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Article

Intramolecular OHO Hydrogen Bonding in Dibenzoylmethane Enol: Raman Spectroscopic and Quantum Chemical Study

by
Boris A. Kolesov
1,*,
Elena A. Pritchina
2 and
Aleksey Ya. Tikhonov
3
1
A.V. Nikolaev Institute of Inorganic Chemistry, Siberian Branch, Russian Academy of Sciences, 630090 Novosibirsk, Russia
2
Faculty of Natural Sciences, Novosibirsk National Research State University, 630090 Novosibirsk, Russia
3
N.N. Vorozhtsov Novosibirsk Institute of Organic Chemistry, Siberian Branch, Russian Academy of Sciences, 630090 Novosibirsk, Russia
*
Author to whom correspondence should be addressed.
Micro 2023, 3(1), 107-117; https://doi.org/10.3390/micro3010009
Submission received: 11 January 2023 / Revised: 25 January 2023 / Accepted: 28 January 2023 / Published: 30 January 2023

Abstract

In the present work, the intramolecular O-H···O hydrogen bonding in 3-hydroxy-1,3-diphenylprop-2-en-1-one (keto-enol form of dibenzoylmethane, DBM) was investigated. For this purpose, the Raman spectra of polycrystalline samples of ordinary (H-DBM) and deuterated (D-DBM) 3-hydroxy-1,3-diphenylprop-2-en-1-one in the temperature range of 5–300 K were measured. It was found that low-temperature hydrogen bonding is extremely strong, the proton and deuteron are located in the midpoint of the O···O segment, and their ground and first excited vibrational states are located above the barrier U0 between the local minima. The vibrational frequencies, in this case, are 1543 and 1709 cm−1 for the proton and 1045 and 1087 cm−1 for the deuteron. As the temperature rises and the barrier height increases in H-DBM, the zero-point vibrational state of the proton begins to move into one of the local minima at T > 50 K, while the excited state remains in the broad single-well potential. The same is observed in D-DBM, but with a significant temperature delay. Compounds with donor (−OCH3) and acceptor (−NO2) substituents in the phenyl ring were also synthesized and their spectra were obtained. Both results confirm existing ideas about the nature of the extremely strong hydrogen bond. The quantum-chemical calculation of the vibrational spectrum of H-DBM and D-DBM is consistent with the experimental results.
Keywords: β-diketones; intramolecular hydrogen bonding; infrared spectroscopy; Raman spectroscopy; isotope effects; quantum-chemical calculation β-diketones; intramolecular hydrogen bonding; infrared spectroscopy; Raman spectroscopy; isotope effects; quantum-chemical calculation

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MDPI and ACS Style

Kolesov, B.A.; Pritchina, E.A.; Tikhonov, A.Y. Intramolecular OHO Hydrogen Bonding in Dibenzoylmethane Enol: Raman Spectroscopic and Quantum Chemical Study. Micro 2023, 3, 107-117. https://doi.org/10.3390/micro3010009

AMA Style

Kolesov BA, Pritchina EA, Tikhonov AY. Intramolecular OHO Hydrogen Bonding in Dibenzoylmethane Enol: Raman Spectroscopic and Quantum Chemical Study. Micro. 2023; 3(1):107-117. https://doi.org/10.3390/micro3010009

Chicago/Turabian Style

Kolesov, Boris A., Elena A. Pritchina, and Aleksey Ya. Tikhonov. 2023. "Intramolecular OHO Hydrogen Bonding in Dibenzoylmethane Enol: Raman Spectroscopic and Quantum Chemical Study" Micro 3, no. 1: 107-117. https://doi.org/10.3390/micro3010009

APA Style

Kolesov, B. A., Pritchina, E. A., & Tikhonov, A. Y. (2023). Intramolecular OHO Hydrogen Bonding in Dibenzoylmethane Enol: Raman Spectroscopic and Quantum Chemical Study. Micro, 3(1), 107-117. https://doi.org/10.3390/micro3010009

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