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全甲基化β-环糊精-水非共价复合物质子化的红外多光子解离光谱和密度泛函理论(DFT)研究

Infrared multiple photon dissociation spectroscopy and density functional theory (DFT) studies of protonated permethylated β-cyclodextrin-water non-covalent complexes.

作者信息

Lee Sung-Sik, Park Soojin, Kim Ju-Young, Kim Hye-Rim, Lee Sungyul, Oh Han Bin

机构信息

Department of Applied Chemistry, Kyung Hee University, Gyeonggi 446-701, Korea.

出版信息

Phys Chem Chem Phys. 2014 May 14;16(18):8376-83. doi: 10.1039/c3cp54841d.

DOI:10.1039/c3cp54841d
PMID:24658048
Abstract

We present infrared multiple photon dissociation (IRMPD) spectroscopy and quantum chemical calculation results for the protonated permethylated β-cyclodextrin (CD)-water non-covalent complex, the simplest β-CD non-covalent complex, in the gas-phase. The IRMPD spectrum in the region 2700-3750 cm(-1) consisted of three strong peaks at 3096, 3315, and 3490 cm(-1). These spectral features in the experimental IRMPD spectrum were compared with a large set of infrared absorption spectra predicted using density functional theory (DFT) calculations for the protonated β-CD-water complex. Complex III (see ), in which the water molecule (at the primary rim) and the proton (at the secondary rim) were separated, was found to suitably reflect the main spectral characteristics found in the experimental IRMPD spectrum. The absence of the homodromic hydrogen bond ring, due to replacement of hydroxyl groups with methoxy groups in permethylated β-CD, rendered the primary rim open compared with the unmodified β-CD 'one-gate-closed' lowest energy conformer. This study demonstrates that IRMPD studies combined with DFT theoretical calculations can be a good method for studying molecular interactions of large host-guest pairs.

摘要

我们展示了气相中质子化全甲基化β-环糊精(CD)-水非共价复合物(最简单的β-CD非共价复合物)的红外多光子解离(IRMPD)光谱和量子化学计算结果。2700 - 3750 cm⁻¹区域的IRMPD光谱由3096、3315和3490 cm⁻¹处的三个强峰组成。将实验IRMPD光谱中的这些光谱特征与使用密度泛函理论(DFT)计算预测的质子化β-CD - 水复合物的大量红外吸收光谱进行了比较。发现复合物III(见图),其中水分子(在主边缘)和质子(在次边缘)分离,能够很好地反映实验IRMPD光谱中发现的主要光谱特征。由于全甲基化β-CD中羟基被甲氧基取代,不存在同向氢键环,与未修饰的β-CD“一门关闭”的最低能量构象相比,主边缘是开放的。这项研究表明,IRMPD研究与DFT理论计算相结合可以成为研究大型主客体对分子相互作用的好方法。

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