材料科学
胶粘剂
热固性聚合物
复合材料
耐久性
韧性
环境友好型
抗剪强度(土壤)
单宁酸
基质(水族馆)
复合数
粘接
粘结强度
抗弯强度
相(物质)
粘结强度
生物复合材料
作者
Junfang Xue,Zhenxuan Liang,Shuai Bian,Xiaoqian Bi,Zixuan Yang,Shifeng Zhang,Anmin Huang
标识
DOI:10.1021/acsami.6c05128
摘要
To address harmful volatile emissions from formaldehyde-based adhesives and the high energy consumption of thermosetting adhesive curing, this study proposes a water-based, environmentally friendly adhesive inspired by natural liquid-liquid phase separation. A synergistic combination of silicone-acrylic (SA) emulsion, cationic polyamidoamine-epichlorohydrin (PAE), and plant-derived tannic acid (TA) was used to construct a phase-separated cross-linked network through multiple dynamic interactions. This bioinspired design enables low-temperature rapid curing, eliminating traditional high-temperature processes. The adhesive exhibits outstanding performance: cold-pressed plywood achieves a wet shear strength of 2.58 MPa, retaining 1.24 MPa after 72 h of continuous boiling, demonstrating reliable durability in extreme humid and hot environments and helping to reduce material waste and degradation-related losses. It also exhibits broad substrate applicability with bond strengths of 23.5 MPa for wood and 12.95 MPa for metals. Moreover, it can be processed into self-supporting films with high toughness (elongation of >350%) and high strength (tensile strength of >16.5 MPa). This work presents a strategy for high-performance, low-environmental-impact adhesives, which is promising for green composite manufacturing and clean production.
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