Liu Lili, Liu Ziyang, Ren Yongyuan, Zou Xiuyang, Peng Wansu, Li Weizheng, Wu Yiqing, Zheng Sijie, Wang Xiaoliang, Yan Feng
College of Chemistry, Chemical Engineering and Materials Science, Soochow University, Suzhou, 215123, China.
School of Chemistry and Chemical Engineering, Nanjing University, Nanjing, 210023, China.
Angew Chem Int Ed Engl. 2021 Apr 12;60(16):8948-8959. doi: 10.1002/anie.202100984. Epub 2021 Mar 10.
In this study, we developed a superstrong and reversible adhesive, which can possess a high bonding strength in the "adhesive" state and detach with the application of heating. An ionic crystal (IC) gel, in which an IC was immobilized within a soft-polymer matrix, were synthesized via in situ photo-crosslinking of a precursor solution composed of N, N-dimethyl acrylamide (DMAA) and a melted IC. The obtained IC gel is homogenous and transparent at melt point. When cooled to the phase transition temperature of the IC, the gel turns into the adhesive with the adhesion strength of 5.82 MPa (on glasses), due to the excellent wetting of melted gel and a thin layer of crystalline IC with high cohesive strength formed on the substrates. The synergistic effects between IC, polymer networks and substrates were investigated by solid state H NMR and molecular dynamics simulation. Such an adhesive layer is reversable and can be detached by heating and subsequent re-adhesion via cooling. This study proposed the new design of removable adhesives, which can be used in dynamic and complex environments.
在本研究中,我们开发了一种超强且可逆的粘合剂,它在“粘合”状态下可具有高粘结强度,并在加热时分离。通过由N,N - 二甲基丙烯酰胺(DMAA)和熔融离子晶体(IC)组成的前体溶液的原位光交联,合成了一种将IC固定在软聚合物基质中的离子晶体(IC)凝胶。所获得的IC凝胶在熔点时是均匀且透明的。当冷却至IC的相变温度时,由于熔融凝胶的良好润湿性以及在基材上形成具有高内聚强度的薄结晶IC层,凝胶转变为粘合剂,其在玻璃上的粘附强度为5.82 MPa。通过固态氢核磁共振和分子动力学模拟研究了IC、聚合物网络和基材之间的协同效应。这样的粘合剂层是可逆的,可通过加热分离,随后通过冷却重新粘合。本研究提出了可用于动态和复杂环境的可移除粘合剂的新设计。