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烯丙硫醇的微波、红外和拉曼光谱、r0 结构参数、构象稳定性和振动归属。

Microwave, infrared, and Raman spectra, r0 structural parameters, conformational stability, and vibrational assignment of allyl thiol.

机构信息

Department of Chemistry, University of Missouri-Kansas City, Kansas City, MO 64110, USA.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2012 Feb 15;87:214-27. doi: 10.1016/j.saa.2011.11.041. Epub 2011 Nov 22.

DOI:10.1016/j.saa.2011.11.041
PMID:22178242
Abstract

FT-microwave spectrum of allyl thiol, H(2)CCHCH(2)SH, has been recorded, and 19 transitions have been assigned for the most abundant isotopologue of Gg conformer, and the rotational constants have been determined; A=20,041.439 (4), B=2795.830 (1), C=2701.084 (1). From the determined microwave rotational constants and ab initio MP2(full)/6-311+G(d,p) predicted structural values, adjusted r(0) parameters are reported with distances (Å): rCC=1.343 (3), rC-C=1.496 (3), rC-S=1.827 (3) and angles (°) ∠CCC=123.4 (5), ∠CCS=112.5 (5), and τC(γ)C(β)C(α)S=118.7 (5). Variable temperature (-55 to -100°C) infrared spectra (3600-400cm(-1)) were recorded of allyl thiol in liquid xenon and the Gg conformer was determined to be the most stable form. The enthalpy differences relative to the Gg form are for Cg 120±9cm(-1) (1.44±0.11kJ/mol), for Gg' 337±34cm(-1) (4.03±0.41kJ/mol), and for Gt 360±36cm(-1) (4.31±0.43kJ/mol). The relative amounts present at ambient temperature are Gg 52±1%, Cg 29±1%, Gg' 10±1%, and Gt 9±1%. The conformational stabilities have been predicted from ab initio calculations with many basis sets up to aug-cc-pVTZ and the predicted stabilities are in agreement with the experimentally determined order. Vibrational assignments are reported with support by ab initio predictions and results are discussed.

摘要

烯丙硫醇的 FT-微波光谱已被记录下来,并且为 Gg 构象的最丰富同位素标记了 19 个跃迁,并确定了旋转常数;A=20.041.439(4),B=2795.830(1),C=2701.084(1)。从确定的微波旋转常数和从头算 MP2(全)/6-311+G(d,p)预测的结构值,报告了调整后的 r(0)参数,距离(Å):rCC=1.343(3),rC-C=1.496(3),rC-S=1.827(3)和角度(°)∠CCC=123.4(5),∠CCS=112.5(5),和τC(γ)C(β)C(α)S=118.7(5)。烯丙硫醇在液态 xenon 中的变温(-55 至-100°C)红外光谱(3600-400cm(-1))被记录下来,确定 Gg 构象为最稳定的形式。相对于 Gg 形式的焓差为 Cg 120±9cm(-1)(1.44±0.11kJ/mol),Gg'337±34cm(-1)(4.03±0.41kJ/mol),和 Gt 360±36cm(-1)(4.31±0.43kJ/mol)。在环境温度下存在的相对量为 Gg 52±1%,Cg 29±1%,Gg'10±1%,和 Gt 9±1%。构象稳定性已从从头算计算中预测出来,使用了许多基组,直到 aug-cc-pVTZ,预测的稳定性与实验确定的顺序一致。振动分配已报告,并得到了从头算预测的支持,结果进行了讨论。

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