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5-溴胞嘧啶的生物分子:FT-IR 和 FT-Raman 光谱以及 DFT 计算。在孤立状态下鉴定互变异构体,并模拟固态光谱。

The biomolecule of 5-bromocytosine: FT-IR and FT-Raman spectra and DFT calculations. Identification of the tautomers in the isolated state and simulation the spectra in the solid state.

机构信息

Departamento de Química-Física I, Facultad de Ciencias Químicas, Universidad Complutense, Madrid 28040, Spain.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2013 Jul;111:104-22. doi: 10.1016/j.saa.2013.03.022. Epub 2013 Mar 22.

Abstract

An accurate assignment of the IR spectrum in Ar matrix of 5-bromocytosine and of the IR and Raman spectra in the solid state was carried out. For this purpose Density functional calculations (DFTs) were performed to clarify wavenumber assignments of the experimental observed bands. The calculated values were scaled using scaling equations and they were compared with IR and Raman experimental data. Good reproduction of the experimental wavenumbers is obtained and the% error is very small in the majority of cases. In the isolated state all the tautomer forms of 5-bromocytosine were determined and optimized. The wavenumbers corresponding to C1 and C2b tautomers were identified and assigned in the IR experimental spectrum reported in Ar matrix. Our study confirms the existence of at least two tautomers, the amino-oxo and the amino-hydroxy in the isolated state. In the solid state the FT-IR and FT-Raman spectra of 5-bromocytosine in the powder form were recorded in the region 400-4000 cm(-1) and 50-3500 cm(-1), respectively. The unit cell found in the crystal was simulated as a tetramer form in three tautomers. Thus, it has been possible to assign all the 33 normal modes of vibration. The study indicates that the features, that are the characteristic of the vibrational spectra of cytosine, are retained by the spectra of 5-bromocytosine and it exists in the solid phase in the amino-oxo form.

摘要

对 5-溴胞嘧啶在 Ar 基质中的 IR 光谱以及固态下的 IR 和 Raman 光谱进行了准确的分配。为此,进行了密度泛函计算(DFTs)以澄清实验观察到的带的波数分配。计算值使用缩放方程进行缩放,并与 IR 和 Raman 实验数据进行了比较。实验波数得到了很好的再现,大多数情况下的%误差非常小。在孤立状态下,确定并优化了 5-溴胞嘧啶的所有互变异构形式。在 Ar 基质中报道的 IR 实验光谱中,识别并分配了 C1 和 C2b 互变异构体的相应波数。我们的研究证实,在孤立状态下至少存在两种互变异构体,即氨基-氧和氨基-羟。在固态下,以粉末形式记录了 5-溴胞嘧啶的 FT-IR 和 FT-Raman 光谱,分别在 400-4000 cm(-1) 和 50-3500 cm(-1)范围内。在晶体中发现的单元被模拟为三个互变异构体的四聚体形式。因此,能够分配所有 33 个正则振动模式。研究表明,由胞嘧啶振动光谱特征的特征保留在 5-溴胞嘧啶的光谱中,并且它以氨基-氧形式存在于固态中。

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