Frequency-independent self-powered sensing based on capacitive impedance matching effect of triboelectric nanogenerator
暂无分享,去创建一个
Xuhui Sun | Xinkai Xie | Zhen Wen | Yi Zhang | Chen Chen | Xiaoping Chen | Ting Yao | Mingfa Peng | Xinjian Chen | Baoqing Nie | Xuhui Sun
[1] J. N. Birch,et al. Conductivity, Dielectric Relaxation, and Viscosity of NaCl–Glycerol Solutions , 1968 .
[2] A. Nych,et al. Crystal structure in nematic emulsion. , 2001, Physical review letters.
[3] B.C. Paul,et al. Modeling and optimization of fringe capacitance of nanoscale DGMOS devices , 2005, IEEE Transactions on Electron Devices.
[4] Renata Costa,et al. Differential capacity of a deep eutectic solvent based on choline chloride and glycerol on solid electrodes , 2009 .
[5] Antonio Iera,et al. The Internet of Things: A survey , 2010, Comput. Networks.
[6] Nei Kato,et al. Toward intelligent machine-to-machine communications in smart grid , 2011, IEEE Communications Magazine.
[7] Zhong Lin Wang,et al. Flexible triboelectric generator , 2012 .
[8] Zhong Lin Wang. Triboelectric nanogenerators as new energy technology for self-powered systems and as active mechanical and chemical sensors. , 2013, ACS nano.
[9] Zhong Lin Wang,et al. Theoretical study of contact-mode triboelectric nanogenerators as an effective power source , 2013 .
[10] Won Jun Choi,et al. Self‐Powered, Room‐Temperature Electronic Nose Based on Triboelectrification and Heterogeneous Catalytic Reaction , 2015 .
[11] Simiao Niu,et al. Theoretical systems of triboelectric nanogenerators , 2015 .
[12] Ying Liu,et al. Optimization of Triboelectric Nanogenerator Charging Systems for Efficient Energy Harvesting and Storage , 2015, IEEE Transactions on Electron Devices.
[13] Hengyu Guo,et al. Blow-driven triboelectric nanogenerator as an active alcohol breath analyzer , 2015 .
[14] O. Shpenik,et al. Ionization of glycerin molecule by electron impact , 2015 .
[15] Zhong Lin Wang,et al. β-cyclodextrin enhanced triboelectrification for self-powered phenol detection and electrochemical degradation , 2015 .
[16] Zhong Lin Wang,et al. Progress in triboelectric nanogenerators as a new energy technology and self-powered sensors , 2015 .
[17] Long Lin,et al. Rolling Friction Enhanced Free‐Standing Triboelectric Nanogenerators and their Applications in Self‐Powered Electrochemical Recovery Systems , 2016 .
[18] Sam Emaminejad,et al. Fully integrated wearable sensor arrays for multiplexed in situ perspiration analysis , 2016, Nature.
[19] Yury Gogotsi,et al. Nano Day: Celebrating the Next Decade of Nanoscience and Nanotechnology. , 2016, ACS nano.
[20] Qingqing Shen,et al. Nanogenerators for Self-Powered Gas Sensing , 2017, Nano-Micro Letters.
[21] Zhong Lin Wang. On Maxwell's displacement current for energy and sensors: the origin of nanogenerators , 2017 .
[22] Hengyu Guo,et al. Triboelectric Nanogenerator: A Foundation of the Energy for the New Era , 2018, Advanced Energy Materials.
[23] Yubo Fan,et al. Implantable Energy‐Harvesting Devices , 2018, Advanced materials.
[24] Yuyan Zhu,et al. Toward self-powered photodetection enabled by triboelectric nanogenerators , 2018 .
[25] Xuhui Sun,et al. Triboelectric–Electromagnetic Hybrid Generator for Harvesting Blue Energy , 2018, Nano-Micro Letters.
[26] Xuhui Sun,et al. Impedance Matching Effect between a Triboelectric Nanogenerator and a Piezoresistive Pressure Sensor Induced Self‐Powered Weighing , 2018 .
[27] Xuhui Sun,et al. Integrating a Silicon Solar Cell with a Triboelectric Nanogenerator via a Mutual Electrode for Harvesting Energy from Sunlight and Raindrops. , 2018, ACS nano.
[28] Xuhui Sun,et al. Liquid-Metal-Based Super-Stretchable and Structure-Designable Triboelectric Nanogenerator for Wearable Electronics. , 2018, ACS nano.
[29] Qingqing Shen,et al. Self‐Powered Vehicle Emission Testing System Based on Coupling of Triboelectric and Chemoresistive Effects , 2018 .
[30] Zhen Wen,et al. 3D Printing of Ultralight Biomimetic Hierarchical Graphene Materials with Exceptional Stiffness and Resilience , 2019, Advanced materials.
[31] Xuhui Sun,et al. Self-driven photodetection based on impedance matching effect between a triboelectric nanogenerator and a MoS2 nanosheets photodetector , 2019, Nano Energy.
[32] Lingjie Xie,et al. A liquid PEDOT:PSS electrode-based stretchable triboelectric nanogenerator for a portable self-charging power source. , 2019, Nanoscale.
[33] John T.W. Yeow,et al. Self-powered on-line ion concentration monitor in water transportation driven by triboelectric nanogenerator , 2019, Nano Energy.
[34] Tie Li,et al. Materials, Structures, and Functions for Flexible and Stretchable Biomimetic Sensors. , 2019, Accounts of chemical research.