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多过氧化物降解引起的内聚强度变化及其在可拆离黏附中的应用。

Cohesive force change induced by polyperoxide degradation for application to dismantlable adhesion.

机构信息

Department of Applied Chemistry and Bioengineering, Graduate School of Engineering,Osaka City University, Sugimoto, Sumiyoshi-ku, Osaka 558-8585, Japan.

出版信息

ACS Appl Mater Interfaces. 2010 Sep;2(9):2594-601. doi: 10.1021/am1004392.

Abstract

Polyperoxides containing peroxy bonds as the main-chain repeating units are a new class of degradable polymers because of significant changes in their molecular weight and physical properties during a degradation process. In this study, the application of linear and network polyperoxides to dismantlable adhesion was investigated. When the linear polyperoxide obtained from methyl sorbate and oxygen (PP-MS) was used as a pressure-sensitive adhesive (PSA), its shear holding power and 180° peel strength immediately decreased upon heating at 70 °C or under UV irradiation. Low-molecular-weight products, which were generated by the degradation of PP-MS, behaved as a plasticizer to effectively reduce the cohesive force. The adhesive properties of two types of polyperoxides-based network polymers, the cross-linking point and main-chain degradable network polymers, were evaluated. A cross-linking point degradable network polymer was produced by the oxygen cross-linking of dienyl-functionalized poly(ethylene glycol). A main-chain degradable network polymer was formed by the diisocyanate cross-linking of a hydroxy-functionalized polyperoxide. Both network polymers showed a higher adhesive strength than PP-MS due to their three-dimensional network structure. Noteworthy, the adhesive strength of the main-chain degradable network polymer was varied from the level of PSA to structural adhesives by increasing the added amount of the diisocyanate cross-linker. After heating at 110 °C, the cohesive and adhesive strengths significantly decreased. The linear and network polyperoxides are shown to be promising materials for dismantlable adhesion.

摘要

含过氧键作为主链重复单元的多过氧化物是一类新型可降解聚合物,因为在降解过程中其分子量和物理性能会发生显著变化。本研究探讨了线性和网络多过氧化物在可拆解胶接中的应用。当以甲基琥珀酸和氧气合成的线性多过氧化物(PP-MS)用作压敏胶(PSA)时,其剪切保持力和 180°剥离强度在 70°C 加热或紫外光照射下立即下降。由 PP-MS 降解产生的低分子量产物充当增塑剂,有效地降低了内聚强度。评估了两种基于多过氧化物的网络聚合物,即交联点和主链可降解网络聚合物的胶接性能。通过二烯基官能化聚(乙二醇)的氧气交联制备了交联点可降解网络聚合物。通过羟基官能化多过氧化物的二异氰酸酯交联形成了主链可降解网络聚合物。由于其三维网络结构,这两种网络聚合物的胶接强度均高于 PP-MS。值得注意的是,通过增加二异氰酸酯交联剂的添加量,可以将主链可降解网络聚合物的胶接强度从 PSA 级调整到结构胶级。加热至 110°C 后,内聚强度和胶接强度显著降低。线性和网络多过氧化物有望成为可拆解胶接的有前途的材料。

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