謝燕楠,男,博士,漢族,福建安溪人,南京郵電大學材料科學與工程學院 教授。
基本介紹
- 中文名:謝燕楠
- 學位/學歷:博士
- 職業:教師
- 專業方向:納米發電機與微納能源
- 任職院校:南京郵電大學
個人經歷,研究方向,學術成果,榮譽獎項,
個人經歷
2018.09-至今,南京郵電大學材料科學與工程學院,教授;
2015.08-2018.08,廈門大學能源學院,能效工程研究所副所長、助理教授、碩士生導師;
2012.08-2014.10,美國喬治亞理工學院材料科學與工程系,聯合培養博士研究生
2012.02-2012.06,美國德拉瓦大學物理系,訪問博士
2007.09-2014.12,廈門大學物理系,微電子學與固體電子學,工學博士;
研究方向
(1)納米發電機與微納能源
(2)柔性電子與感測
(3)自驅動能源系統
(4)納米功能材料與套用
(5)半導體光電器件
學術成果
主要研究項目:
(1) 國家自然科學基金面上項目,柔性摩擦電子學光熱電器件研究,2020.01-2023.12,主持
(2) 國家自然科學基金青年基金項目,基於摩擦納米發電機的柔性可穿戴自驅動紫外光電探測系統及其相關機理研究,2017.01-2019.12,主持
(3) 南京郵電大學引進人才科研啟動基金,新型納米發電機研製及其套用,2018.08-2021.07,主持
(4) 福建省自然科學基金面上項目,基於摩擦納米發電機的柔性發電薄膜的研製及其在可穿戴器件中的套用研究,2016.04-2019.04,主持,已結題
(5) 福建省教育廳科技項目,表面功能化處理對摩擦納米發電機電學性能的影響。2016.06-2018.05,主持,已結題
主要學術成績:
在摩擦納米發電機的基本工作原理和實際套用、自驅動力學感測系統、高性能紫外光電探測器方面取得多項重要研究成果,被Reuters、CCTV、Chemical & Engineering News、Advances in Engineering等多家國內外媒體報導。在國際知名學術刊物Advanced Materials、ACS Nano、Nano Energy、Nature Communications、Nano Letters等上發表學術論文30 多篇,4篇入選ESI高被引論文,被引用3111次,H因子為23。申請13項中國專利、1項美國專利,已授權8項。擔任Advanced Functional Materials (IF: 15.621)、Nano Energy (IF: 15.548)、ACS Nano(IF: 13.903)、Nano-Micro Letters(IF: 9.043)、Applied Energy(IF: 8.426)、Chemical Engineering Journal(8.355)、Science Bulletin(IF: 6.277)、IEEE Transactions on Biomedical Engineering(IF: 4.491)、Extreme Mechanics Letters (IF: 4.075)、Nanoscale Research Letters(IF: 3.159)、Materials Letters(IF: 3.019)、Superlattices and Microstructures(IF: 2.385)、Sensors and Materials(IF: 0.468)等國際期刊審稿人。
代表性著作:
科研論文代表作:
(1) H. B. Lin, Y. Liu, S. L. Chen, Q. H. Xu, S. T. Wang, T. Hu, P. F. Pan, Y. Z. Wang, Y. L. Zhang, N. Li, Y. Li, Y. W. Ma, Yannan Xie*(通訊作者),and L. H. Wang*, “Seesaw structured triboelectric nanogenerator with enhanced output performance and its applications in self-powered motion sensing”, Nano Energy, 65, 103944, (2019). (IF: 15.548)
(2) H. B. Lin, M. H. He, Q. S. Jing, W. F. Yang, S. T. Wang, Y. Liu, Y. L. Zhang, J. Li, N. Li, Y. W. Ma, L. H. Wang*, and Yannan Xie*(通訊作者), “Angle-Shaped Triboelectric Nanogenerator for Harvesting Environmental Wind Energy”, Nano Energy, 56, 269-276, (2019). (IF: 15.548)
(3) Y. J. Yu, Y. C. Wang, S. Zhang, P. Y. Zhang, S. Xue, Yannan Xie*(通訊作者), Z. Y. Zhou*, J. Li*, and J. Y. Kang, “The construction of integrated Si-based micro proton exchange membrane fuel cells with improved performances”, Nano Energy, 61, 604-610, (2019). (IF: 15.548)
(4) M. H. He, Y. J. Lin, C. M. Chiu, W. F. Yang, B. B. Zhang, D. Q. Yun,Yannan Xie*(通訊作者), and Z. H. Lin*, “A Flexible Photo-Thermoelectric Nanogenerator Based on MoS 2/PU Photothermal Layer for Infrared Light Harvesting”, Nano Energy, 49, 588-595, (2018). (IF: 15.548)
(5) S. T. Wang, M. H. He, B. J. Weng, L. H. Gan, Y. R. Zhao, N. Li,Yannan Xie*(通訊作者), “Stretchable and Wearable Triboelectric Nanogenerator Based on Kinesio Tape for Self-Powered Human Motion Sensing”, Nanomaterials, 8, 657, (2018). (IF: 4.034)
(6) Yannan Xie, T. M. Chou, W. F. Yang, M.H. He, Y. R. Zhao, N. Li, and Z. H. Lin*, “Flexible thermoelectric nanogenerator based on the MoS2/graphene nanocomposite and its application for a self-powered temperature sensor”, Semiconductor Science and Technology, 32, 044003, (2017). (IF: 2.654)
