
2008年7月,中国科学技术大学取得学士学位
2011年7月,中国科学院光电技术研究所获得硕士学位
2016年12月,美国亚利桑那州立大学电子工程系取得电子工程专业博士学位
2017年1月-2018年8月,美国亚利桑那州立大学电子工程系开展博士后研究工作
2018年9月,加入上海科技大学信息科学与技术学院,任助理教授、研究员
任豪博士围绕基于微机电系统的微型微生物燃料电池、超级电容器、无线传感、穿戴式哮喘传感器、压电血液粘度传感器、MEMS微镜、氧化物电子器件展开系统研究,取得了一系列研究成果, 发表期刊论文30余篇, 其中以第一作者或通讯作者论文16篇,发表于Nano Energy, Biosensors and Bioelectronics, Journal of Power Sources, Nanoscale, IEEE Transactions on Electron Devices, Applied Physics Letters, International Journal of Hydrogen Energy, Microfluidics and Nanofluidics, Journal of Micromechanics and Microengineering, IEEE Transactions on Power Electronics等期刊 (影响因子大于17的第一作者论文1篇,影响因子大于7.7的第一作者文章4篇)。在国际最顶级的微机电系统会议上以第一作者发表文章6篇(包括4篇IEEE MEMS年会,2篇IEEE Solid-State Sensors, Actuators and Microsystems Workshop会议)。任豪博士获得IEEE MEMS 2013的Best Poster Award Finalist奖。任豪博士应Wiley-VCH, Elsevier, CRC Press, Springer等出版商邀请,以第一作者发表著作章节5篇;应Advanced Energy Materials, Biosensors Bioelectronics, Small, Nanoscale, IEEE Journal of Emerging and Selected Topics on Power Electronics, ACS Applied Materials and Interfaces, Sensors and Actuators, ChemSusChem等杂志的邀请审稿超过60余次。
任豪博士提出的微型微生物燃料电池在2014年创造了微生物燃料电池领域电流与功率密度的世界纪录(2014年至今微生物燃料电池领域发表SCI文章超过3000篇),并于2016年成功将此纪录提高了超过3倍(目前此记录仍然保持)。同时,任豪博士在世界上首次提出了基于仿生控制微生物呼吸的微生物超级电容器,将微生物电化学技术的电流与功率密度提高一个数量级。
任豪博士围绕基于微机电系统的微型微生物燃料电池、超级电容器、无线传感、穿戴式哮喘传感器、MEMS微镜、氧化物电子器件展开系统研究,取得了一系列研究成果, 发表期刊论文30余篇, 其中以第一作者或通讯作者论文16篇,发表于Nano Energy, Biosensors and Bioelectronics, Journal of Power Sources, Nanoscale, IEEE Transactions on Electron Devices, Applied Physics Letters, International Journal of Hydrogen Energy, Microfluidics and Nanofluidics, Journal of Micromechanics and Microengineering, IEEE Transactions on Power Electronics等期刊 (影响因子大于17的第一作者论文1篇,影响因子大于7.7的第一作者文章4篇)。在国际最顶级的微机电系统会议上以第一作者发表文章6篇(包括4篇IEEE MEMS年会,2篇IEEE Solid-State Sensors, Actuators and Microsystems Workshop会议)。任豪博士获得IEEE MEMS 2013的Best Poster Award Finalist奖。任豪博士应Wiley-VCH, Elsevier, CRC Press, Springer等出版商邀请,以第一作者发表著作章节5篇;应Advanced Energy Materials, Biosensors Bioelectronics, Small, Nanoscale, IEEE Journal of Emerging and Selected Topics on Power Electronics, ACS Applied Materials and Interfaces, Sensors and Actuators, ChemSusChem等杂志的邀请审稿超过60余次。
任豪博士提出的微型微生物燃料电池在2014年创造了微生物燃料电池领域电流与功率密度的世界纪录(2014年至今微生物燃料电池领域发表SCI文章超过3000篇),并于2016年成功将此纪录提高了超过3倍(目前此记录仍然保持)。同时,任豪博士在世界上首次提出了基于仿生控制微生物呼吸的微生物超级电容器,将微生物电化学技术的电流与功率密度提高一个数量级。
Note: * denotes co-first author and # denotes corresponding author.
