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Gradient Architecture-Enabled Capacitive Tactile Sensor with High Sensitivity and Ultrabroad Linearity Range Journal article
Ji, Bing, Zhou, Qian, Lei, Ming, Ding, Sen, Song, Qi, Gao, Yibo, Li, Shunbo, Xu, Yi, Zhou, Yinning, Zhou, Bingpu. Gradient Architecture-Enabled Capacitive Tactile Sensor with High Sensitivity and Ultrabroad Linearity Range[J]. Small, 2021, 17(43).
Authors:  Ji, Bing;  Zhou, Qian;  Lei, Ming;  Ding, Sen;  Song, Qi; et al.
Favorite | TC[WOS]:111 TC[Scopus]:106  IF:13.0/13.5 | Submit date:2021/10/28
Capacitive Tactile Sensors  Gradient Micro-dome Architecture  Linear Dielectric Behavior  Ultrabroad Linear Sensing  
Gradient Architecture-Enabled Capacitive Tactile Sensor with High Sensitivity and Ultrabroad Linearity Range Journal article
Ji, Bing, Zhou, Qian, Lei, Ming, Ding, Sen, Song, Qi, Gao, Yibo, Li, Shunbo, Xu, Yi, Zhou, Yinning, Zhou, Bingpu. Gradient Architecture-Enabled Capacitive Tactile Sensor with High Sensitivity and Ultrabroad Linearity Range[J]. Small, 2021, 17(43).
Authors:  Ji, Bing;  Zhou, Qian;  Lei, Ming;  Ding, Sen;  Song, Qi; et al.
Favorite | TC[WOS]:111 TC[Scopus]:106  IF:13.0/13.5 | Submit date:2022/08/01
Capacitive Tactile Sensors  Gradient Micro-dome Architecture  Linear Dielectric Behavior  Ultrabroad Linear Sensing  
A superhydrophobic and anti-corrosion strain sensor for robust underwater applications Journal article
Dai, Ziyi, Ding, Sen, Lei, Ming, Li, Shunbo, Xu, Yi, Zhou, Yinning, Zhou, Bingpu. A superhydrophobic and anti-corrosion strain sensor for robust underwater applications[J]. Journal of Materials Chemistry A, 2021, 9(27), 15282-15293.
Authors:  Dai, Ziyi;  Ding, Sen;  Lei, Ming;  Li, Shunbo;  Xu, Yi; et al.
Favorite | TC[WOS]:77 TC[Scopus]:79  IF:10.7/10.8 | Submit date:2021/09/17
Facile Formation of Hierarchical Textures for Flexible, Translucent, and Durable Superhydrophobic Film Journal article
Dai, Ziyi, Chen, Ge, Ding, Sen, Lin, Jing, Li, Shunbo, Xu, Yi, Zhou, Bingpu. Facile Formation of Hierarchical Textures for Flexible, Translucent, and Durable Superhydrophobic Film[J]. ADVANCED FUNCTIONAL MATERIALS, 2021, 31(7), 2008574.
Authors:  Dai, Ziyi;  Chen, Ge;  Ding, Sen;  Lin, Jing;  Li, Shunbo; et al.
Favorite | TC[WOS]:80 TC[Scopus]:83  IF:18.5/19.6 | Submit date:2021/09/17
Flexible  Microcilia  Optical Transmittance  Robustness  Superhydrophobic Surfaces  
Magnetically Responsive Film Decorated with Microcilia for Robust and Controllable Manipulation of Droplets Journal article
Chen, Ge, Dai, Ziyi, Li, Shunbo, Huang, Yifeng, Xu, Yi, She, Juncong, Zhou, Bingpu. Magnetically Responsive Film Decorated with Microcilia for Robust and Controllable Manipulation of Droplets[J]. ACS Applied Materials and Interfaces, 2021, 13(1), 1754-1765.
Authors:  Chen, Ge;  Dai, Ziyi;  Li, Shunbo;  Huang, Yifeng;  Xu, Yi; et al.
Favorite | TC[WOS]:47 TC[Scopus]:48  IF:8.3/8.7 | Submit date:2021/09/17
Digital Microfluidics  Droplet Manipulation  Magnetically Responsive  Mixing  Superhydrophobic  
Tilted magnetic micropillars enabled dual-mode sensor for tactile/touchless perceptions Journal article
Zhou, Qian, Ji, Bing, Hu, Bin, Li, Shunbo, Xu, Yi, Gao, Yibo, Wen, Weijia, Zhou, Jun, Zhou, Bingpu. Tilted magnetic micropillars enabled dual-mode sensor for tactile/touchless perceptions[J]. Nano Energy, 2020, 78.
Authors:  Zhou, Qian;  Ji, Bing;  Hu, Bin;  Li, Shunbo;  Xu, Yi; et al.
Favorite | TC[WOS]:65 TC[Scopus]:65  IF:16.8/16.3 | Submit date:2021/09/17
Contactless Sensing  Electronic Skin  Flexible Sensor  Tilted Micropillar Array  
In situ assembly of a wearable capacitive sensor with a spine-shaped dielectric for shear-pressure monitoring Journal article
Ji, Bing, Zhou, Qian, Chen, Ge, Dai, Ziyi, Li, Shunbo, Xu, Yi, Gao, Yibo, Wen, Weijia, Zhou, Bingpu. In situ assembly of a wearable capacitive sensor with a spine-shaped dielectric for shear-pressure monitoring[J]. Journal of Materials Chemistry C, 2020, 8(44), 15634-15645.
Authors:  Ji, Bing;  Zhou, Qian;  Chen, Ge;  Dai, Ziyi;  Li, Shunbo; et al.
Favorite | TC[WOS]:28 TC[Scopus]:27 | Submit date:2021/09/17
Dynamic enrichment of plasmonic hot-spots and analytes on superhydrophobic and magnetically functionalized platform for surface-enhanced Raman scattering Journal article
Chen, Ge, Dai, Ziyi, Ji, Bing, Li, Shunbo, Chen, Xuee, Gao, Yibo, Wen, Weijia, Zhou, Bingpu. Dynamic enrichment of plasmonic hot-spots and analytes on superhydrophobic and magnetically functionalized platform for surface-enhanced Raman scattering[J]. Sensors and Actuators, B: Chemical, 2020, 319, 128297.
Authors:  Chen, Ge;  Dai, Ziyi;  Ji, Bing;  Li, Shunbo;  Chen, Xuee; et al.
Favorite | TC[WOS]:14 TC[Scopus]:14  IF:8.0/7.0 | Submit date:2021/09/17
Coffee-ring Effect  Enrichment  Superhydrophobic  Surface Enhanced Raman Scattering