(7) L. Lin+, Yannan Xie+(共同第一作者), S. M. Niu, S. H. Wang, P. K. Yang, and Z. L. Wang*, “Robust triboelectric nanogenerator based on rolling electrification and electrostatic induction at an instantaneous energy conversion efficiency of ~55%”, ACS Nano, 9, 922-930, (2015). (IF: 13.903)(ESI高被引論文)
(8) Yannan Xie+, S. H. Wang+, S. M. Niu+, L. Lin, Q. S. Jing, J. Yang, Z. Y. Wu, and Z. L. Wang*, “Grating-structured freestanding triboelectric-layer nanogenerator for harvesting mechanical energy at 85% total conversion efficiency”, Advanced Materials, 26, 6599-6607, (2014). (IF: 25.809)
(9) Yannan Xie+, S. H. Wang+, S. M. Niu, L. Lin, Q. S. Jing, Y. J. Su, Z. Y. Wu, and Z. L. Wang*, “Multi-layered disk triboelectric nanogenerator for harvesting hydropower”, Nano Energy,6, 129-136, (2014). (IF: 15.548)
(10)S. H. Wang+, Yannan Xie+(共同第一作者), S. M. Niu+, L. Lin, and Z. L. Wang*, “Freestanding triboelectric-layer-based nanogenerators for harvesting energy from a moving object or human motion in contact and non-contact modes”, Advanced Materials, 26, 2818-2824, (2014). (IF: 25.809)(ESI高被引論文)
(11)Yannan Xie+, S. H. Wang+, L. Lin, Q. S. Jing, Z. H. Lin, S. M. Niu, Z. Y. Wu, and Z. L. Wang*, “Rotary triboelectric nanogenerator based on a hybridized mechanism for harvesting wind energy”, ACS Nano, 7, 7119-7125, (2013). (IF: 13.903)
(12)L. Lin+, Yannan Xie+(+共同第一作者), S. H. Wang+, W. Z. Wu, S. M. Niu, X. N. Wen, and Z. L. Wang*, “Triboelectric active sensor array for self-powered static and dynamic pressure detection and tactile imaging”, ACS Nano, 7, 8266-8274, (2013). (IF: 13.903)
(13)Yannan Xie, H. L. Huang, W. F. Yang, and Z. Y. Wu*, “Low dark current metal-semiconductor-metal ultraviolet photodetectors based on sol-gel-derived TiO2 films”, Journal of Applied Physics, 109, 023114, (2011). (IF: 2.328)
(14)Q. S. Jing, Yannan Xie, G. Zhu, R. P. S. Han, and Z. L. Wang*, “Self-powered thin-film motion vector sensor”, Nature Communications, 6, 8031, (2015). (IF: 11.878)
(15)S. H. Wang, Yannan Xie, S. M. Niu, L. Lin, C. Liu, Y. S. Zhou, and Z. L. Wang*, “Maximum surface charge density for triboelectric nanogenerators achieved by ionized-air injection: methodology and theoretical understanding”, Advanced Materials, 26, 6720-6728, (2014). (IF: 25.809)
(16)Z. H. Lin, Yannan Xie, Y. Yang, S. H. Wang, G. Zhu, and Z. L. Wang*, “Enhanced triboelectric nanogenerators and triboelectric nanosensor using chemically modified TiO2 nanomaterials”, ACS Nano, 7, 4554–4560, (2013). (IF: 13.903)
(17)S. H. Wang, L. Lin, Yannan Xie, Q. S. Jing, S. M. Niu, and Z. L. Wang*, “Sliding-triboelectric nanogenerators based on in-plane charge-separation mechanism”, Nano Letters, 13, 2226-2233, (2013). (IF: 12.279)(ESI高被引論文)
(18)L. Lin, S. H. Wang, Yannan Xie, Q. S. Jing, S. M. Niu, Y. F. Hu, and Z. L. Wang*, “Segmentally structured disk triboelectric nanogenerator for harvesting rotational mechanical energy”, Nano Letters, 13, 2916-2923, (2013). (IF: 12.279)(ESI高被引論文)
榮譽獎項
(1) 廈門市“雙百計畫”海外高層次人才、領軍型人才(2015)
(2) 福建省優秀博士學位論文(2015)