1.
1.Yining Wang, Fengxiang Tang, Boya Liu, Yifan Wu, Ruohan Zhang, and Hao Ren#, “A bioinspired microbial taste chip with artificial intelligence-enabled high selectivity and ultra-short response time”, Biosensors and Bioelectronics, vol. 277, p. 117264 2025 https://doi.org/10.1016/j.bios.2025.117264. Impact Factor: 10.7; JCR Quartile: Q1; CAS Quartile: Q1
2.Xianzheng Lu, Liang Lou# and Hao Ren#, “A piezoelectric circular crested lamb wave disk resonator with spurious mode suppression and quality factor enhancement”, Journal of Applied Physics, vol. 138, p. 034506 2025, Impact Factor: 2.4; JCR Quartile: Q2
3.Fengxiang Tang and Hao Ren#, “The Biological Memory Effect in Microbial Fuel Cell Biosensors after Repeated Exposure to Tetracycline”, 已接收, 2025, Impact Factor: 3.4; JCR Quartile: Q2
4.Yuxin Wang, Jin Zhang, Hao Ren# and Liang Lou#, “A Wireless and Passive Temperature Sensor with High Linearity Using ScAlN Based Surface Acoustic Wave Resonator”, Sensors and Actuators A: Physical; vol. 392, p. 116698 2025 Impact factor 4.1 JCR Quartile: Q1; CAS Quartile: Q2
5.Yue Hu, Yuxin Wang, Chuanxu Li, Hao Ren# and Liang Lou#, SAW Temperature and Humidity Assembled Sensor Based on AlScN Piezoelectric Thin Film, in IEEE Transactions on Electron Devices, vol. 72, pp. 1115-1122, doi: 10.1109/TED.2024.3520544. Impact Factor: 2.9; JCR Quartile: Q2
6.Lei Yang, Jin Zhang, Long Zhang, Jianwei Zong, Hao Ren# and Liang Lou#, “Novel application of ScAlN PMUT for intravenous infusion drip monitoring”, Sensors and Actuators A: Physical, vol. 386, p. 116325; Impact factor 4.1 JCR Quartile: Q1; CAS Quartile: Q2
7.Hao Ren#, “Miniaturized mechanical antennas: a review”, Advanced Physics Research, 4, 2400074; Invited Paper
8.Xianzheng Lu and Hao Ren#, “Micromachined piezoelectric Lamb wave resonators: a review,” Journal of Micromechanics and Microengineering, vol. 33, pp. 113001(33 pages), 2023, Impact Factor: 2.4; JCR Quartile: Q2
9.Zhihao Li, Yunfei Gao, Minkan Chen, Liang Lou# and Hao Ren#, “An AlN Piezoelectric Micromachined Ultrasonic Transducer-Based Liquid Density Sensor,” IEEE Transactions on Electron Devices, vol. 70, pp. 261-268, 2023, Impact Factor: 2.9; JCR Quartile: Q2
10.Yidan Pang, Yiyang Ma, Kaiwen Zheng, Siyuan Zhu, Hongyu Sui, Hao Ren, Kang Liu, Wei Li, Yigang Huang, Dajiang Du, Junjie Gao and Changqing Zhang, “Costal Cartilage Graft Repair Osteochondral Defect in a Mouse Model,” CARTILAGE, 2023, Impact Factor: 2.7; https://doi.org/10.1177/19476035231209404 JCR Quartile: Q1
11.J. Zhang*#, H. Ren*#, S. Jayasuriya, X. Tian and J. Chae, “The Biological Memory Effect on Microbial Fuel Cell Biosensor”; IEEE Sensors Journal, vol. 22, pp. 17698-17705, 2022, Impact Factor: 4.325; JCR Quartile: Q1
12.Sitao Fei and Hao Ren#, Determining the Dose-Response Curve of Exoelectrogens: A Microscale
Microbial Fuel Cell Biosensor for Water Toxicity Monitoring. Micromachines, vol. 13, pp. 1560 (13 pages) 2022, Impact Factor:3.0; JCR Quartile: Q2
