The Microwave Rotational Electric Resonance (RER) Spectrum of Benzothiazole

Author:

Hadki Hamza El12,Koziol Kenneth J.2,Kabbaj Oum Keltoum1,Komiha Najia1,Kleiner Isabelle3,Nguyen Ha Vinh Lam24ORCID

Affiliation:

1. Laboratory of Spectroscopy, Molecular Modeling, Materials, Nanomaterials, Water, and Environment, Faculty of Sciences, Mohammed V University, Av Ibn Battouta, Rabat B.P. 1014, Morocco

2. Univ Paris Est Creteil and Université Paris Cité, CNRS, LISA, 94010 Créteil, France

3. Université Paris Cité and Univ Paris Est Creteil, CNRS, LISA, 75013 Paris, France

4. Institut Universitaire de France (IUF), 75231 Paris, France

Abstract

The microwave spectra of benzothiazole were measured in the frequency range 2–26.5 GHz using a pulsed molecular jet Fourier transform microwave spectrometer. Hyperfine splittings arising from the quadrupole coupling of the 14N nucleus were fully resolved and analyzed simultaneously with the rotational frequencies. In total, 194 and 92 hyperfine components of the main species and the 34S isotopologue, respectively, were measured and fitted to measurement accuracy using a semi-rigid rotor model supplemented by a Hamiltonian accounting for the 14N nuclear quadrupole coupling effect. Highly accurate rotational constants, centrifugal distortion constants, and 14N nuclear quadrupole coupling constants were deduced. A large number of method and basis set combinations were used to optimize the molecular geometry of benzothiazole, and the calculated rotational constants were compared with the experimentally determined constants in the course of a benchmarking effort. The similar value of the χcc quadrupole coupling constant when compared to other thiazole derivatives indicates only very small changes of the electronic environment at the nitrogen nucleus in these compounds. The small negative inertial defect of −0.056 uÅ2 hints that low-frequency out-of-plane vibrations are present in benzothiazole, similar to the observation for some other planar aromatic molecules.

Funder

European project “International Network for a Research and Innovation Staff Exchange” (RISE), Marie Curie Action

European Union

GENCI-CINES

Publisher

MDPI AG

Subject

Chemistry (miscellaneous),Analytical Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Molecular Medicine,Drug Discovery,Pharmaceutical Science

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