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溶解于极性纳米团簇中的氢键复合物中质子转移模式的一维和二维红外光谱的计算研究。

Computational study of the one- and two-dimensional infrared spectra of a proton-transfer mode in a hydrogen-bonded complex dissolved in a polar nanocluster.

作者信息

Sow Chia Shen, Tomkins Joseph, Hanna Gabriel

机构信息

Department of Chemistry, University of Alberta, Edmonton, AB T6G 2G2 (Canada).

出版信息

Chemphyschem. 2013 Oct 7;14(14):3309-18. doi: 10.1002/cphc.201300610. Epub 2013 Aug 15.

DOI:10.1002/cphc.201300610
PMID:23946271
Abstract

The signatures of nanosolvation on the one- and two-dimensional (1D and 2D) IR spectra of a proton-transfer mode in a hydrogen-bonded complex dissolved in polar solvent molecule nanoclusters of varying size are elucidated by using mixed quantum-classical molecular dynamics simulations. For this particular system, increasing the number of solvent molecules successively from N=7 to N=9 initiates the transition of the system from a cluster state to a bulk-like state. Both the 1D and 2D IR spectra reflect this transition through pronounced changes in their peak intensities and numbers, but the time-resolved 2D IR spectra also manifest spectral features that uniquely identify the onset of the cluster-to-bulk transition. In particular, it is observed that in the 1D IR spectra, the relative intensities of the peaks change such that the number of peaks decreases from three to two as the size of the cluster increases from N=7 to N=9. In the 2D IR spectra, off-diagonal peaks are observed in the N=7 and N=8 cases at zero waiting time, but not in the N=9 case. It is known that there are no off-diagonal peaks in the 2D IR spectrum of the bulk version of this system at zero waiting time, so the disappearance of these peaks is a unique signature of the onset of bulk-like behavior. Through an examination of the trajectories of various properties of the complex and solvent, it is possible to relate the emergence of these off-diagonal peaks to an interplay between the vibrations of the complex and the solvent polarization dynamics.

摘要

通过使用混合量子经典分子动力学模拟,阐明了溶解在不同大小的极性溶剂分子纳米团簇中的氢键复合物中质子转移模式的一维和二维红外光谱上的纳米溶剂化特征。对于这个特定的系统,将溶剂分子数量从N = 7依次增加到N = 9会引发系统从团簇状态向类本体状态的转变。一维和二维红外光谱都通过其峰强度和数量的显著变化反映了这种转变,但时间分辨二维红外光谱还表现出独特识别团簇到本体转变开始的光谱特征。特别地,观察到在一维红外光谱中,随着团簇尺寸从N = 7增加到N = 9,峰的相对强度发生变化,使得峰的数量从三个减少到两个。在二维红外光谱中,在N = 7和N = 8的情况下,在零等待时间观察到非对角峰,但在N = 9的情况下未观察到。已知在该系统本体版本的二维红外光谱中,在零等待时间没有非对角峰,因此这些峰的消失是类本体行为开始的独特特征。通过检查复合物和溶剂各种性质的轨迹,可以将这些非对角峰的出现与复合物的振动和溶剂极化动力学之间的相互作用联系起来。

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