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March 6, 2026Macromolecules0 citations

Traceless Staudinger–Bertozzi Ligation for Postpolymerization Modification

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JBJack E. BowmanAPAbbey PiatkowskiJPJoshua G. Pemberton

Key Points

  • The aim is to explore traceless Staudinger-Bertozzi ligation in polymer synthesis for developing functional materials.
  • Preparation of styrene-based polymers with pendant phosphines using RAFT polymerization
  • Efficient traceless SBL with different azides
  • Synthesis of redox-active, water-solubilizing, and fluorescent polymers
  • Successfully created polymers that are free from toxic residues
  • Developed fluorescent polymers for live-cell imaging probes
  • Showed efficient modification of polymers that traditional methods couldn't achieve

Abstract

Click chemistry is an integral component of the modern polymer synthesis toolbox. It can be used to create functional materials with precise control over structure. Many click chemistries have been investigated, including azide–alkyne cycloadditions, thiol–ene chemistry, and Staudinger-Bertozzi ligations (SBL). However, traceless Staudinger–Bertozzi ligation, which yields materials free of potentially toxic and reactive phosphorus-containing residues, is virtually unexplored in the polymer materials arena. Herein, we prepare styrene-based polymers with pendant phosphines on each repeating unit capable of undergoing traceless SBL using reversible addition–fragmentation chain-transfer (RAFT) polymerization. These polymers undergo efficient traceless SBL with a variety of azides. Our proof-of-concept study includes the preparation of redox-active, water-solubilizing, and fluorescent polymers as well as styrene-functionalized polymers that cannot be accessed by direct polymerization. Our fluorescent polymers were effective as conjugates for the design of live-cell imaging probes, demonstrating the potential of this class of polymers as a platform for the straightforward synthesis of polymeric cell imaging agents. In conducting this study, we have made a valuable addition to the click chemistry toolbox for polymer synthesis.

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Cite This Study

Bowman et al. (2026) studied this question.

synapsesocial.com/papers/69aa7008531e4c4a9ff59694https://doi.org/10.1021/acs.macromol.6c00235
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