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◆ Chemistry, an Asian journal2026-08-01

Crosslinked CO2-Based Polycarbonate: Biobased Pressure-Sensitive Adhesives Combining Wettability and Cohesive Strength.

Mengsen Xian, Ruoyu Zhang, Guangzhen Shao, Chunwei Zhuo, Shunjie Liu, Xianhong Wang

原始摘要(英文原文)· Original abstract
CO2-based polycarbonates show great potential for application as biodegradable pressure-sensitive adhesives (PSAs). However, it remains challenging for polycarbonate-based PSAs to achieve rapid surface wetting while simultaneously maintaining sufficient cohesive strength. To address this issue and improve adhesive performance, we propose a strategy for preparing crosslinked polycarbonate PSAs. As a proof of concept, bio-derived epoxides, including furfuryl glycidyl ether and n-butyl glycidyl ether, were introduced as key monomers to synthesize functionalized CO2-based polycarbonates (PBFCs). The crosslinked PSAs were subsequently constructed through a Diels-Alder reaction, while the flexible side chains enabled rapid wetting of the adhesive on the substrate surface. As a result, the static shear adhesion was significantly improved from approximately 0.1 h to over 24 h, accompanied by a tack grade of #2. Notably, the prepared PSAs could be reused for three cycles while maintaining a peel strength of approximately 2 N cm-1, and no visible residue was observed on the substrate after peeling. This study develops a series of crosslinked CO2-based PSAs from bio-based epoxides, providing a promising platform for the design of high-performance biodegradable PSAs.
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Crosslinked CO2-Based Polycarbonate: Biobased Pressure-Sensitive Adhesives Combining Wettability and Cohesive Strength. — 科研速览 Science Skim