张增星助理教授

邮 箱zhangzengxing@xmu.edu.cn

地 址

个人简介:

张增星,1988年生,厦门大学航空航天学院助理教授,博士毕业于挪威东南大学微纳应用系统专业,获得国家优秀自费留学生奖学金。长期从事海洋传感器、应用微纳系统与水下无人系统技术研究,发表SCI论文26篇,第一作者总影响因子70.8,获得专利授权12项。曾受聘于挪威国家Norfab微纳制造中心全职研究员。主持了国家自然科学基金青年/省青年基金/挪威地区基金项目等,作为技术负责人和主要完成人参与/完成奥斯陆地区、欧盟地平线、装备发展部快速扶持、基金委重大仪器专项、国家重点研发计划、装备发展部预研、国防创新特区、自然科学基金面上等项目。作为一名青年科研人员,我专注于突破“卡脖子”传感器技术研发,并以工程化实际应用为目标,致力于国外相关型号的国产化替代工作。


研究成果:

1. Zhang, Z.; Martinsen, T.; Liu, G.; Tayyib, M.; Cui, D.; de Boer, M. J.; Karlsen, F.; Jakobsen, H.; Xue, C.; Wang, K. Ultralow Broadband Reflectivity in Black Silicon via Synergy between Hierarchical Texture and Specific-Size Au Nanoparticles. Adv. Opt. Mater. 2020, 8 (19). (IF=9.9,一区,Top期刊)

2. Zhang, Z.; Du, K.; Chen, X.; Xue, C.; Wang, K. An Air-Cushion Triboelectric Nanogenerator Integrated with Stretchable Electrode for Human-Motion Energy Harvesting and Monitoring. Nano Energy 2018, 53, 108–115. (IF=17.9,一区,Top期刊)

3. Zhang, Z.; Wang, Y.; Anders, P.; Hansen, S.; Du, K.; Robert, K.; Liu, G.; Karlsen, F.; Nilsen, O.; Xue, C.; et al. Black Silicon with Order-Disordered Structures for Enhanced Light Trapping and Photothermic Conversion. Nano Energy 2019, 65, 103992. (IF=17.9,一区,Top期刊)

4. Zhang, Z.; He, J.; Wen, T.; Zhai, C.; Han, J.; Mu, J.; Jia, W. Magnetically Levitated-Triboelectric Nanogenerator as a Self-Powered Vibration Monitoring Sensor. Nano Energy 2017, 33, 88–97. (IF=17.9,一区,Top期刊)

5. Zengxing, Z.; Jian, H. E.; Jianqiang, H. A. N.; Hongyan, X. U.; Jiliang, M. U.; Tao, W. E. N.; Dawei, W.; Zhumei, T.; Zetian, C.; Chenyang, X. U. E. Magnetically Levitated / Piezoelectric / Triboelectric Hybrid Generator as a Power Supply for the Temperature Sensor. Sci. China Technol. Sci 2017, 60, 1068–1074. (IF=3.6,二区)

6. Zhang, Z.; Liu, G.; Wang, K. Fabrication of Needle-like Silicon Nanowires by Using a Nanoparticles-Assisted Bosch Process for Both High Hydrophobicity and Anti-Reflection. Micromachines 2021, 12 (9). (IF=3.6,三区)

7. Zhang, W.; Hao, C.; Zhang, Z.; Yang, S.; Peng, J.; Wu, B.; Xue, X.; Zang, J.; Chen, X.; Yang, H.; Song, D.; Xue, C.; Zhang, Z.; Wang, R. Vector High-Resolution Marine Turbulence Sensor Based on a MEMS Bionic Cilium-Shaped Structure. IEEE Sens. J. 2021, 21 (7), 8741–8750. (IF=3.3,二区)

8. Zhou, C.; Zang, J.; Xue, C.; Ma, Y.; Hua, X.; Gao, R.; Zhang, Z.; Li, B.; Zhang, Z. Design of a Novel Medical Acoustic Sensor Based on MEMS Bionic Fish Ear Structure. Micromachines 2022, 13 (2). (IF=3.6,三区)

9. Wang, Q.; Zhao, L.; Yang, T.; Liao, Z.; Xue, X.; Wu, B.; Zhang, W.; Zang, J.; Cui, D.; Zhang, Z.; Xue, C. A Mathematical Model of a Piezoelectric Micro- Machined Hydrophone with Simulation and Experimental Validation. IEEE Sens. J. 2021, 21 (12), 13364–13372. (IF=3.3,二区)

10. Fan, Z.; Cui, D.; Zhang, Z.; Zhao, Z.; Chen, H.; Fan, Y.; Li, P.; Zhang, Z.; Xue, C.; Yan, S. Recent Progress of Black Silicon: From Fabrications to Applications. Nanomaterials 2021, 11 (1), 1–26. (IF=5.0,二区)

11. Li, Y.; Zhang, Z.; Chen, Y.; Chen, H.; Fan, Y.; Li, Y. Facile Synthesis of a Ni-Based NiCo2O4-PANI Composite for Ultrahigh Specific Capacitance. Appl. Surf. Sci 2019, 144646. (IF=6.7,一区,Top期刊)

12. Li, Y.; Hou, X.; Zhang, Z.; Hai, Z.; Xu, H.; Cui, D.; Zhuiykov, S.; Xue, C. NiCo2O4 Particles with Diamond-Shaped Hexahedron Structure for High-Performance Supercapacitors. Appl. Surf. Sci 2018, 436, 242–251. (IF=6.7,一区,Top期刊)

