Rahman Md Anisur, Bowland Christopher, Ge Sirui, Acharya Shree Ram, Kim Sungjin, Cooper Valentino R, Chen X Chelsea, Irle Stephan, Sokolov Alexei P, Savara Aditya, Saito Tomonori
Chemical Sciences Division, Oak Ridge National Laboratory, Oak Ridge, TN 37831, USA.
Department of Materials Science and Engineering, University of Tennessee, Knoxville, TN 37996, USA.
Sci Adv. 2021 Oct 15;7(42):eabk2451. doi: 10.1126/sciadv.abk2451.
Tough adhesives provide resistance against high debonding forces, and these adhesives are difficult to design because of the simultaneous requirement of strength and ductility. Here, we report a design of tough reversible/recyclable adhesive materials enabled by incorporating dynamic covalent bonds of boronic ester into commodity triblock thermoplastic elastomers that reversibly bind with various fillers and substrates. The spectroscopic measurements and density functional theory calculations unveil versatile dynamic covalent binding of boronic ester with various hydroxy-terminated surfaces such as silica nanoparticles, aluminum, steel, and glass. The designed multiphase material exhibits exceptionally high adhesion strength and work of debonding with a rebonding capability, as well as outstanding mechanical, thermal, and chemical resistance properties. Bonding and debonding at the interfaces dictate hybrid material properties, and this revelation of tailored dynamic interactions with multiple interfaces will open up a new design of adhesives and hybrid materials.
坚韧的粘合剂能够抵抗高脱粘力,而由于同时需要强度和延展性,这些粘合剂很难设计。在此,我们报告了一种坚韧的可逆/可回收粘合剂材料的设计,该材料通过将硼酸酯的动态共价键引入商品三嵌段热塑性弹性体中实现,这种弹性体可与各种填料和基材可逆结合。光谱测量和密度泛函理论计算揭示了硼酸酯与各种羟基封端表面(如二氧化硅纳米颗粒、铝、钢和玻璃)之间的多种动态共价键合。所设计的多相材料表现出极高的粘合强度和脱粘功,具有重新粘合能力,以及出色的机械、热和化学抗性。界面处的粘合和脱粘决定了混合材料的性能,而这种与多个界面的定制动态相互作用的揭示将开启粘合剂和混合材料的新设计。