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孤立一水合物中的硫氢键:糠硫醇与糠醇。

Sulfur Hydrogen Bonding in Isolated Monohydrates: Furfuryl Mercaptan versus Furfuryl Alcohol.

机构信息

Departamento de Química FísicayQuímica Inorgánica, Facultad de Ciencias, Universidad de Valladolid, 47011, Valladolid, Spain.

Departamento de Electrónica, ETSIT, Universidad de Valladolid, 47011, Valladolid, Spain.

出版信息

Chemistry. 2018 May 2;24(25):6564-6571. doi: 10.1002/chem.201705727. Epub 2018 Mar 7.

DOI:10.1002/chem.201705727
PMID:29447431
Abstract

The hydrogen bonds involving sulfur in the furfuryl mercaptan monohydrate are compared with the interactions originating from the hydroxyl group in furfuryl alcohol. The dimers with water were created in a supersonic jet expansion and characterized using microwave spectroscopy and supporting molecular orbital calculations. In furfuryl alcohol-water, a single isomer is observed, in which the water molecule forms an insertion complex with two simultaneous hydrogen bonds to the alcohol (O-H⋅⋅⋅O ) and the ring oxygen (O -H⋅⋅⋅O ). When the alcohol is replaced by a thiol group in furfuryl mercaptan-water, two isomers are observed, with the thiol group preferentially behaving as proton donor to water. The first isomer is topologically equivalent to the alcohol analog but the stronger hydrogen bond is now established by water and the ring oxygen, assisted by a thiol S-H⋅⋅⋅O hydrogen bond. In the second isomer the sulfur group accepts a proton from water, forming a O -H⋅⋅⋅S hydrogen bond. Binding energies for the mercaptan-water dimer are predicted around 12 kJ mol weaker than in the alcohol hydrate (B3LYP-D3(BJ)). The non-covalent interactions in the furfuryl dimers are dominantly electrostatic according to a SAPT(0) energy decomposition, but with increasing dispersion components in the mercaptan dimers, which are larger for the isomer with the weaker O -H⋅⋅⋅S interaction.

摘要

糠基硫醇一水合物中涉及硫的氢键与糠醇中羟基引起的相互作用进行了比较。在超音速射流膨胀中形成了带有水的二聚体,并通过微波光谱学和支持的分子轨道计算进行了表征。在糠醇-水中,观察到单一异构体,其中水分子与醇(O-H····O)和环氧(O-H····O)同时形成两个插入配合物。当醇被糠基硫醇取代时,在糠基硫醇-水中观察到两种异构体,其中硫醇基团优先作为质子供体与水反应。第一个异构体在拓扑上与醇类似物等效,但更强的氢键现在由水和环氧形成,由硫醇 S-H····O 氢键辅助。在第二个异构体中,硫基团从水中接受质子,形成 O-H····S 氢键。用 B3LYP-D3(BJ) 预测硫醇-水二聚体的结合能约为 12 kJ/mol,比醇水合物弱。根据 SAPT(0)能量分解,糠基二聚体中的非共价相互作用主要是静电相互作用,但在硫醇二聚体中,随着色散分量的增加,对于 O-H····S 相互作用较弱的异构体,色散分量更大。

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