4-Hydroxyproline-Derived Sustainable Polythioesters: Controlled Ring-Opening Polymerization, Complete Recyclability, and Facile Functionalization

Jingsong Yuan(Peking University), Wei Xiong(Peking University), Xuhao Zhou(Peking University), Yi Zhang(Peking University), Dong Shi(Peking University), Zichen Li(Peking University), Hua Lu(Peking University)
Journal of the American Chemical Society
March 20, 2019
Cited by 306Open Access
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Abstract

and narrow dispersities generally below 1.15. The properties of PTEs can be readily adjusted by copolymerization and/or pre/post-functionalization on the side chains. Selective and complete depolymerizations of the PTEs in dilute solution at ambient to modest temperatures recycle clean monomers. Density functional theory (DFT) calculation of model reactions provides mechanistic insights and highlights the importance of judicious molecular design. Taken together, the unique ROP/depolymerization chemistry of such PTEs may offer a sustainable solution for creating and manufacturing high-value materials such as optical/photochemical plastics, self-immolative polymers, and degradable biomaterials under situations where recycle and reuse are indispensable.


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