13. Bin, W.; Zengxing, Z.; Xiaobin, X.; Congcong, H.; Ruiyu, B.; Qiang, W.; Chenyang, X. A stretchable triboelectric generator with coplanar integration design of energy harvesting and strain sensing. Sci. China Technol. Sci 2022, 65, 221–230. (IF=3.6,二区)

14. Xiaobin, X.; Zengxing, Z.; Bin, W.; Shanshan, H.; Qiang, W.; Wenjun, Z.; Ruiyu, B.; Juan, C.; Yongqiu, Z.; Chenyang, X. Coil-levitated hybrid generator for mechanical energy harvesting and wireless temperature and vibration monitoring. Sci. China Technol. Sci 2021, 64, 1325–1334. (IF=3.6,二区)

15. Yang, T.; Wang, Q.; Zhang, Z.; Liao, Z.; Zhao, Y.; Li, Y.; Zang, J.; Gao, R.; Cui, D.; Xue, C. Design and Implementation of 6 × 6 Array Piezoelectric AlN Hydrophone with High Sensitivity. IEEE Sens. J. 2021, 21 (23), 26615–26623. (IF=3.3,二区)

16. Hao, C.; He, J.; Zhang, Z.; Yuan, Y.; Chou, X.; Xue, C. A Pendulum Hybrid Generator for Water Wave Energy Harvesting and Hydrophone-Based Wireless Sensing. AIP Adv. 2020, 10. (IF=1.5,三区)

17. He S.; Zhang Z.; Zhai C.; Xue X.; Yang Z.; Zheng Y.; Cui D.; Xue C. Triboelectric Harvesting by a Dual-Tip Peak Power Multiplier under Airtight Condition. Energy Technol 2020. (IF=3.6,三区)

18. Wang, Y.; Xue, C.; Zhang, Z.; Zheng, H.; Zhang, W.; Yan, S. Tunable Optical Analog to Electromagnetically Induced Transparency in Graphene-Ring Resonators System. Sci. Rep 2016, 1–7. (IF=4.37,三区)

19. Tian, Z.; He, J.; Chen, X.; Zhang, Z.; Wen, T.; Zhai, C.; Han, J. Performance-Boosted Triboelectric Textile for Harvesting Human Motion Energy. Nano Energy 2017, 39, 562–570. (IF=17.9,一区,Top期刊)

20. He, J.; Wen, T.; Qian, S.; Zhang, Z.; Tian, Z.; Zhu, J.; Mu, J. Triboelectric-Piezoelectric-Electromagnetic Hybrid Nanogenerator for High-efficient Vibration Energy Harvesting and Self-Powered Wireless Monitoring System. Nano Energy 2018, 43, 326–339. (IF=17.9,一区,Top期刊)

21. Zhai, C.; Chou, X.; He, J.; Song, L.; Zhang, Z.; Wen, T.; Tian, Z. An Electrostatic Discharge Based Needle-to-Needle Booster for Dramatic Performance Enhancement of Triboelectric Nanogenerators. Appl. Energy 2018, 0–1. (IF=9.7,一区,Top期刊)

22. Hai, Z.; Gao, L.; Zhang, Q.; Xu, H.; Cui, D.; Zhang, Z.; Tsoukalas, D.; Tang, J.; Yan, S.; Xue, C. Facile Synthesis of Core – Shell Structured PANI-Co3O4 Nanocomposites with Superior Electrochemical Performance in Supercapacitors. Appl. Surf. Sci 2016, 361, 57–62. (IF=6.7,一区,Top期刊)

23. Li, Y.; Hai, Z.; Hou, X.; Xu, H.; Zhang, Z.; Cui, D.; Xue, C.; Zhang, B. Self-Assembly of 3D Fennel-Like Co3O4 with Thirty-Six Surfaces for High Performance Supercapacitor. J. Nanomater 2017. (IF=1.57,三区)

24. Tian, Z.; He, J.; Chen, X.; Wen, T.; Zhai, C.; Zhang, Z.; Cho, J.; Chou, X.; Xue, C. Core–shell coaxially structured triboelectric nanogenerator for energy harvesting and motion sensing. RSC Adv 2018, 8, 2950–2957. (IF=3.16,三区)

25. Chen, X.; He, J.; Song, L.; Zhang, Z.; Tian, Z.; Wen, T.; Zhai, C.; Chen, Y.; Cho, J.; Chen, X.; et al. Flexible One-Structure Arched Triboelectric Nanogenerator Based on Common Electrode for High Efficiency Energy Harvesting and Self-Powered Motion Sensing. AIP Adv 2018, 045022. (IF=1.5,三区)

26. Wen T.; He J.; Zhang Z.; Tian Z.; Mu J.; Han J.; Chou X.; Xue C. Electromagnetic-triboeletric hybridized generator based on magnetic levitation for scavenging biomechanical energy. Acta Physica Sinica 2017, 66, 228401. (IF=0.77,三区)


承担项目:

1. 国家自然科学基金青年基金,纵向项目,主持

2. 山西省自然科学基金,纵向项目,主持

3. 海南省重点研发计划子课题,深海探测用 MEMS 二维湍流传感器及系统研究,纵向项目,主持

4. 厦门市科技局海洋科技成果转化与产业化示范项目子课题,基于海洋空间信息与水文数据的海洋数字经济产业化研究与应用,纵向项目,主持

5. 嘉庚创新实验室“卡脖子”关键核心技术项目,面向万米深海应用的高精度温盐深传感仪器,纵向项目,骨干


学术奖励:

2020年度国家优秀自费留学生奖学金

发布时间:2023年02月20日 15:28  浏览次数:打印此页】【关闭


上一篇:张陈涛 下一篇:陈云

Copyright © 大网投平台信誉排行榜