Khedaioui Douriya, Boisson Christophe, D'Agosto Franck, Montarnal Damien
Univ Lyon. Université Claude Bernard Lyon 1, CPE Lyon, CNRS, UMR 5265, Chemistry, Catalysis, Polymers and Processes, 43 Bvd du 11 Novembre 1918, 69616, Villeurbanne, France.
Angew Chem Int Ed Engl. 2019 Oct 28;58(44):15883-15889. doi: 10.1002/anie.201908257. Epub 2019 Sep 24.
While the introduction of polymers into aerogels strongly enhances their toughness, truly elastic monolithic aerogels which restore their dimensions upon extensive compression are still challenging to synthesize. In this context hydrophobic semi-crystalline polymers with low glass transition temperatures, and combined stiffness and flexibility, have only recently attracted attention. Shown here is that polyethylene aerogels with a low density, and combined chemical crosslinking and high crystallinity, display high moduli and excellent mechanical resilience. To maximize the crystallinity of these aerogels while maintaining a high crosslinking density, polyethylene networks with well-defined segments were synthesized by hydrosilylation crosslinking of telechelic, vinyl-functionalized oligomers obtained from catalyzed chain-growth polymerization. Recoverable deformations both above and below the melting temperature of polyethylene affords remarkable shape-memory properties.
虽然将聚合物引入气凝胶可显著提高其韧性,但要合成在大量压缩后能恢复尺寸的真正弹性整体气凝胶仍然具有挑战性。在这种情况下,具有低玻璃化转变温度、兼具刚性和柔韧性的疏水性半结晶聚合物直到最近才受到关注。这里展示的是,具有低密度、化学交联和高结晶度相结合的聚乙烯气凝胶表现出高模量和出色的机械弹性。为了在保持高交联密度的同时使这些气凝胶的结晶度最大化,通过对由催化链增长聚合得到的遥爪型、乙烯基官能化低聚物进行硅氢加成交联,合成了具有明确链段的聚乙烯网络。在聚乙烯的熔点之上和之下均可恢复的变形赋予了显著的形状记忆特性。