Identifying Quantum Tunneling at Ambient Temperature through Rate–Driving Force Responsiveness

TL;DR

Summary:
- This paper details the experimental identification of quantum tunneling in a chemical reaction at ambient temperature, specifically focusing on the hydrodefluorination of a fluoroalkane.
- The authors utilize kinetic isotope effect (KIE) measurements and computational modeling to demonstrate that hydrogen atom transfer occurs via tunneling rather than traditional over-the-barrier mechanisms, challenging conventional assumptions about thermal reaction pathways.

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