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Conductive silk fibroin hydrogel with semi-interpenetrating network with high toughness and fast self-recovery for strain sensors Journal article
Huo, Peixian, Ding, Hongyao, Tang, Ziqing, Liang, Xiaoxu, Xu, Jianyu, Wang, Miaomiao, Liang, Rui, Sun, Guoxing. Conductive silk fibroin hydrogel with semi-interpenetrating network with high toughness and fast self-recovery for strain sensors[J]. International Journal of Biological Macromolecules, 2022, 212, 1-10.
Authors:  Huo, Peixian;  Ding, Hongyao;  Tang, Ziqing;  Liang, Xiaoxu;  Xu, Jianyu; et al.
Favorite | TC[WOS]:22 TC[Scopus]:24  IF:7.7/7.7 | Submit date:2022/06/14
Mechanical Property  Poly (n N-dimethylallylamine)  Regenerated Silk Fibroin  Semi-interpenetrating Network  Tough Hydrogel  Wearable Strain Sensor  
Hydrolyzed Hydrogels with Super Stretchability, High Strength, and Fast Self-Recovery for Flexible Sensors Journal article
Hongyao Ding, Xiaoxu Liang, Jianyu Xu, Ziqing Tang, Zongjin Li, Rui Liang, Guoxing Sun. Hydrolyzed Hydrogels with Super Stretchability, High Strength, and Fast Self-Recovery for Flexible Sensors[J]. ACS Applied Materials and Interfaces, 2021, 13(19), 22774-22784.
Authors:  Hongyao Ding;  Xiaoxu Liang;  Jianyu Xu;  Ziqing Tang;  Zongjin Li; et al.
Favorite | TC[WOS]:49 TC[Scopus]:49  IF:8.3/8.7 | Submit date:2021/09/10
Acidic Hydrolysis  Fast Self-recovery  Flexible Sensors  Polyacrylamide  Stretchable And Tough Hydrogel  
A semi-interpenetrating network ionic composite hydrogel with low modulus, fast self-recoverability and high conductivity as flexible sensor Journal article
Ding, Hongyao, Liang, Xiaoxu, Wang, Qiao, Wang, Miaomiao, Li, Zongjin, Sun, Guoxing. A semi-interpenetrating network ionic composite hydrogel with low modulus, fast self-recoverability and high conductivity as flexible sensor[J]. Carbohydrate Polymers, 2020, 248, 116797.
Authors:  Ding, Hongyao;  Liang, Xiaoxu;  Wang, Qiao;  Wang, Miaomiao;  Li, Zongjin; et al.
Favorite | TC[WOS]:101 TC[Scopus]:107  IF:10.7/10.2 | Submit date:2021/03/09
Hydrogen Bond  Ionic Conductivity  Self-recovery  Semi-interpenetrating Network  Strain Sensor  Tough Hydrogel  
Mussel-Inspired Adhesive and Tough Hydrogel Based on Nanoclay Confined Dopamine Polymerization. Journal article
Han, Lu, Lu, Xiong, Liu, Kezhi, Wang, Kefeng, Fang, Liming, Weng, Lu-Tao, Zhang, Hongping, Tang, Youhong, Ren, Fuzeng, Zhao, Cancan, Sun, Guoxing, Liang, Rui, Li, Zongjin. Mussel-Inspired Adhesive and Tough Hydrogel Based on Nanoclay Confined Dopamine Polymerization.[J]. ACS Nano, 2017, 2561-2574.
Authors:  Han, Lu;  Lu, Xiong;  Liu, Kezhi;  Wang, Kefeng;  Fang, Liming; et al.
Favorite |   IF:15.8/16.2 | Submit date:2022/08/24
Adhesive Hydrogel  Mussel-inspired  Nanoclay  Polydopamine  Tough Hydrogel  Wound Dressing