虎门体育官方登录入口网

郭宝春教授课题组
:鼗凭г凇禡acromolecular Rapid Communications 》上发表文章
发布时间: 2017-02-21 浏览次数: 471

Bioinspired Design of a Robust Elastomer with Adaptive Recovery via Triazolinedione Click Chemistry

Jing Huang, Lijie Zhang, Zhenghai Tang, Siwu Wu, Nanying Ning, Haibin Sun, Baochun Guo*

Abstract: It is a significant but challenging task to simultaneously reinforce and functionalize diene rubbers. Inspired by “sacrificial bonds”, the authors engineer sacrificial hydrogen bonds formed by pendent urazole groups in crosslinked solution-polymerized styrene butadiene rubber (SSBR) via triazolinedione click chemistry. This post-crosslinking modification reveals the effects of the sacrificial bonds based on a consistent covalent network. The “cage effect” of the pre-crosslinked network facilitates the heterogeneous distribution of urazole groups, leading to the formation of hydrogen-bonded multiplets. These multiplets further aggregate into clusters with vicinal trapped polymer segments that form microphase separation from the SSBR matrix with a low content of urazole groups. The clusters based on hydrogen bonds, serving as sacrificial bonds, promote energy dissipation, significantly improving the mechanical properties of the modified SSBR, and enable an additional wide transition temperature region above room temperature, which endows the modified SSBR with promising triple-shape memory behavior.



文章链接:http://onlinelibrary.wiley.com/doi/10.1002/marc.201600678/full


虎门体育(中国)app下载·虎门体育官网