Time-Evolving Chirality Loss in Molecular Photodissociation Monitored by X-ray Circular Dichroism Spectroscopy

  • Nam, Yeonsig; 
  • Cho, Daeheum; 
  • Gu, Bing; 
  • Rouxel, Jeremy R.; 
  • Keefer, Daniel; 
  • 외 2명
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초록

The ultrafast photoinduced chirality loss of 2-iodobutane is studied theoretically by time- and frequency-resolved X-ray circular dichroism (TRXCD) spectroscopy. Following an optical excitation, the iodine atom dissociates from the chiral center, which we capture by quantum non-adiabatic molecular dynamics simulations. At variable time delays after the pump, the resonant X-ray pulse selectively probes the iodine and carbon atom involved in the chiral dissociation through a selected core-to-valence transition. The TRXCD signal at the iodine L1 edge accurately captures the timing of C-I photodissociation and thereby chirality loss, c.a 70 fs. The strong electric dipole-electric quadrupole (ED-EQ) response makes this signal particularly sensitive to vibronic coherence at the high X-ray regime. At the carbon K-edges, the signals monitor the molecular chirality of the 2-butyl radical photoproduct and the spin state of the iodine atom. The ED-EQ response is masked under the strong electric dipole-magnetic dipole response, making this signal intuitive for the electronic population. The evolution of the core electronic states and its chiral sensitivity is discussed. Overall, the element-specific TRXCD signal provides a detailed picture of molecular dynamics and offers a unique sensitive window into the time-dependent chirality of molecules.

키워드

GAUSSIAN-BASIS SETS; METHYL-IODIDE; ETHYL IODIDE; DYNAMICS; CH3I
제목
Time-Evolving Chirality Loss in Molecular Photodissociation Monitored by X-ray Circular Dichroism Spectroscopy
저자
Nam, Yeonsig; Cho, Daeheum; Gu, Bing; Rouxel, Jeremy R.; Keefer, Daniel; Govind, Niranjan; Mukamel, Shaul
DOI
10.1021/jacs.2c08458
발행일
2022-11-09
유형
Article
저널명
Journal of the American Chemical Society
권
144
호
44
페이지
20400 ~ 20410