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February 11, 2026Angewandte Chemie International Edition3 citationsOpen Access

Near‐Infrared Photothermal Polymerization of Thioctic Acid Triggered by Polyoxometalate Crosslinker

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SWShuangyu WuHWHongxue WangBLB. Li

Key Points

  • The study aims to improve the polymerization process of thioctic acid using a near-infrared light-activated crosslinker.
  • Utilized a reduced polyoxometalate complex as both a photothermal and cross-linking agent.
  • Conducted polymerization of thioctic acid under near-infrared light irradiation.
  • Analyzed the distribution of photothermal agents in the polymerization matrix.
  • Achieved uniform heat generation leading to improved polymerization efficiency.
  • Demonstrated the formation of C─S bonds that enhance polymer stability and re-processability.
  • Developed TA-based adhesives and elastomers that can be remelted or repaired via NIR light.

Abstract

ABSTRACT The monomer conversion rate of thioctic acid (TA) and the cross‐linking degree of polymer chains significantly influence the performance of materials, making them important research topics. Herein, by selecting a reduced polyoxometalate complex modified with 1‐allylpyridinium cations, which exhibits strong near‐infrared (NIR) light absorption capability, as both photothermal agent and cross‐linking agent, the polymerization of TA is successfully achieved under NIR light irradiation. The incorporation of photothermal agents results in their multiple dispersion throughout the polymerization matrix, facilitating uniform internal heat generation and inside‐out thermal diffusion. This mechanism significantly shortens the heat conduction pathway and effectively mitigates the inhomogeneous polymerization typically caused by temperature gradients inherent in conventional heating methods. Moreover, the C─S bonds formed via the reaction between the C═C groups and the disulfide linkages of TA not only suppress depolymerization but also serve as robust anchoring sites within the polymer network. By tuning the monomer composition, TA‐based adhesives and elastomers are successfully fabricated, exhibiting excellent re‐processability through NIR‐triggered remelting or repair. The NIR‐light‐regulated polymerization approach offers distinct advantages, including operational simplicity, rapid response, and spatiotemporal control, thereby presenting a promising strategy for the synthesis of high‐performance TA‐based polymers.

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Cite This Study

Wu et al. (2026) studied this question.

synapsesocial.com/papers/698c1bdc267fb587c655dd3bhttps://doi.org/10.1002/anie.202523605
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