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Theoretical study of intramolecular interactions in peri-substituted naphthalenes: Chalcogen and hydrogen bonds

机译:取代萘中分子内相互作用的理论研究:硫属元素和氢键

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摘要

A theoretical study of the peri interactions, both intramolecular hydrogen (HB) and chalcogen bonds (YB), in 1-hydroxy-8YH-naphthalene, 1,4-dihydroxy-5,8-di-YH-naphthalene, and 1,5-dihydroxy-4,8-di-YH-naphthalene, with Y = O, S, and Se was carried out. The systems with a OH:Y hydrogen bond are the most stable ones followed by those with a chalcogen O:Y interaction, those with a YH:O hydrogen bond (Y = S and Se) being the least stable ones. The electron density values at the hydrogen bond critical points indicate that they have partial covalent character. Natural Bond Orbital (NBO) analysis shows stabilization due to the charge transfer between lone pair orbitals towards empty Y-H that correlate with the interatomic distances. The electron density shift maps and non-covalent indexes in the different systems are consistent with the relative strength of the interactions. The structures found on the CSD were used to compare the experimental and calculated results.
机译:对1-羟基-8YH-萘,1,4-二羟基-5,8-二-YH-萘和1,5中的分子内氢(HB)和硫属元素键(YB)相互作用的理论研究进行Y = O,S和Se的-二羟基-4,8-二-YH-萘。具有OH:Y氢键的系统是最稳定的系统,其次是具有硫属元素O:Y相互作用的系统,具有YH:O氢键的系统(Y = S和Se)是最不稳定的系统。氢键临界点的电子密度值表明它们具有部分共价特征。自然键轨道(NBO)分析表明,由于孤对轨道之间的电荷向与原子间距离相关的空Y-H转移,电荷得以稳定。不同系统中的电子密度变化图和非共价指数与相互作用的相对强度一致。在CSD上找到的结构用于比较实验结果和计算结果。

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