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Degradable Natural Lacquer (Urushi) Adhesives Using a Reversible Polymer Based on Hemiaminal Dynamic Covalent Networks

机译:可降解的天然漆(URUSHI)粘合剂,使用基于半膜动态共价网络的可逆聚合物

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摘要

We have developed a thermally cured, natural lacquer (urushi)-based adhesive, which has a reversible polymer (RP) additive that promotes degradability. The RP was prepared by thermally treating a hemiaminal dynamic covalent network (HDCN) organo-gel. The urushi was crosslinked polymer from the curing reaction of urushiol. The main component of the natural lacquer is urushiol, which is the mixture of catechol derivatives containing alkyl side chains. The catechol group has a high adhesiveness, and the long alkyl chains provide high mechanical strength and flexibility. The thermal curing reaction occurred mainly between unsaturated C=C groups in the side alkyl chains of urushiol, and the rate of the curing reaction increased at higher temperature. HDCN was prepared via a reaction between formaldehyde and poly(propylene glycol) bis (2-aminopropyl ether) in 1-methyl-2-pyrrolidinone. Hexahydro-triazine-like RP, which is reversible in strong acid solution, was formed after heat treatment. Urushi/RP adhesives were degradable, and the degradation was investigated by tensile strength measurements. The tensile strength increased with increased RP in the urushi/RP adhesives because RP has a higher tensile strength than urushi. The tensile strength of the urushi/RP adhesives decreased by more than one order of magnitude after the material was immersed in 0.5 M of H2SO4 for 6 h, and the degradability increased with increased RP content.
机译:我们已经开发了一种基于热固化的天然漆(Urushi)粘合剂,该粘合剂具有可逆的聚合物(RP)添加剂,可促进降解性。 RP是通过热处理半上动态共价网络(HDCN)有机体来制备的。 Urushi是从Urushiol的固化反应中交联的聚合物。天然漆的主要成分是Urushiol,它是含有烷基侧链的儿茶酚衍生物的混合物。儿茶酚基具有很高的粘附性,并且长烷基链具有很高的机械强度和柔韧性。热固化反应主要发生在Urushiol侧烷基链中的不饱和C = C基之间,而在较高温度下,固化反应的速率增加。通过甲醛和1-甲基-2-吡咯烷酮中的甲醛和聚(2-氨基丙基乙醚)之间的反应制备HDCN。在热处理后形成了在强酸溶液中可逆的六氢三嗪样RP。 URUSHI/RP粘合剂可降解,并通过拉伸强度测量研究了降解。由于RP的拉伸强度比Urushi更高,随着RP/RP粘合剂中RP的增加,拉伸强度随着RP的增加而增加。将材料浸入0.5 m的H2SO4 6小时后,Urushi/RP胶粘剂的拉伸强度降低了一个多数量级,并且随着RP含量的增加,脱升性增加。

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