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Zewei Ren

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       任泽伟,博士生导师,省级人才,小米青年学者获批并入选陕西省三秦英才计划、陕西省秦创原高层次创新创业人才计划、西安电子科技大学华山学者计划、西安电子科技大学青年科技人才跃升专项等。2021年于中国科学院大学获得理学博士学位,博士导师为王中林院士。

       目前主要从事摩擦电、微纳半导体、人工智能等领域的材料与器件交叉科学研究。发表学术论文40余篇,以第一/通讯作者在Advanced Materials(顶级TOP期刊,IF=29.1)、Advanced Energy Materials(顶级TOP期刊,IF=25.5)、Advanced Functional Materials(顶级TOP期刊,IF=19.9)、Small(TOP期刊,IF=11.8)等国际SCI期刊发表论文20余篇(全部为JCR一区,平均影响因子15.0)。ESI高被引论文4篇,单篇论文引用大于100次9篇,文章总被引3200余次,Google学术H指数26研究成果被同行在Nature MaterialsScience Robotics、Nature Communications、Science Advances、Advanced Materials等顶尖期刊正面评论或引用。

        Google学术个人主页:https://scholar.google.com/citations?hl=zhCN&user=gwPJHv8AAAAJ

       作为项目负责人已主持国家级、省部级等纵向基金课题10余项,参与国家级重大项目1项。授权/受理国家发明专利10余项,合著书籍专著1章。多次担任国内外知名学术会议分会主持并做邀请报告,担任Energy Materials 、MedMat、DeCarbon、SmartSys 等多个期刊青年编委等学术兼职。

    研究方向:

    (1)柔性触觉传感器;

    (2)基于深度学习融合的智能感知与交互系统;

    (3)新型微纳半导体器件;

    部分发表论文:

(1)Jie An*, Yang Jiang, Tao Jiang, Fangming Li, Xiaojian Xiang, Kai Wang, Zipei Tan, Jinhui Nie*, Zewei Ren*. Achieving Zero Leakage, Ultralong Lifespan, and Intrinsic Opening Sensing in Microvalves Through Structural Superlubrication and Triboelectric Nanogenerator Technologies. Advanced Materials, 2025, 2416132. (共同通讯作者)

(2)Weiqiang Zhang, Mingxin Liu, Xiaozhou Lü*, Linfeng Deng, Xue Fan, Guanggui Cheng, Zhe Chen, Long Gu, Weimin Bao, Zewei Ren*. Triboelectric sensor-empowered intelligent mouse combined with machine learning technology strides toward a computer security system. Nano Energy, 2024, 126, 109666.(共同通讯作者)

(3)Xue Jiang, Jinming Liang, Yongmei Wang, Jun Cao, Zewei Ren*. Metal-Organic Framework Based Dielectric Layer Toward Highly Improving Triboelectric Charge Generation Properties. Small, 2025, 21, 2500357.(通讯作者)

(4)Zewei Ren, Yang Yu, Kangqi Fan*, Ruimin Jia, Liting Wu, Yina Liu, Jie An*, Zhen Wen*. Directly Preparable Self-Attached Triboelectric Nanogenerator on Living Plant Leaf. Nano Energy, 2025, 136, 110761.(第一作者)

(5)Jie An, Han Chen, Ruyi Chen, Tao Jiang, Jinhui Nie*, Zewei Ren*, Siyuan Liu*. Structural Superlubricity and Triboelectric Nanogenerators in MEMS: Opportunities, Challenges, and Future Directions. Small, 2026, e08510.(共同通讯作者)

(6)Jiuling Zhu, Kangqi Fan*, Weidong Wang, Kangjia Zhai, Li Zhang, Junxiang Zhou, Cheng Li, Yuanbo Li, Jinjian Li, Yan Liu, Zewei Ren*, Peihong Wang*. A robust hybrid nanogenerator strategy achieved by regenerative motion transmission toward wind energy harvesting and self-powered sensing. Nano Energy, 2025, 135, 110679.(共同通讯作者)

 (7) Zewei Ren, Xi Liang, Di Liu, Xunjia Li, Jianfeng Ping, Ziming Wang, Zhong Lin Wang*. Water-wave driven route avoidance warning system for wireless ocean navigation. Advanced Energy Materials, 2021, 11, 2101116.(第一作者)

(8) Zewei Ren, Ziming Wang, Zhirong Liu, Longfei Wang, Hengyu Guo, Linlin Li, Site Li, Xiangyu Chen*, Wei Tang*, Zhong Lin Wang*. Energy Harvesting from Breeze Wind (0.7-6 m/s) Using Ultra-Stretchable Triboelectric Nanogenerator. Advanced Energy Materials, 2020, 10, 2001770.(第一作者)

 (9) Zewei Ren, Jinhui Nie, Jiajia Shao, Qingsong Lai, Longfei Wang, Jian Chen, Xiangyu Chen*, Zhong Lin Wang*. Fully elastic and metal-free tactile sensors for detecting both normal and tangential forces based on triboelectric nanogenerators. Advanced Functional Materials, 2018, 28, 1802989.(第一作者)

(10) Zewei Ren, Jinhui Nie, Liang Xu, Tao Jiang, Baodong Chen, Xiangyu Chen*, Zhong Lin Wang*. Directly visualizing tactile perception and ultrasensitive tactile sensors by utilizing bodyenhanced induction of ambient electromagnetic waves. Advanced Functional Materials, 2018, 28, 1805277.(第一作者)


       课题组研究方向属于交叉学科研究范畴,涉及材料、物理、人工智能、能源、机械、化学等专业。欢迎感兴趣的同学报考研究生!


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