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个人简介

林鹏,1982年生,福建人,农工党党员,博士,副教授,硕士生导师。2004年本科毕业于西安交通大学电子科学与技术系;2007年于西安交通大学获微电子学与固体电子学硕士学位;2012年获香港理工大学应用物理学博士学位;2012-2013年在香港大学电机电子工程系从事博士后研究。

研究领域

1.生物化学传感器(光电化学、电化学、晶体管) 2.有机薄膜晶体管、石墨烯晶体管(应用于生物传感器、光电探测器) 3.有机太阳能电池 4.功能薄膜、纳米材料与器件(二维材料、铁电压电材料)

近期论文

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[1] Peng Lin, Weiwei Wei, Wenyan Tao, Shanming Ke, Feng Yan, ‘Conductive organic materials for DNA biosensors’ in Eduardo Garcia-Breijo, Berta Gómez-Lor Pérez, Piero Cosseddu (Eds), ‘Organic sensors: materials and applications’, The Institution of Engineering and Technology, London, United Kingdom, Chapter 3, pp107-147, 13,000 words, 2016. 论文: [2] Weiwei Wei, Kang Xiao, Ming Tao, Lifu Nie, Dan Liu, Shanming Ke, Xierong Zeng, Zhangli Hu, Peng Lin*, Yu Zhang*, A Novel Organic Electrochemical Transistor-Based Platform for Monitoring the Senescent Green Vegetative Phase of Haematococcus pluvialis Cells, Sensors, 17, 1997 (2017). [3] Wenyan Tao, Peng Lin*, Sili Liu, Qingji Xie, Shanming Ke, Xierong Zeng*, 1-Butyl-3-Methylimidazolium Tetrafluoroborate Film as a Highly Selective Sensing Material for Non-Invasive Detection of Acetone Using a Quartz Crystal Microbalance, Sensors, 17, 194 (2017). [4] Weiwei Wei, Peng Lin*, Shanming Ke, Xierong Zeng*, Realizing 60 GHz narrow-linewidth photonic microwaves with very low RF driving power, Laser Physics Letters, 13, 126202 (2016). [5] Wenyan Tao, Peng Lin*, Yanqing Ai, Hairui Wang, Shanming Ke, Xierong Zeng*, Multichannel quartz crystal microbalance array: Fabrication, evaluation, application in biomarker detection, Analytical Biochemistry, 494, 85-92 (2016). [6] Wenyan Tao, Qingji Xie, Hairui Wang, Shanming Ke, Peng Lin*, Xierong Zeng*, Integration of a Miniature Quartz Crystal Microbalance with a Microfluidic Chip for Amyloid Beta-Aβ42 Quantitation, Sensors, 15, 25746-25760 (2015). [7] Hairui Wang, Fu Liu, Xinbo Xiong, Shanming Ke, Xierong Zeng*, Peng Lin*, Structure, corrosion resistance and in vitro bioactivity of Ca and P containing TiO2 coating fabricated on NiTi alloy by plasma electrolytic oxidation, Applied Surface Science, 356, 1234–1243 (2015). [8] Peng Lin, Simin Cui, Xierong Zeng, Haitao Huang*, Shanming Ke*, Giant dielectric response and enhanced thermal stability of multiferroic BiFeO3, Journal of Alloys and Compounds, 600, 118-124 (2014). [9] Peng Lin, Wallace C. H. Choy, Di Zhang, Fengxian Xie, Jianzhuo Xin, C. W. Leung, Semitransparent organic solar cells with hybrid monolayer graphene/metal grid as top electrodes, Applied Physics Letters, 102, 113303, 2013. [10] Peng Lin, Feng Yan, Organic thin-film transistors for chemical and biological sensing, Advanced Materials, 24, 34-51, 2012. (被引440多次) [11] Peng Lin, Xiaoteng Luo, I-Ming Hsing, Feng Yan, Organic electrochemical transistors integrated in flexible microfluidic systems and used for label-free DNA sensing, Advanced Materials, 23, 4035-4040, 2011. (被引110多次) [12] Peng Lin, Feng Yan, Jinjiang Yu, Helen L. W. Chan, Mo Yang, The application of organic electrochemical transistors in cell-based biosensors, Advanced Materials, 22, 3655-3660, 2010. (被引100多次) [13] Rong Xiang He, Peng Lin, Zhi Ke Liu, Hong Wei Zhu, Xing Zhong Zhao, Helen L. W. Chan, Feng Yan, Solution-gated graphene field effect transistors integrated in microfluidic systems and used for flow velocity detection, Nano Letters, 12, 1404-1409, 2012. [14] Di Zhang, Fengxian Xie, Peng Lin, Wallace C. H. Choy, Al-TiO2 composite-modified single-layer graphene as an efficient transparent cathode for organic solar cells, ACS Nano, 7(2), 1740-1747, 2013. [15] Chunlei Yao, Changyan Xie, Peng Lin, Feng Yan, Pingbo Huang, I-Ming Hsing, Organic electrochemical transistor array for recording transepithelial ion transport of human airway epithelial cells, Advanced Materials, 25, 6575-6580, 2013. [16] Hao Tang, Feng Yan, Peng Lin, Jianbin Xu, Helen L.W. Chan, Highly sensitive glucose biosensors based on organic electrochemical transistors using platinum gate electrodes modified with enzyme and nanomaterials, Advanced Functional Materials, 21, 2264-2272, 2011. [17] Peng Lin, Feng Yan, Helen L. W. Chan, Ion-sensitive properties of organic electrochemical transistors, ACS Applied Materials & Interfaces, 2(6), 1637-1641, 2010. [18] Peng Lin, Feng Yan, Helen L. W. Chan, Improvement of the tunable wettability property of poly(3-alkylthiophene) films, Langmuir, 25(13), 7465–7470, 2009. [19] Peng Lin, Wei Ren, Xiaoqing Wu, Peng Shi, Xiaofeng Chen, Xi Yao, Thickness effects on structures and electrical properties of lead zirconate titanate thick films, Ceramics International, 34, 991-995, 2008. [20] Peng Lin, Wei Ren, Xiaoqing Wu, Peng Shi, Xin Yan, Xi Yao, Effect of poly(vinyl acetate) on structures and properties of PbZr0.52Ti0.48O3 thick films, Journal of Applied Physics, 102, 084109, 2007. [21] Peng Lin, Wei Ren, Xiaoqing Wu, Peng Shi, Xi Yao, Polymer-assisted MOD preparation of PbZr0.52Ti0.48O3 thick films for MEMS applications, Integrated Ferroelectrics, 84, 75-82, 2006.

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