High-resolution synchrotron infrared spectroscopy of thiophosgene: The ν1, ν5, 2ν4, and ν2+2ν6 bands
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,Spectroscopy,Atomic and Molecular Physics, and Optics
Reference17 articles.
1. High-resolution synchrotron infrared spectroscopy of thiophosgene: The ν2 and ν4 fundamental bands near 500 cm−1
2. An effective Hamiltonian survey of the anharmonic vibrational state space of SCCl2 up to the dissociation energy
3. Rotational level involvement in the T1→S0 intersystem crossing transition in thiophosgene
4. Temporal characteristics of the S1 and T1 thiophosgene Cl2CS in the gas phase: Comparison of the T1 decay with theoretical predictions
5. Vibrational dynamics of SCCl2 from the zero point to the first dissociation limitElectronic supplementary information (ESI) available: Potential constants (table) conversion matrix from normal coordinates to Cartesian coordinates (table) and correlation between two normal coordinate force fields (figure). See http://www.rsc.org/suppdata/cp/b4/b403114h/
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2. FIR spectroscopy and DFT calculations involving 2-chloroethanol: Analysis of the ν19 + ν21←ν21 torsional hot band, and the solvated substitution reaction between ethylene glycol and hydrogen chloride;Journal of Molecular Structure;2020-10
3. Intersystem crossing in tunneling regime: T1 → S0 relaxation in thiophosgene;Physical Chemistry Chemical Physics;2020
4. Far-Infrared Synchrotron Spectroscopy and Quantum Chemical Calculations of the Potentially Important Interstellar Molecule, 2-Chloroethanol;The Journal of Physical Chemistry A;2019-01-16
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