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March 4, 2026Journal of the American Chemical Society2 citations

Steric Engineering of Phenanthrenequinone for Ultrafast and Tunable Visible Light-Induced Photoclick Reaction

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YFYouxin FuJYJian YinADAnna M. Doze

Key Points

  • This research aims to investigate steric engineering's impact on the kinetics of light-induced photoclick reactions using phenanthrenequinone.
  • Explored steric modifications at the ortho-phenyl position of phenanthrenequinone.
  • Conducted photocycloadditions using electron-rich alkenes under light activation.
  • Measured the dihedral angles and excited state energies in the modified compounds.
  • Steric modifications accelerated reaction rates by over 21-fold.
  • Achieved maximum rate constants of up to 11,300 M^-1 s^-1.
  • Demonstrated a novel encryption system utilizing spatially controlled photoclick reactions.

Abstract

Light-induced 9,10-phenanthrenequinone-electron-rich alkene (PQ-ERA) photocycloadditions are an attractive new type of photoclick reaction featuring fast conversions. However, the tunability of the reaction has hardly been investigated up to now. To this end, we explored steric engineering at the PQ ortho-phenyl position as a powerful, unprecedented means to drastically modulate kinetics. Introducing steric groups (e.g., 2,6-dimethyl in PQ-o2CH3) enforced large dihedral angles (69.5°) as a result of which the 1nπ* state became the lowest electronically excited singlet state S1 instead of the 1ππ* state, while retaining T1 as 3ππ*, the triplet lifetime was boosted and an ultrafast direct 4 + 2 photoclick reaction was enabled. Critically, steric groups accelerated rates by >21-fold (k2 up to 11,300 M-1 s-1), spanning 2 orders of magnitude. Leveraging this novel steric-kinetic relationship, we demonstrated a "burn-after-reading" encryption concept via spatially controlled photoclick and rapid erasure by uniform isoconversion. This demonstration of steric control over PQ-ERA photoclick efficiency provides a foundation for designing orthogonal ultrafast conjugation systems.

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Cite This Study

Fu et al. (2026) studied this question.

synapsesocial.com/papers/69a7cd0bd48f933b5eed9007https://doi.org/10.1021/jacs.5c21739
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