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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Phototautomeric Reaction, Tautomerism, and Infrared Spectra of 6-Thiopurine. Experimental Matrix Isolation and Quantum-Mechanical (Conventional ab Initio and Density-Functional Theory) Studies
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Phototautomeric Reaction, Tautomerism, and Infrared Spectra of 6-Thiopurine. Experimental Matrix Isolation and Quantum-Mechanical (Conventional ab Initio and Density-Functional Theory) Studies

机译:6-硫嘌呤的光互变异构反应,互变异构和红外光谱。实验矩阵隔离和量子力学(传统的从头算和密度泛函理论)研究

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摘要

The infrared spectra of 6-thiopurine (6-mercaptopurine) isolated in Ar and N_2 low-temperature matrices show that the molecule exists as a mixture of thione N(2)H, N(7)H and thiol N(9)H tautomers. The photoreaction converting the thione N(1)H,N(7)H from of the compound into the thiol N(7)H form is observed for the matrix-isolated species. The assignments of the substrate to the thione N(1)H, N(7)H form and the photoproduct to the thiol N(7)H form are confirmed by good agreement between the experimental infrared spectra and the spectra theoretically predicted at the DFT (B3LYP)/6-31 G(d,p) level. The thiol N(9)H tautomer is photo chemically stable under the conditions of UV irradiation applied in the experiment (#lambda# > 320 nm). The experimentally estimated ratio of tautomers in the matrix (non-UV-irradiated)[thiol N(9)H][thione N(1)H, N(7)H] = 0.24 correlates well with the theoretical estimate of the relative energies of the tautomeric forms of the compound predicted at conventional ab initio calculations (total energies including electronic energies the compound predicted at conventional ab initio calculations (total energies including electronic energies calculated at the Hartree-Fock (HF)/6-31 G(d,p) level corrected for electron-correlation contributions at the MP4(SDQ)/6-31G(d,p)level and zero-point energies at the HF/6-31 G(d,p) level).
机译:在Ar和N_2低温基质中分离出的6-硫嘌呤(6-巯基嘌呤)的红外光谱表明,该分子以硫酮N(2)H,N(7)H和硫醇N(9)H互变异构体的混合物形式存在。对于基质分离的物质,观察到将化合物的硫酮N(1)H,N(7)H从该化合物转化为硫醇N(7)H的光反应。通过实验红外光谱与理论上在DFT上预测的光谱之间的良好一致性来确认底物对硫酮N(1)H,N(7)H形式的分配以及光产物对硫醇N(7)H形式的分配(B3LYP)/ 6-31 G(d,p)等级。 N硫醇N(9)H互变异构体在实验中应用的紫外线辐射条件下(#lambda#> 320 nm)具有光化学稳定性。实验估计的互变异构体在基质中的比例(非紫外线照射)[硫醇N(9)H] [硫酮N(1)H,N(7)H] = 0.24与相对能量的理论估计值具有很好的相关性常规从头算中预测的化合物的互变异构形式(包括电子能量的总能量)常规从头算中预测的化合物的互变异构形式(包括在Hartree-Fock(HF)/ 6-31 G(d, p)校正了MP4(SDQ)/ 6-31G(d,p)的电子相关性和HF / 6-31 G(d,p)的零点能量的电子水平)。

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