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Updated: Sep 15, 2025

Synthesis of Strong Adhesive Hydrogel, Gelatin O-Nitrosobenzaldehyde
Published on: November 11, 2022
Sub-nanometer nanowire-enhanced ultra-strong, eco-friendly and recyclable water-based adhesives
Zuodong Zhang1, Yingshuo Xiong1, Meiwen Cao1
1State Key Laboratory of Heavy Oil Processing and Department of Biological and Energy Chemical Engineering, China University of Petroleum (East China), 66 Changjiang West Road, Qingdao Economic Development Zone, Qingdao 266580, China.
Abstract:
Traditional adhesives face an enduring dilemma, that is, oil-based systems achieve high strength at the cost of volatile organic compound (VOC) emissions, while water-based alternatives suffer from inadequate performance. To resolve this paradox, a sub-nanometer filler-reinforced adhesive has been fabricated by integrating ultra-flexible gadolinium oxyhydroxide (GdOOH) nanowires (diameter < 1 nm) into a polyacrylic acid (PAA) aqueous matrix. The sub-nanometer dimensions and polymer-like flexibility of GdOOH nanowires enable uniform dispersion via dynamic hydrogen bonding, mechanical interlocking, and chemical anchoring, synergistically optimizing the cohesion-adhesion balance. With merely 1 wt% GdOOH loading, the lap shear strength surges by 285 % (3.96 MPa vs. 1.39 MPa for pure PAA), while retaining 75 % initial strength after 20 fatigue cycles, which is unprecedented for water-based adhesives. The composite demonstrates robust humidity (10-80 % RH) and temperature (-40 °C to 50 °C) adaptability, maintaining >1.5 MPa adhesion across diverse substrates (wood, metal, glass). Its reversible debonding via water-responsive hydrogen bond disruption, near-zero VOC emissions, and recyclability (95 % strength recovery) offer a sustainable paradigm. This "dynamic bonding-nano-interlocking" strategy bridges organic-inorganic interfaces, paving the way for high-performance, eco-friendly adhesives in automotive, electronics, and biomedical applications.
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