miaomiao Cheng, Jingen Wu*, Mengmeng Guan, Qi Mao, Dan Xian, Zhongqiang Hu*, Chenying Wang, Zhiguang Wang, Ziyao Zhou, Libo Zhao, Zhuangde Jiang, Ming Liu. A high-resolution electric field sensor based on piezoelectric bimorph composite. Smart Materials and Structures, 2022, 31(2), 025008.https://doi.org/10.1088/1361-665X/ac3eee
[34] Liqian Wang, Jingen Wu*, Jiaming Liu, Ruohao Mao, Mengmeng Guan, Dan Xian, Qi Mao, Chenying Wang, Zhiguang Wang, Zhuangde Jiang, Zhongqiang Hu*, Ming Liu. A Magnetic Field Imaging System Based on TMR Sensors for Banknote Recognition. IEEE Transactions on Instrumentation and Measurement, 2022, 71, 9506809. https://doi.org/10.1109/TIM.2022.3170987
[35] Jingen Wu, Zhongqiang Hu*, Xiangyu Gao, Miaomiao Cheng, Xinger Zhao, Wei Su, Zhiguang Wang, Ziyao Zhou, Shuxiang Dong, and Ming Liu*. A Magnetoelectric Compass for In-Plane AC Magnetic Field Detection. IEEE Transactions on Industrial Electronics, 2021, 68(4), 3527-3536.https://doi.org/10.1109/TIE.2020.2978711
[36] Jingen Wu, Zhongqiang Hu*, Xiangyu Gao, Miaomiao Cheng, Xinger Zhao, Wei Su, Liqian Wang, Mengmeng Guan, Yongjun Du, Ruohao Mao, Zhiguang Wang, Ziyao Zhou, Shuxiang Dong, Ming Liu*. Unconventional piezoelectric coefficients in perovskite piezoelectric ceramics. Journal of Materiomics, 2021, 7(2), 254-263. https://doi.org/10.1016/j.jmat.2020.10.004
[37] Qi Mao#, Jingen Wu#, Zhongqiang Hu, Yiwei Xu, Yongjun Du, Yuanbo Hao, Mengmeng Guan, Chenying Wang, Zhiguang Wang, Ziyao Zhou, Shuxiang Dong, Wei Ren, Ming Liu*, Zhuangde Jiang*. Magnetoelectric devices based on magnetoelectric bulk composites. Journal of Materials Chemistry C, 2021, 9(17), 5594-5614.https://doi.org/10.1039/d1tc00419k
[38] Jingen Wu, Zhongqiang Hu*, Miaomiao Cheng, Xinger Zhao, Mengmeng Guan, Wei Su, Dan Xian, Chenying Wang, Zhiguang Wang, Bin Peng, Ren-Ci Peng, Ziyao Zhou, Shuxiang Dong, Zhuang-De Jiang, Ming Liu*. Highly Sensitive Magneto-Mechano-Electric Magnetic Field Sensor Based on Torque Effect. IEEE Sensors Journal, 2021, 21(2), 1409-1416. https://doi.org/10.1109/JSEN.2020.3016130
[39] Jingen Wu, Zhongqiang Hu*, Xiangyu Gao, Zhaoqiang Chu, Guohua Dong, Zhiguang Wang, Bin Peng, Ren-Ci Peng, Ziyao Zhou, Shuxiang Dong, Ming Liu*. Quantitative domain engineering for realizing d36 piezoelectric coefficient in tetragonal ceramics. Acta Materialia, 2020, 188, 416-423. https://doi.org/10.1016/j.actamat.2020.02.031
[40] Jingen Wu, Xiangyu Gao, Yang Yu, Jikun Yang, Zhaoqiang Chu, Alexei A. Bokov, Zuo-Guang Ye*, Shuxiang Dong*. Quantitative studies of domain evolution in tetragonal BS-PT ceramics in electric poling and thermal depoling processes. Journal of Materials Chemistry C, 2019, 7 (15), 4517-4526. https://doi.org/10.1039/c9tc00748b
[41] Jingen Wu, Zhongqiang Hu*, Xiangyu Gao, Miaomiao Cheng, Xinger Zhao, Wei Su, Xiaotian Li, Zhiguang Wang, Ziyao Zhou, Shuxiang Dong, Ming Liu*. Electrode shape dependence of the barbell-shaped magneto-mechano-electric energy harvester for low-frequency applications. Sensors and Actuators A-Physical, 2019, 297, 111535. https://doi.org/10.1016/j.sna.2019.111535
[42] 吴金根, 高翔宇, 陈建国*, 王春明*, 张树君*, 董蜀湘*, 高温压电材料、器件与应用(特邀综述),物理学报, 2018, 67(20), 207701.https://doi.org/10.7498/aps.67.20181091
[43] JingenWu, Xiangyu Gao, Yang Yu, Jikun Yang, Shuxiang Dong*. A diffraction-plane-transformation model for quantitatively evaluating 90° domain evolution in tetragonal BS-PT piezoelectric ceramic. Journal of Alloys and Compounds, 2018,745:669-676. https://doi.org/10.1016/j.jallcom.2018.02.182
[44] Jingen Wu, Huaduo Shi, Tian-long Zhao, Yang Yu, Shuxiang Dong*. High-Temperature BiScO3-PbTiO3 Piezoelectric Vibration Energy Harvester. Advanced Functional Materials, 2016, 26(39): 7186-7194. https://doi.org/10.1002/adfm.201602645
[45] Jingen Wu, Xi Chen, Zhaoqiang Chu, Weiliang Shi, Yang Yu, Shuxiang Dong*. A barbell-shaped high-temperature piezoelectric vibration energy harvester based on BiScO3-PbTiO3 ceramic. Applied Physics Letters, 2016, 109(17): 173901. https://doi.org/10.1063/1.4966125
[46] JingenWu, Yang Yu, Xiaotian Li, Xiangyu Gao, Shuxiang Dong*. Investigation on Resonant Vibration Performances of Fe-Doped BiScO3-PbTiO3 Ceramics in High-Temperature Environment. Journal of the American Ceramic Society, 2015, 98(10): 3145-3152. https://doi.org/10.1111/jace.13707
主持项目:
1、国家自然科学基金委员会,面上项目,62571416,2026-01至2029-12,在研,主持。
2、国家自然科学基金委员会,青年项目C类,62101424,2022-01至2024-12,已结题,主持。
3、陕西省科学技术厅,一般项目(青年项目C类),2021JQ-51,2021-01至2022-12,已结题,主持。
4、中国博士后科学基金会,面上资助二等资助,2019M653605,2019-05至2022-06,已结题,主持。
5、中央高校基本科研业务费,自由探索与创新项目(教师类),xzy012019049,2019-01至2021-12,已结题,主持。