4.6 Article

Simple and Rapid Adhesion of Commodity Polymer Substrates under Ambient Conditions Using Complexed Alkylboranes

期刊

ACS OMEGA
卷 7, 期 32, 页码 28636-28645

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsomega.2c03740

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资金

  1. Graduate Assistance in Areas of the National Need Program in the U.S. Department of Education [59903-DNI7]
  2. ACS Petroleum Research Fund [GAANN P200A180026]
  3. Pennsylvania Department of Community & Economic Development

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Rapid-cure adhesives for polymers offer significant advantages in terms of cost savings, faster production, and greater design freedom. This article discusses a powerful adhesive platform that can bond a wide range of commodity polymers under ambient conditions using a simple procedure. The adhesive formulation is air-stable, bulk, and requires minimal surface preparation. The study explores the performance and failure mechanism of the adhesive, as well as an additive to enhance its glass-transition temperature. This alkylborane-initiated adhesion platform holds promise in industries such as automotive, aerospace, and marine for rapid manufacturing and structural adhesion.
Adhesives are ubiquitous in manufacturing spanning nearly all sectors from healthcare and photovoltaics to aerospace and electronics. Yet many commercial polymers remain challenging to adhere, necessitating either pretreatment, mechanical fastening, or adhesive processes that involve specialized equipment, high temperature/vacuum, and long cure times. Thus, rapid-cure adhesives for polymers that can set under ambient conditions using simple procedures are desirous because they offer cost savings, faster production, and greater design freedom to producers. Herein, we report a powerful adhesive platform that bonds a wide scope of commodity polymers via (hydrogen) atom transfer and free-radical (graft) polymerization initiated with a trialkylborane-ligand complex and isocyanate decomplexing agent. The developed adhesive formulation is air-stable, bulk, and operates in air at room temperature using a high-glass-transition temperature polyacrylate, i.e., poly(isobornyl acrylate). The alkylborane-initiated bonding process is rapid (similar to 30 min), requires minimal surface preparation (cleaning and mild roughening), and successfully bonds seven diverse substrates including polytetrafluoroethylene, polyethylene, polypropylene, polycarbonate, nylon, polymethylmethacrylate, and polyvinylchloride. This contribution uniquely investigates the process-property relationships for the adhesive formulation, lap-shear performance, mechanism of failure, and a reactive additive for enhancing the adhesive's glass-transition temperature to similar to 120 degrees C (polyhedral oligomeric silsesquioxane or POSS) to widen its operation temperature. We envision that the reported alkylborane-initiated adhesion platform could hold promise in the automotive, aerospace, and marine sectors as means for rapid manufacturing and structural adhesion.

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