Controlled degradation of chemically stable poly(aryl ethers) via directing group-assisted catalysis

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Abstract

To establish a sustainable society, the development of polymer materials capable of reverting into monomers on demand is crucial. Traditional methods rely on breaking labile bonds such as esters in the main chain, which limits applicability to polymers that consist of robust covalent bonds. We found that the integration of directing groups allowed the engineering of resilient polymers with built-in recyclability. Our study showcases phenylene ether-based polymers fortified with directing groups, which can be selectively disassembled under nickel catalysts via selective cleavage of carbon-oxygen bonds. Notably, these polymers exhibit exceptional chemical stability towards acids, bases, and oxidizing agents, while being degradable to well-defined, repolymerizable molecules in the presence of a catalyst. Our findings allow for the development of next-generation polymer materials that are chemically recyclable by design.

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Ogawa, S., Morita, H., Hsu, Y. I., Uyama, H., & Tobisu, M. (2024). Controlled degradation of chemically stable poly(aryl ethers) via directing group-assisted catalysis. Chemical Science, 15(42), 17556–17561. https://doi.org/10.1039/d4sc04147j

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