材料科学
工程类
工艺工程
纳米技术
生化工程
制造工程
可持续设计
建筑工程
化学
高分子科学
系统工程
作者
Qing Li,Bruno Charrière,C. Lyn Comer,Jacques Lalevée
标识
DOI:10.1016/j.eurpolymj.2026.114917
摘要
Acrylic pressure-sensitive adhesive (PSA) is among the most widely used adhesive materials, valued for their optical clarity, environmental durability, and highly tunable viscoelastic properties. This review summarizes key principles of acrylic PSA design and highlights two major pathways advancing its sustainability. The first focuses on the development of UV-curable acrylic PSA, where rapid light-driven crosslinking reduces energy demand and minimizes solvent use. The second examines bio-based acrylic PSA, including renewable monomers and additives that partially replace fossil-derived components while maintaining functional adhesive performance. Together, these approaches illustrate how curing strategies and renewable feedstocks are shaping more sustainable acrylic PSA systems. Current challenges and future opportunities are also discussed.
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