Design of an Azopolymer for Photo-Switchable Adhesive Applications

Author:

Siniscalco David12ORCID,Pessoni Laurence3,Boussonnière Anne1,Castanet Anne-Sophie1,Billon Laurent3ORCID,Vignaud Guillaume4ORCID,Delorme Nicolas1ORCID

Affiliation:

1. Institut des Molécules et Matériaux du Mans (IMMM), UMR CNRS 6283, Le Mans Université, Avenue Olivier Messiaen, 72000 Le Mans, France

2. Institut Supérieur des Matériaux et Mécaniques Avancées du Mans (ISMANS Groupe CESI), LINEACT, 44 avenue Frédéric Auguste Bartholdi, 72000 Le Mans, France

3. Bio-Inspired Materials Group—Functionalities & Self-Assembly, Université de Pau et des Pays de l’Adour, E2S UPPA, IPREM UMR 5254, 2 Avenue Angot, 64000 Pau, France

4. IRDL, UMR CNRS 6027, Université Bretagne Sud, 56100 Lorient, France

Abstract

Significant research endeavors have been devoted to developing adhesives with reversible switching capabilities, allowing them to activate adhesion in response to diverse environmental stimuli. Among these, photo-switchable adhesives stand out as particularly promising. The presence of a photo-reversible solid-to-liquid transition, characterized by a transition temperature (TSL), in certain azobenzene-containing polymers offers a compelling avenue for creating such adhesives. The development of a method based on Atomic Force Microscopy to measure both the glass transition temperature (Tg) and TSL provided an opportunity to investigate the impact of various structural parameters on the solid-to-liquid transition of azopolymers. Our findings revealed that increasing the molecular weight (Mn) from 3400 to 8100 g/mol needed to achieve a highly cohesive adhesive resulted in an elevation in TSL (>10 °C), making the solid-to-liquid transition at room temperature more challenging. However, incorporating a highly flexible substituent at the para position of the azobenzene group proved effective in significantly reducing the TSL value (from 42 °C to 0 °C). This approach allows for the creation of photo-switchable adhesives with intriguing properties. We believe that our results establish a pathway toward developing a robust room-temperature photo-switchable adhesive.

Funder

ANR

Publisher

MDPI AG

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