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February 22, 2026Advanced Synthesis & Catalysis0 citationsOpen Access

Alpha‐Ester Aryl Diazirines: Low‐Temperature Carbene Progenitors for Materials Applications

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KAKate AndersenNSNora StruchtrupASAdam Sylvain‐Stewart

Key Points

  • The aim is to synthesize and evaluate the properties of α-ester aryl diazirines as alternatives to trifluoromethyl diazirines.
  • Synthesis of α-ester aryl diazirines
  • Comparison of activation temperatures with trifluoromethyl diazirines
  • Evaluation of efficiency in C-H insertion reactions
  • α-Ester aryl diazirines activate at lower temperatures than trifluoromethyl variants.
  • Exhibit tunable activation properties and good efficiency in C-H insertion.
  • Potential applications in materials science and wound healing observed.

Abstract

Trifluoromethyl aryl diazirines are ubiquitous in chemical biology applications, and are increasingly used in materials science. While the electron‐withdrawing α ‐CF 3 group is known to stabilize the carbene resulting from diazirine activation, no alternative electron‐withdrawing groups have been systematically studied. Here, we describe the synthesis of the first α ‐ester aryl diazirines and show that they activate at lower temperatures than their trifluoromethyl‐containing analogs, while still permitting tunable activation and good efficiency in CH insertion reactions. We anticipate the use of α ‐ester aryl diazirines in materials science applications (due to their high insertion yield with a nonfunctionalized aliphatic model substrate) and biological wound healing (due to their ability to be thermally activated at < 37°C).

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Cite This Study

Andersen et al. (2026) studied this question.

synapsesocial.com/papers/699a9d8e482488d673cd37f8https://doi.org/10.1002/adsc.70242
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