13.Haichao Cao, Xianzheng Lu and Hao Ren#, “An A0 Mode Lamb-Wave AlN Resonator on SOI Substrate with Vertically Arranged Double-Electrodes,” Journal of Micromechanics and Microengineering, vol. 32, pp. 095004(8 pages), 2022, Impact Factor: 2.4; JCR Quartile: Q2
14.Hao Ren# and Yunping Niu, “A miniaturized low frequency direct-current magnetic-bias-integrated magnetoelectric wireless power transfer system with enhanced energy conversion efficiency,” AIP Advances, vol. 12, pp. 075012(8 pages), 2022, Impact Factor: 1.4; JCR Quartile: Q4
15.Haichao Cao and Hao Ren#, “A 10-nm-thick silicon oxide based high switching speed conductive bridging random access memory with ultra-low operation voltage and ultra-low LRS resistance,” Applied Physics Letters, vol. 120, pp.133502(7 pages), 2022, Impact Factor:3.5; JCR Quartile: Q2
16.Yunping Niu and Hao Ren#, “Transceiving signals by mechanical resonance: A miniaturized standalone magnetoelectric mechanical antenna pair with integrated DC magnetic bias,” IEEE Sensors Journal, vol. 22, pp. 14008–14017, 2022, Impact Factor: 4.3; JCR Quartile: Q1
17.Yunping Niu and Hao Ren#, “A miniaturized low frequency (LF) magnetoelectric receiving antenna with an integrated DC magnetic bias,” Applied Physics Letters, vol. 118, pp. 264104 (7 pages), 2021, Impact Factor:3.5; JCR Quartile: Q2
18.Yunping Niu and Hao Ren#, “A high efficiency standalone magnetoelectric energy converter based on Terfenol-D and PZT laminate,” Applied Physics Letters vol. 118, pp.044101(6 pages) 2021, Impact Factor: 3.5; JCR Quartile: Q2 (Paper Selected as Editor’s Pick)
19.Sitao Fei and Hao Ren#. Temperature characteristics of a contour mode MEMS AlN piezoelectric ring resonator on SOI substrate. Micromachines vol. 12, pp.143(13 pages) 2021, Impact Factor:2.891;
20.Hao Ren#. Further improving the current and power density of miniaturized microbial fuel cells. Frontiers in Mechanical Engineering, vol.7, pp.616179., (invited paper) 2021, https://doi.org/10.3389/fmech.2021.616179 Impact Factor: 2.0; JCR Quartile: Q2
21.Hao Ren#, Junrui Liang#, Jicheng Feng# and Xiaosheng Zhang#. Editorial: Miniaturized bioenergy and energy harvesting systems. Frontiers in Mechanical Engineering, 7:741190. doi: 10.3389/fmech.2021.741190 Impact Factor: 2.0; JCR Quartile: Q2
22.H. Ren#, H.S. Lee, C.L. Gardner and J. Chae, “A quantitative extracellular electron transfer (EET) kinetics study of Geobacter sulfurreducens enriched microbial community reveals the transition of EET limiting step during biofilm growth,” International Journal of Hydrogen Energy vol. 46, no. 4, pp. 3124-3134, 2021, Impact Factor:8.1; JCR Quartile: Q1
23.A. Hussain, J. Lee, H. Ren, and H.S. Lee#. Spatial distribution of biofilm conductivity in a Geobacter enriched anodic biofilm. Chemical Engineering Journal (2021): 126544, Impact Factor:13.3; JCR Quartile: Q1


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