4.5 Article

Reactions of Criegee Intermediates are Enhanced by Hydrogen-Atom Relay Through Molecular Design

Journal

CHEMPHYSCHEM
Volume 21, Issue 18, Pages 2056-2059

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/cphc.202000585

Keywords

chemical kinetics; Criegee intermediates; double hydrogen atom transfer reaction; quantum chemistry

Funding

  1. Academia Sinica [AS-CDA-106-M05]
  2. Ministry of Science and Technology, Taiwan [MOST 106-2113-M-001-026-MY3, MOST 108-2113-M-001-011, MOST 108-2639-M-009-001-ASP]

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We report a type of highly efficient double hydrogen atom transfer (DHAT) reaction. The reactivities of 3-aminopropanol and 2-aminoethanol towards Criegee intermediates (syn- andanti-CH3CHOO) were found to be much higher than those ofn-propanol and propylamine. Quantum chemistry calculation has confirmed that the main mechanism of these very rapid reactions is DHAT, in which the nucleophilic attack of the NH(2)group is catalyzed by the OH group which acts as a bridge of HAT. Typical gas-phase DHAT reactions are termolecular reactions involving two hydrogen bonding molecules; these reactions are typically slow due to the substantial entropy reduction of bringing three molecules together. Putting the reactive and catalytic groups in one molecule circumvents the problem of entropy reduction and allows us to observe the DHAT reactions even at low reactant concentrations. This idea can be applied to improve theoretical predictions for atmospherically relevant DHAT reactions.

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