3D printable high-performance conducting polymer hydrogel for all-hydrogel bioelectronic interfaces T Zhou, H Yuk, F Hu, J Wu, F Tian, H Roh, Z Shen, G Gu, J Xu, B Lu, ... Nature Materials 22 (7), 895-902, 2023 | 284 | 2023 |
Design of highly conductive, intrinsically stretchable, and 3D printable PEDOT: PSS hydrogels via PSS-chain engineering for bioelectronics J Yu, F Tian, W Wang, R Wan, J Cao, C Chen, D Zhao, J Liu, J Zhong, ... Chemistry of Materials 35 (15), 5936-5944, 2023 | 57 | 2023 |
3D printing of robust high‐performance conducting polymer hydrogel‐based electrical bioadhesive interface for soft bioelectronics J Yu, R Wan, F Tian, J Cao, W Wang, Q Liu, H Yang, J Liu, X Liu, T Lin, ... Small 20 (19), 2308778, 2024 | 47 | 2024 |
Design of adhesive conducting PEDOT-MeOH: PSS/PDA neural interface via electropolymerization for ultrasmall implantable neural microelectrodes F Tian, J Yu, W Wang, D Zhao, J Cao, Q Zhao, F Wang, H Yang, Z Wu, ... Journal of Colloid and Interface Science 638, 339-348, 2023 | 36 | 2023 |
Flexible supercapacitors based on stretchable conducting polymer electrodes W Wang, J Cao, J Yu, F Tian, X Luo, Y Hao, J Huang, F Wang, W Zhou, ... Polymers 15 (8), 1856, 2023 | 30 | 2023 |
Design, synthesis and biological evaluation of 6, 7-disubstituted-4-phenoxyquinoline derivatives bearing pyridazinone moiety as c-Met inhibitors X Liu, J Kou, Z Xiao, F Tian, J Hu, P Zheng, W Zhu Molecules 23 (7), 1543, 2018 | 16 | 2018 |
3D Printing of Stretchable, Adhesive and Conductive Ti3C2Tx-Polyacrylic Acid Hydrogels W Zhao, J Cao, F Wang, F Tian, W Zheng, Y Bao, K Zhang, Z Zhang, J Yu, ... Polymers 14 (10), 1992, 2022 | 14 | 2022 |
3D Printable High Performance Conducting Polymer Hydrogel for All-Hydrogel Bioelectronics T Zhou, H Yuk, F Hu, J Wu, F Tian, H Roh, Z Shen, G Gu, J Xu, B Lu, ... bioRxiv, 2022.01. 29.478311, 2022 | 4 | 2022 |