Dual Chalcogen-Bonding Interactions for the Conformational Control of Urea**

被引:1
|
作者
Inoue T. [1 ]
Ota M. [1 ]
Amijima Y. [1 ]
Takahashi H. [1 ]
Hamada S. [1 ]
Nakamura S. [2 ]
Kobayashi Y. [1 ]
Sasamori T. [3 ]
Furuta T. [1 ]
机构
[1] Department of Pharmaceutical Chemistry, Kyoto Pharmaceutical University, Kyoto, Yamashina-ku
[2] Department of Pharmacognosy, Kyoto Pharmaceutical University, Kyoto, Yamashina-ku
[3] Department of Chemistry Faculty of Pure and Applied Sciences, University of Tsukuba, Ibaraki, Tsukuba
关键词
acidity; chalcogen-bonding interaction; conformational control; tweezer-shaped molecule; urea;
D O I
10.1002/chem.202302139
中图分类号
学科分类号
摘要
Dual chalcogen-bonding interactions is proposed as a novel means for the conformational control of urea derivatives. The formation of a chalcogen-bonding interaction at both sides of the urea carbonyl group was unambiguously confirmed by X-ray diffraction as well as computational studies including non-covalent interaction (NCI) plot index analysis, quantum theory of atoms in molecules (QTAIM) analysis, and natural bond orbital (NBO) analysis via DFT calculations. By virtue of this dual interaction, urea derivatives that bear chalcogen atoms (X=S and Se) adopt a planar structure via the carbonyl oxygen (O) with an X⋅⋅⋅O⋅⋅⋅X arrangement on the same side of the molecule. The rigidity of the conformational lock was evaluated using the molecular arrangement in the crystal and the rotational barrier of benzochalcogenophene ring, which indicated a stronger conformational lock in benzoselenophene than in benzothiophene urea derivatives. Furthermore, the acidity of the urea derivatives increases according to the Lewis-acidic properties of the chalcogen-bonding interactions, whereby benzoselenophene urea is more acidic than benzothiophene urea. Tweezer-shaped urea derivatives were prepared, and their stereostructure proved the viability of the conformational control for defining the location of the substituents on the urea framework. © 2023 Wiley-VCH GmbH.
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