Fingertip-inspired electronic skin based on triboelectric sliding sensing and porous piezoresistive pressure detection
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Yu Song | Liming Miao | Mengdi Han | Dongmin Chen | Xiaoliang Cheng | Zongming Su | Haotian Chen | Xuexian Chen | Mengdi Han | Haixia Zhang | Xiaoliang Cheng | Xuexian Chen | Haotian Chen | Zong-Ming Su | Yu Song | Li-Ming Miao | Dongmin Chen | Haixia Zhang | Liming Miao
[1] C. Keplinger,et al. 25th Anniversary Article: A Soft Future: From Robots and Sensor Skin to Energy Harvesters , 2013, Advanced materials.
[2] J. Randall Flanagan,et al. Coding and use of tactile signals from the fingertips in object manipulation tasks , 2009, Nature Reviews Neuroscience.
[3] Sihong Wang,et al. Freestanding Triboelectric‐Layer‐Based Nanogenerators for Harvesting Energy from a Moving Object or Human Motion in Contact and Non‐contact Modes , 2014, Advanced materials.
[4] Jie Xiong,et al. Polymer‐Embedded Carbon Nanotube Ribbons for Stretchable Conductors , 2010, Advanced materials.
[5] Zhong‐Lin Wang,et al. Progress in Piezotronics and Piezo‐Phototronics , 2012, Advanced materials.
[6] S. Redner,et al. Introduction To Percolation Theory , 2018 .
[7] Zhong Lin Wang,et al. Triboelectric nanogenerators as self-powered active sensors , 2015 .
[8] K. Hata,et al. A stretchable carbon nanotube strain sensor for human-motion detection. , 2011, Nature nanotechnology.
[9] Jie Chen,et al. A Triboelectric Generator Based on Checker‐Like Interdigital Electrodes with a Sandwiched PET Thin Film for Harvesting Sliding Energy in All Directions , 2015 .
[10] Zhong Lin Wang,et al. Piezotronics and piezo-phototronics for adaptive electronics and optoelectronics , 2016 .
[11] R. Johansson,et al. Properties of cutaneous mechanoreceptors in the human hand related to touch sensation. , 1984, Human neurobiology.
[12] Jonathan A. Fan,et al. Materials and Designs for Wireless Epidermal Sensors of Hydration and Strain , 2014 .
[13] 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.
[14] L. Rocha,et al. Full elastic constitutive relation of non-isotropic aligned-CNT/PDMS flexible nanocomposites. , 2013, Nanoscale.
[15] D. Ginty,et al. The Sensory Neurons of Touch , 2013, Neuron.
[16] Jonghwa Park,et al. Fingertip skin–inspired microstructured ferroelectric skins discriminate static/dynamic pressure and temperature stimuli , 2015, Science Advances.
[17] Gordon Cheng,et al. Directions Toward Effective Utilization of Tactile Skin: A Review , 2013, IEEE Sensors Journal.
[18] Jin-Woo Han,et al. Flexible, compressible, hydrophobic, floatable, and conductive carbon nanotube-polymer sponge , 2013 .
[19] A. Craig. How do you feel? Interoception: the sense of the physiological condition of the body , 2002, Nature Reviews Neuroscience.
[20] F. Fan,et al. Flexible Nanogenerators for Energy Harvesting and Self‐Powered Electronics , 2016, Advanced materials.
[21] Jonghwa Park,et al. Bioinspired Interlocked and Hierarchical Design of ZnO Nanowire Arrays for Static and Dynamic Pressure‐Sensitive Electronic Skins , 2015 .
[22] Zhong Lin Wang,et al. Segmentally structured disk triboelectric nanogenerator for harvesting rotational mechanical energy. , 2013, Nano letters.
[23] Long Lin,et al. Quantitative measurements of vibration amplitude using a contact-mode freestanding triboelectric nanogenerator. , 2014, ACS nano.
[24] Zhong Lin Wang. Triboelectric nanogenerators as new energy technology for self-powered systems and as active mechanical and chemical sensors. , 2013, ACS nano.
[25] Benjamin C. K. Tee,et al. Skin-like pressure and strain sensors based on transparent elastic films of carbon nanotubes. , 2011, Nature nanotechnology.
[26] Sung Youb Kim,et al. Giant tunneling piezoresistance of composite elastomers with interlocked microdome arrays for ultrasensitive and multimodal electronic skins. , 2014, ACS nano.
[27] Wen Liu,et al. A transparent single-friction-surface triboelectric generator and self-powered touch sensor , 2013 .
[28] Benjamin C. K. Tee,et al. Highly sensitive flexible pressure sensors with microstructured rubber dielectric layers. , 2010, Nature materials.
[29] Allister F. McGuire,et al. A skin-inspired organic digital mechanoreceptor , 2015, Science.
[30] Haofei Shi,et al. Enhancing Performance of Triboelectric Nanogenerator by Filling High Dielectric Nanoparticles into Sponge PDMS Film. , 2016, ACS applied materials & interfaces.
[31] M. Ashby,et al. Cellular solids: Structure & properties , 1988 .
[32] E D Adrian,et al. The impulse discharge from the pacinian corpuscle , 1929, The Journal of physiology.
[33] Dimitris A. Saravanos,et al. Numerical investigation of mechanisms affecting the piezoresistive properties of CNT-doped polymers using multi-scale models , 2010 .
[34] Yu Song,et al. Omnidirectional Bending and Pressure Sensor Based on Stretchable CNT‐PU Sponge , 2017 .
[35] X Zhang,et al. Continuous carbon nanotube reinforced composites. , 2008, Nano letters.
[36] Chanseok Lee,et al. Ultrasensitive mechanical crack-based sensor inspired by the spider sensory system , 2014, Nature.