胶粘剂
材料科学
单宁酸
耐久性
纳米技术
聚合
聚合物
粘附
生物污染
泄漏(经济)
固化(化学)
水下
分散性
复合材料
共晶体系
纳米颗粒
平坦度(宇宙学)
自催化
适应性
化学工程
危险废物
氧化还原
弹性体
化学
结构完整性
表面改性
作者
Qiaoyuan Luo,Tianrui Zhou,Yuntong Liang,Yuancheng Zhang,Baofeng Lin
标识
DOI:10.1016/j.ijbiomac.2025.149882
摘要
Green formaldehyde-free adhesives have gained attention for their eco-friendliness, though poor extreme-environment adaptability and inadequate underwater adhesion limit their practical application. This study presents a novel tannic acid‑silver nanoparticles (TA-AgNPs) in deep eutectic solvent (DES) for room-temperature autocatalytic polymerization of acrylic acid. By integrating nano-lignin (LNP) and TA-AgNPs, we constructed a dual dynamic enhancement structure through a catechol-quinone redox couple, enabling synergistic dynamic covalent/non-covalent bonding. The resulting green adhesive (TALP) demonstrates exceptional interfacial adhesion (1.3 MPa on wood) with 60-days durability under ambient conditions. The DES-mediated hydrogen-bonding network facilitates efficient interfacial water displacement, achieving underwater adhesion strength of 0.94 MPa and maintaining operational efficacy across extreme temperatures (-40 °C to 100 °C) and chemical solvents. The system exhibits a rapid recovery capability (3-s pipe leakage repair) via dynamic bond reconfiguration. Notably, the phenolic hydroxyl groups in TA synergize with AgNPs' bactericidal activity, yielding potent antimicrobial performance suitable for bacterial-prone environments. This multifunctional adhesive platform combines environmental adaptability, rapid repair, and intrinsic biocidal properties, offering transformative potential for industrial and biomedical applications under harsh conditions.
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