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University of Osaka researchers develop reusable light-responsive adhesive for manufacturing

Researchers at The University of Osaka have developed a light-responsive adhesive that can be cleanly peeled and reused up to 15 times, responding to specific lighting conditions. This innovation addโ€ฆ

Light-triggered interface lets adhesive peel cleanly and rebond through 15 cycles
Phys.org โ€” 3 September 2026
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Researchers at The University of Osaka have unveiled a new light-responsive adhesive that can be cleanly peeled away and reused up to 15 times. This innovative adhesive, developed as a prototype, responds to specific lighting conditions, allowing it to detach from surfaces without leaving any residue. The breakthrough comes at a crucial time, as industries increasingly seek sustainable solutions for products that require strong adhesion yet can be easily repaired and recycled.

The need for such an adhesive is becoming more urgent in various sectors, including electronics and automotive manufacturing. Traditional adhesives often complicate repairs and recycling efforts because they bond materials so securely that separating them can damage components. The new adhesive addresses this issue by enabling users to selectively detach bonded parts when illuminated, simplifying the process and reducing waste.

In addition to its ability to peel away cleanly, the adhesive can be reactivated for rebonding. This is achieved through a two-step process: heating the adhesive and exposing it to a second ultraviolet wavelength, which resets its molecular interactions. This dual functionality makes the adhesive not only versatile but also highly efficient for repeated use, potentially saving costs for manufacturers and consumers alike.

The implications of this development are significant. As the demand for sustainable materials grows, this adhesive could play a pivotal role in reducing the environmental impact of discarded products. If commercialized, it may transform how industries approach assembly, repair, and recycling, contributing to a circular economy.

Read Full Story at Phys.org โ†’
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