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April 4, 2026Macromolecular Rapid Communications0 citations

Spontaneous Thiol‐Yne Click Polymerization of Aliphatic Thiols and Sulfonyl‐Activated Alkynes: A Facile Route to Z‐Stereoregular Poly(β‐thiolvinylsulfone)s

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XCXi ChenJZJ. Y. ZhangBSBo Song

Key Points

  • The aim is to develop a catalyst-free thiol-yne click polymerization method using aliphatic thiols and sulfonyl-activated alkynes for efficient polymer synthesis.
  • Developed a spontaneous polymerization method using bis(ethynylsulfone) monomers.
  • Used aliphatic dithiols for nucleophilic addition at room temperature.
  • Employed density functional theory calculations to support the reaction mechanism.
  • Achieved high molecular weights of poly(β-thiolvinylsulfone)s up to 97,300.
  • Obtained Z-stereoregularity levels reaching up to 97%.
  • Isolated yields reached up to 97%.

Abstract

Thiol-yne click polymerization has emerged as an efficient strategy for the synthesis of functional polymers. However, catalyst-free and spontaneous thiol-yne polymerization of aliphatic thiols remains challenging because of their low ionization efficiency and poor reactivity toward conventional alkynes under ambient conditions. Herein, we report a robust and spontaneous polymerization strategy employing bis(ethynylsulfone)s monomers, in which the strongly electron-withdrawing sulfonyl group effectively activates the ethynyl groups toward nucleophilic addition by aliphatic dithiols. This transformation proceeds smoothly at room temperature without the need for catalysts or initiators, affording poly(β-thiolvinylsulfone)s (PTVSs) with high molecular weights (up to 97 300) and remarkable Z-stereoregularity (up to 97%) in excellent isolated yields (up to 97%). Density functional theory calculations support a Michael-type addition mechanism, in which sulfonyl-thiol interactions direct anti-Markovnikov addition with high Z-selectivity. This work establishes a facile, efficient, and broadly applicable synthetic platform for the construction of structurally well-defined sulfur-rich macromolecules.

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Cite This Study

Chen et al. (2026) studied this question.

synapsesocial.com/papers/69d0af36659487ece0fa5120https://doi.org/10.1002/marc.70274
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