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通过香芹醇-二硫苏糖醇硫醇-烯逐步增长聚合制备的基于天然产物的压敏胶粘剂。

Natural Product-Based Pressure-Sensitive Adhesives via Carveol-Dithiothreitol Thiol-Ene Step-Growth Polymerization.

作者信息

Prebihalo Emily A, Reineke Theresa M

机构信息

Department of Chemistry, University of Minnesota, 207 Pleasant Street SE, Minneapolis, Minnesota 55455, United States.

出版信息

ACS Macro Lett. 2024 Oct 15;13(10):1355-1361. doi: 10.1021/acsmacrolett.4c00481. Epub 2024 Sep 25.

Abstract

Pressure-sensitive adhesives occupy a large role in the commercial use of polymers; however, they are typically limited to nondegradable formulations using petroleum-based materials. As the plastic and environmental crises have intensified, the need for renewable starting materials and degradable designs has similarly deepened. With that goal, we endeavored to make adhesive films from renewable terpenes as a safer and more sustainable route to PSAs. Specifically, based on our previous report of the cross-linking ability of a carveol-based carbonate through thiol-ene chemistry, we report further exploration of the adhesive possibilities of this system. A carbonate monomer of dimerized carveol was linearly polymerized with dithiothreitol via UV-initiated thiol-ene chemistry and formed into adhesive coatings, with unmodified geraniol doped in as a tackifier. We obtained a range of adhesive properties based on the ratio of -methylene to thiol units and reported on the degradation of the adhesive coatings.

摘要

压敏胶粘剂在聚合物的商业应用中占据着重要地位;然而,它们通常局限于使用石油基材料的不可降解配方。随着塑料和环境危机的加剧,对可再生起始材料和可降解设计的需求也同样加深。出于这一目标,我们致力于用可再生萜烯制备胶粘剂薄膜,作为一种更安全、更可持续的制备压敏胶粘剂的途径。具体而言,基于我们之前关于香芹醇基碳酸酯通过硫醇-烯化学进行交联能力的报告,我们进一步探索了该体系的胶粘可能性。二聚香芹醇的碳酸酯单体通过紫外光引发的硫醇-烯化学与二硫苏糖醇进行线性聚合,并制成胶粘剂涂层,其中未改性的香叶醇作为增粘剂掺杂其中。我们根据亚甲基与硫醇单元的比例获得了一系列胶粘性能,并报告了胶粘剂涂层的降解情况。

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