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首页> 外文期刊>Biomacromolecules >Interplay Between Viscoelastic and Chemical Tunings in Fatty-Acid-Based Polyester Adhesives: Engineering Biomass toward Functionalized Step-Growth Polymers and Soft Networks
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Interplay Between Viscoelastic and Chemical Tunings in Fatty-Acid-Based Polyester Adhesives: Engineering Biomass toward Functionalized Step-Growth Polymers and Soft Networks

机译:脂酸型聚酯胶粘剂的粘弹性和化学调节之间的相互作用:向功能化的逐步增长聚合物和软网络工程生物量。

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摘要

This Article describes the synthesis and characterization of renewable self-adhesive coatings with tunable viscoelastic properties and equipped with well-defined amounts of carboxylic acid "sticker" groups with adhesion promoting characteristics. Hydroxyl-ended polyesters with various architectures (linear, branched) were synthesized by melt polycondensation of dimerized fatty acids and fatty diols and then cured with maleic anhydride-modified triglycerides (such as maleinized soybean oil) in the presence of the amidine catalyst l,8-diazabicyclo[5.4.0]undec-7-ene. The curing reaction of alcoholysis has the dual effect of chain extending/cross-linking the base polymers via creation of polymeric half-esters linkages while introducing carboxylic acid functions within the gel structure. We demonstrated how the adhesion properties can be finely tuned from molecular design and formulation of the network precursors and how the rheology and functionality of the coatings influence the adhesive bond formation and development. These renewable polyester adhesives proved to be suitable materials for pressure-sensitive adhesives applications with respect to adhesion strength, viscoelasticity, and functionality. In addition, the environmental benefits of such materials are briefly discussed.
机译:本文介绍了具有可调节粘弹性的可再生自粘涂料的合成和表征,该涂料具有定义良好的具有增粘特性的羧酸“粘性”基团。通过二聚脂肪酸和脂肪二醇的熔融缩聚反应合成具有各种结构(直链,支链)的羟基封端的聚酯,然后在male催化剂的存在下,用马来酸酐改性的甘油三酸酯(如马来酸化的大豆油)固化[8]。 -二氮杂双环[5.4.0]十一月-7-烯。醇解的固化反应具有通过形成聚合物半酯键同时在凝胶结构中引入羧酸功能而使基础聚合物扩链/交联的双重作用。我们展示了如何通过分子设计和网络前体的配方来微调粘合性能,以及涂料的流变学和功能性如何影响粘合剂的形成和发展。就粘合强度,粘弹性和功能性而言,这些可再生聚酯粘合剂被证明是压敏粘合剂应用的合适材料。另外,简要讨论了这种材料的环境效益。

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