155 Papers
356 Citations
Fuzeng Ren is an academic researcher from Southern University of Science and Technology. The author has contributed to research in topics: Alloy & Microstructure. The author has an hindex of 30, co-authored 122 publications. Previous affiliations of Fuzeng Ren include Hong Kong University of Science and Technology & University of Science and Technology of China.
Chat about Author
Papers
Mussel-Inspired Adhesive and Tough Hydrogel Based on Nanoclay Confined Dopamine Polymerization.
Lu Han,Xiong Lu,Xiong Lu,Liu Kezhi,Kefeng Wang,Liming Fang,Lu-Tao Weng,Hongping Zhang,Youhong Tang,Fuzeng Ren,Cancan Zhao,Guoxing Sun,Rui Liang,Zongjin Li +13 more
TL;DR: This free-standing, adhesive, tough, and biocompatible hydrogel may be more convenient for surgical applications than adhesives that involve in situ gelation and extra agents.
861
Plant-inspired adhesive and tough hydrogel based on Ag-Lignin nanoparticles-triggered dynamic redox catechol chemistry
Donglin Gan,Wensi Xing,Lili Jiang,Ju Fang,Cancan Zhao,Fuzeng Ren,Liming Fang,Kefeng Wang,Xiong Lu +8 more
TL;DR: The authors report on the addition of silver-Lignin nanoparticles as a dynamic catechol redox system to maintaincatechol/quinone balance, making a reusable, antibacterial bioadhesive.
Tough, self-healable and tissue-adhesive hydrogel with tunable multifunctionality
Lu Han,Liwei Yan,Kefeng Wang,Liming Fang,Hongping Zhang,Youhong Tang,Yonghui Ding,Lu-Tao Weng,Jielong Xu,Jie Weng,Yujie Liu,Fuzeng Ren,Xiong Lu,Xiong Lu +13 more
TL;DR: A self-healing, super-resilient hydrogel that can accelerate skin regeneration has been made using an adhesive mechanism inspired by mussels using a process that preserves PDA's catechols – substances that impart mussels with high adhesiveness – when embedded in an elastic polymer matrix.
Transparent, Adhesive, and Conductive Hydrogel for Soft Bioelectronics Based on Light-Transmitting Polydopamine-Doped Polypyrrole Nanofibrils
TL;DR: A transparent, conductive, stretchable, and self-adhesive hydrogel by in situ formation of polydopamine (PDA)-doped polypyrrole (PPy) nanofibrils in the polymer network was reported in this paper.
Mussel-Inspired Contact-Active Antibacterial Hydrogel with High Cell Affinity, Toughness, and Recoverability
TL;DR: In vitro and in vivo tests demonstrate that this tough and contact‐active antibacterial hydrogel is a promising material to fulfill the dual functions of promoting tissue regeneration and preventing bacterial infection for wound‐healing applications.
378