説明:
(abstract)Hot-melt adhesives (HMAs) are widely used in packaging, electronics, and automotive applications, but their adhesion to low-surface-energy polymers such as polypropylene (PP) remains challenging. Here, we present a simple and scalable method to prepare galloyl-grafted polypropylene (PPGA) by introducing a gallic-acid-bearing methacrylate onto PP through a peroxide-initiated process. The resulting hot-pressed adhesive PP films exhibited exceptionally high lap-shear strengths across various substrates. PPGA-based adhesives achieved substrate failure on PP, indicating that interfacial adhesion surpassed the cohesive strength of the substrate owing to molecular interdiffusion and fusion of amorphous PP chains at the interface. On metal substrates, the adhesives reached record-high lap-shear strengths up to 18.3 MPa on stainless steel, far exceeding those of pristine PP. Furthermore, PPGA maintained significant bonding strength on PP and stainless steel even after seven days of water immersion or UV aging, demonstrating excellent wet adhesion and long-term stability. This study establishes galloyl-grafted polypropylene as a high-performance, multi-substrate hot-melt adhesive with outstanding dry and wet adhesion, thereby offering a practical, scalable, and sustainable alternative to conventional hot-melt adhesives.
権利情報:
キーワード: polypropylene, gallic acid, hot-melt adhesive, lap-shear strength, wet adhesion
会議:
PPC & PETROMAT SYMPOSIUM 2026
(2026-07-07 - 2026-07-09)
研究助成金:
原稿種別: 論文以外のデータ
MDR DOI: https://doi.org/10.48505/nims.6423
公開URL:
関連資料:
その他の識別子:
連絡先:
更新時刻: 2026-07-24 10:31:52 +0900
MDRでの公開時刻: 2026-07-24 14:30:07 +0900
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PPC & PETROMAT Symposium 2026 - Paripat Kraisornkachit 2.pptx
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サイズ | 94.9MB | 詳細 |