Kosaba Sho, Ikura Ryohei, Yamaoka Kenji, Arai Takayuki, Takashima Yoshinori
Department of Macromolecular Science, Graduate School of Science, Osaka University, 1-1 Machikaneyama, Toyonaka, Osaka 560-0043, Japan.
LINTEC Corporation, 5-14-42, Nishiki, Warabi, Saitama 335-0005, Japan.
ACS Appl Mater Interfaces. 2024 May 15;16(19):25393-25403. doi: 10.1021/acsami.4c03806. Epub 2024 May 2.
Acrylic adhesive sheets have been used for many applications, from popular seal materials to high-end electrical devices. One of the basic and critical design features of adhesives is effective covalent cross-linking for superior adhesive properties. On the other hand, covalent cross-linking prevents reuse or recycling of the adhesive. This makes the adhesive sheets insoluble and poorly workable. For development of sustainable adhesives, we investigated the adhesive sheets based on acrylic elastomers with "Movable Cross-links" (M-PEA-CD (0.5)) copolymerized with 0.5 mol % cyclodextrin monomers. The peel strength and creep resistance of M-PEA-CD (0.5) were greater than those of adhesives (N-PEA) without any cross-links. M-PEA-CD (0.5) was recyclable via dissolution in ethyl acetate. Furthermore, the recycled M-PEA-CD (0.5) from solution exhibited the same adhesion properties as virgin M-PEA-CD (0.5). Spectroscopic and mechanical measurements indicated that topological cross-linking with Cyclodextrin (CD) moieties generated novel recyclable adhesive sheets without restricting the polymer main chains, unlike covalent cross-linking (CC-PEA). The movable cross-links were maintained in both the solid state and in solution, which allowed recycling of the elastomer via simple methods.
丙烯酸粘合片已被用于许多应用中,从常见的密封材料到高端电子设备。粘合剂的基本关键设计特征之一是有效的共价交联以实现卓越的粘合性能。另一方面,共价交联会阻止粘合剂的再利用或回收利用。这使得粘合片不溶且难以加工。为了开发可持续粘合剂,我们研究了基于与0.5摩尔%环糊精单体共聚的具有“可移动交联”(M-PEA-CD(0.5))的丙烯酸弹性体的粘合片。M-PEA-CD(0.5)的剥离强度和抗蠕变性大于没有任何交联的粘合剂(N-PEA)。M-PEA-CD(0.5)可通过溶解在乙酸乙酯中进行回收。此外,从溶液中回收的M-PEA-CD(0.5)表现出与原始M-PEA-CD(0.5)相同的粘合性能。光谱和力学测量表明,与环糊精(CD)部分的拓扑交联产生了新型的可回收粘合片,与共价交联(CC-PEA)不同,它不会限制聚合物主链。可移动交联在固态和溶液中均得以保持,这使得弹性体能够通过简单方法进行回收利用。