Piezoresistive strain sensor array using polydimethylsiloxane-based conducting nanocomposites for electronic skin application
暂无分享,去创建一个
Pei Ling Leow | Yung Sin Chong | Keat Hoe Yeoh | Pei Song Chee | P. Chee | K. H. Yeoh | P. Leow | Y. Chong
[1] Amir Firouzeh,et al. Soft piezoresistive sensor model and characterization with varying design parameters , 2015 .
[2] Sung-hoon Ahn,et al. A flexible and highly sensitive strain-gauge sensor using reversible interlocking of nanofibres. , 2012, Nature materials.
[3] Benjamin C. K. Tee,et al. 25th Anniversary Article: The Evolution of Electronic Skin (E‐Skin): A Brief History, Design Considerations, and Recent Progress , 2013, Advanced materials.
[4] John A Rogers,et al. Conformal piezoelectric energy harvesting and storage from motions of the heart, lung, and diaphragm , 2014, Proceedings of the National Academy of Sciences.
[5] Caixia Liu,et al. Capacitive wearable tactile sensor based on smart textile substrate with carbon black /silicone rubber composite dielectric , 2016 .
[6] Kunmo Chu,et al. Electrical and Thermal Properties of Carbon-Nanotube Composite for Flexible Electric Heating-Unit Applications , 2013, IEEE Electron Device Letters.
[7] Chwee Teck Lim,et al. Emergence of microfluidic wearable technologies. , 2016, Lab on a chip.
[8] Ryosuke Matsuzaki,et al. Highly Stretchable, Global, and Distributed Local Strain Sensing Line Using GaInSn Electrodes for Wearable Electronics , 2015 .
[9] Chwee Teck Lim,et al. Triple-State Liquid-Based Microfluidic Tactile Sensor with High Flexibility, Durability, and Sensitivity , 2016 .
[10] Sung Youb Kim,et al. Giant tunneling piezoresistance of composite elastomers with interlocked microdome arrays for ultrasensitive and multimodal electronic skins. , 2014, ACS nano.
[11] Chanseok Lee,et al. Ultrasensitive mechanical crack-based sensor inspired by the spider sensory system , 2014, Nature.
[12] Jin-Woo Choi,et al. Analyzing resistance response of embedded PDMS and carbon nanotubes composite under tensile strain , 2014 .
[13] Sung Youb Kim,et al. Tactile-direction-sensitive and stretchable electronic skins based on human-skin-inspired interlocked microstructures. , 2014, ACS nano.
[14] Jung Woo Lee,et al. Epidermal electronics with advanced capabilities in near-field communication. , 2015, Small.
[15] Minjeong Ha,et al. Micro/nanostructured surfaces for self-powered and multifunctional electronic skins. , 2016, Journal of materials chemistry. B.
[16] Ruzairi Abdul Rahim,et al. Bidirectional flow micropump based on dynamic rectification , 2013 .
[17] I. Park,et al. Ultra-stretchable and skin-mountable strain sensors using carbon nanotubes–Ecoflex nanocomposites , 2015, Nanotechnology.
[18] Muhammad Imran Shahzad,et al. Study of carbon nanotubes based Polydimethylsiloxane composite films , 2013 .
[19] Youngoh Lee,et al. Ultrasensitive Piezoresistive Pressure Sensors Based on Interlocked Micropillar Arrays , 2014 .
[20] Ning Hu,et al. Piezoresistive Strain Sensors Made from Carbon Nanotubes Based Polymer Nanocomposites , 2011, Sensors.
[21] O. Kanoun,et al. Piezoresistive characterization of multi-walled carbon nanotube-epoxy based flexible strain sensitive films by impedance spectroscopy , 2016 .
[22] K. Karimov,et al. Temperature sensor based on composite film of vanadium complex (VO2(3-fl)) and CNT , 2015 .
[23] Khasan S. Karimov,et al. Carbon nanotubes film based temperature sensors , 2011 .
[24] T. Trung,et al. Flexible and Stretchable Physical Sensor Integrated Platforms for Wearable Human‐Activity Monitoringand Personal Healthcare , 2016, Advanced materials.
[25] Mehmet Turan,et al. Parallel Microcracks-based Ultrasensitive and Highly Stretchable Strain Sensors. , 2016, ACS applied materials & interfaces.
[26] Satish Nagarajaiah,et al. Flexural strain sensing using carbon nanotube film , 2004 .
[27] Zhong Lin Wang,et al. Recent Progress in Electronic Skin , 2015, Advanced science.
[28] Youngdo Jung,et al. A Sensitivity Enhanced MWCNT/PDMS Tactile Sensor Using Micropillars and Low Energy Ar+ Ion Beam Treatment , 2016, Sensors.
[29] Robert Bogue,et al. Graphene sensors: a review of recent developments , 2014 .
[30] Joong Tark Han,et al. Stretchable and Multimodal All Graphene Electronic Skin , 2016, Advanced materials.
[31] J. E. Mark. Polymer Data Handbook , 2009 .
[32] Jonghwa Park,et al. Fingertip skin–inspired microstructured ferroelectric skins discriminate static/dynamic pressure and temperature stimuli , 2015, Science Advances.
[33] John A. Rogers,et al. Soft Core/Shell Packages for Stretchable Electronics , 2015 .
[34] Sanat S Bhole,et al. Soft Microfluidic Assemblies of Sensors, Circuits, and Radios for the Skin , 2014, Science.
[35] Yonggang Huang,et al. Stretchable and Foldable Silicon Integrated Circuits , 2008, Science.
[36] Nam-Su Jang,et al. Piezoresistive Polymer Diaphragm Sensor Array Using Conductive Elastomeric Nanocomposite Films for Skin-Mountable Keypad Applications , 2015, Journal of Microelectromechanical Systems.