Reversing Hydrogel Adhesion Property via Firmly Anchoring Thin Adhesive Coatings
文献类型:期刊论文
作者 | Feng HY(冯海燕)1,2; Ma YF(马延飞)2![]() ![]() ![]() ![]() ![]() |
刊名 | Advanced Functional Materials
![]() |
出版日期 | 2022-04 |
卷号 | 32期号:15页码:2111278 |
英文摘要 | Hydrogels, exhibiting wide application prospects in soft robotics, tissue engineering, implantable electronics, etc., upon functioning often require to adhere to substrates especially in wet environments despite that most hydrogels are nonsticky because of their high water content and hydrophilicity. Herein, a strategy to rapidly reverse the adhesion properties of hydrogels via surface anchoring very thin adhesive coatings is reported. Inspired by mussel adhesion, poly(vinyl alcohol) hydrogel is first coated with polymerized tannic acid that chelates with Fe3+, which serves as the interface bonding layer. Subsequently, a wet adhesive poly(dopamine methacrylamide-co-methoxyethyl acrylate) is firmly anchored to form the very thin adhesive coating (<10 µm) that can generate high adhesion strength both in the air and underwater. The adhesive coating also endows hydrogels with high water retention capacity under warm condition (50 °C) and is able to get on-demand functionalization on the designated area to achieve asymmetric adhesion, static and dynamic control over wettability. The strategy demonstrates potentials for broad applications from biomedicine to wearable electronics. |
语种 | 英语 |
源URL | [http://ir.licp.cn/handle/362003/29912] ![]() |
专题 | 兰州化学物理研究所_固体润滑国家重点实验室 |
作者单位 | 1.中国科学院大学 2.中国科学院兰州化学物理研究所 |
推荐引用方式 GB/T 7714 | Feng HY,Ma YF,Zhang ZZ,et al. Reversing Hydrogel Adhesion Property via Firmly Anchoring Thin Adhesive Coatings[J]. Advanced Functional Materials,2022,32(15):2111278. |
APA | Feng HY.,Ma YF.,Zhang ZZ.,Yang S.,Ma ZF.,...&Zhou F.(2022).Reversing Hydrogel Adhesion Property via Firmly Anchoring Thin Adhesive Coatings.Advanced Functional Materials,32(15),2111278. |
MLA | Feng HY,et al."Reversing Hydrogel Adhesion Property via Firmly Anchoring Thin Adhesive Coatings".Advanced Functional Materials 32.15(2022):2111278. |
入库方式: OAI收割
来源:兰州化学物理研究所
其他版本
除非特别说明,本系统中所有内容都受版权保护,并保留所有权利。