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金表面螺旋状和全反式聚乙二醇封端组装体中的分子取向:从头算建模结果

Molecular orientation in helical and all-trans oligo(ethylene glycol)-terminated assemblies on gold: results of ab initio modeling.

作者信息

Malysheva L, Onipko A, Valiokas R, Liedberg B

机构信息

Bogolyubov Institute for Theoretical Physics, Kiev, 03143, Ukraine.

出版信息

J Phys Chem A. 2005 Sep 1;109(34):7788-96. doi: 10.1021/jp052395k.

Abstract

The structural properties of self-assembled monolayers (SAMs) of oligo(ethylene glycol) (OEG)-terminated and amide-containing alkanethiols (HS(CH(2))(15)CONH(CH(2)CH(2)O)(6)H and related molecules with shorter alkyl or OEG portions) on gold are addressed. Optimized geometry of the molecular constituents, characteristic vibration frequencies, and transition dipole moments are obtained using density-functional theory methods with gradient corrections. These data are used to simulate IR reflection-absorption (RA) spectra associated with different OEG conformations. It is shown that the positions and relative intensities of all characteristic peaks in the fingerprint region are accurately reproduced by the model spectra within a narrow range of the tilt and rotation angles of the alkyl plane, which turns out to be nearly the same for the helical and all-trans OEG conformations. In contrast, the tilt of the OEG axis changes considerably under conformational transition from helical to all-trans OEG. By means of ab initio modeling, we also clarify other details of the molecular structure and orientation, including lateral hydrogen bonding, the latter of which is readily possessed by the SAMs in focus. These results are crucial for understanding phase and folding characteristics of OEG SAMs and other complex molecular assemblies. They are also expected to contribute to an improved understanding of the interaction with water, ions, and ultimately biological macromolecules.

摘要

研究了以寡聚(乙二醇)(OEG)为端基且含酰胺基的链烷硫醇(HS(CH₂)₁₅CONH(CH₂CH₂O)₆H以及具有较短烷基或OEG部分的相关分子)在金表面自组装单分子层(SAMs)的结构性质。使用具有梯度校正的密度泛函理论方法获得了分子组成部分的优化几何结构、特征振动频率和跃迁偶极矩。这些数据用于模拟与不同OEG构象相关的红外反射吸收(RA)光谱。结果表明,在烷基平面的倾斜角和旋转角的窄范围内,模型光谱能准确再现指纹区所有特征峰的位置和相对强度,事实证明,螺旋状和全反式OEG构象的该范围几乎相同。相比之下,从螺旋状OEG到全反式OEG的构象转变过程中,OEG轴的倾斜度变化很大。通过从头算建模,我们还阐明了分子结构和取向的其他细节,包括横向氢键,而本文所关注的SAMs很容易形成横向氢键。这些结果对于理解OEG SAMs和其他复杂分子聚集体的相和折叠特性至关重要。预计它们也将有助于更好地理解与水、离子以及最终与生物大分子的相互作用。

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