噻吩在氢键形成中是作为芳香π型电子给体还是n型电子给体?

S. Cooke, G. Corlett, A. Legon
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引用次数: 36

摘要

利用脉冲喷嘴傅里叶变换微波光谱仪,研究了噻吩与氯化氢络合物中[32S]-噻吩··H35Cl、[32S]-噻吩··H37Cl、[32S]-噻吩··D35Cl和[34S]-噻吩··H35Cl四个同位素体的旋转光谱。分别测定了旋转常数、离心畸变常数和cl -核四极耦合常数χaa、χbb-χcc和χab。对光谱常数的解释得出结论,所观察到的配合物具有Cs对称性,HCl的Cl原子几乎位于噻吩环的质量中心的正上方,而HCl的H原子指向S原子附近的π电子密度。S··H - cl原子核几乎共线[φ =0.9(6)°],但相对较大的距离r(S··H)=2.7474(29) A表明S··H相互作用较弱。噻吩的C2轴与S···H核间线的夹角φ为64.53(16)°。噻吩环质心(*)到Cl的距离r(*···Cl)=3.693 A,角度S*Cl =98.9°,与噻吩··Ar中的对应量非常相似。事实上,通过对噻吩··Ar、噻吩··HCl、苯··Ar和苯··HCl的比较,发现这四种配合物的几何形状之间存在很强的家族关系。结果表明,噻吩中S携带的非成键电子对亲核性非常弱,当噻吩与HCl形成氢键时,它是通过芳香π-电子系统形成的。在这方面,噻吩类似于苯,与它的氧类似物呋喃形成鲜明对比。呋喃与HCl通过O上的非成键电子对形成C2v对称的氢键配合物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rotational spectrum of thiophene···HCl Does thiophene act as an aromatic π-type electron donor or an n-type electron donor in hydrogen-bond formation?
The rotational spectra of the four isotopomers [32S]-thiophene···H35Cl, [32S]-thiophene···H37Cl, [32S]-thiophene···D35Cl and [34S]-thiophene···H35Cl of a complex formed between thiophene and hydrogen chloride have been observed by using a pulsed-nozzle, Fourier-transform microwave spectrometer. Rotational constants, centrifugal distortion constants and Cl-nuclear quadrupole coupling constants χaa, χbb-χcc and χab were determined. Interpretation of the spectroscopic constants led to the conclusion that the observed complex has Cs symmetry, with the Cl atom of HCl lying almost directly above the centre of mass of the thiophene ring but with the H atom of HCl pointing at the π-electron density near to the S atom. The S···H–Cl nuclei are almost collinear [ϑ=0.9(6)°] but the relatively large distance r(S···H)=2.7474(29) A indicates that the S···H interaction is weak. The angle φ between the C2 axis of thiophene and the S···H internuclear line was found to be 64.53(16)°. The distance r(*···Cl)=3.693 A from the centre of mass (*) of the thiophene ring to Cl and the angle (S*Cl)=98.9° are very similar in magnitude to the corresponding quantities in thiophene···Ar. Indeed, a comparison of thiophene···Ar, thiophene···HCl, benzene···Ar and benzene···HCl revealed a strong family relationship between the geometries of these four complexes. It is concluded that the non-bonding electron pair carried by S in thiophene is so weakly nucleophilic that when thiophene forms a hydrogen bond with HCl it does so via the aromatic π-electron system. In this respect, thiophene resembles benzene and is in stark contrast to its oxygen analogue, furan, with which HCl forms a hydrogen-bonded complex of C2v symmetry via the non-bonding electron pair on O.
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