首页> 外文期刊>The Journal of Chemical Physics >Doubly resonant three-wave-mixing spectroscopy of a chiral coupled-chromophore system in solution:Coherent two-dimensional optical activity spectroscopy
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Doubly resonant three-wave-mixing spectroscopy of a chiral coupled-chromophore system in solution:Coherent two-dimensional optical activity spectroscopy

机译:溶液中手性偶合发色团体系的双共振三波混合光谱:相干二维光学活性光谱

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摘要

Theoretical descriptions of doubly resonant two-dimensional (2D) sum-frequency-generation (SFG) and difference-frequency-generation (DFG) spectroscopies of coupled-chromophore systems are presented.Despite that each electronic or vibrational chromophore is achiral,the interaction-induced chirality of a coupled multichromophore system in solution can be measured by using the doubly resonant 2D three-wave-mixing (3WM) spectroscopic method.An electronically coupled dimer,where each monomer is modeled as a simple two-level system,can have nonvanishing SFG (or DFG) properties,e.g.,susceptibility in frequency domain or nonlinear response function in time domain,if the induced dipole vector of the dimer is not orthogonal to the vector product of the two monomer electronic transition dipole vectors.In order to demonstrate that these 2D 3WM spectroscopic methods can be used to determine the solution structure of a polypeptide,the authors carried out quantum chemistry calculations for an alanine dipeptide and obtained first-and second-order dipole derivatives associated with the amide I vibrational transitions of the dipeptide.It is shown that the numerically simulated 2D IR-IR SFG spectrum is highly sensitive to the dipeptide secondary structure and provides rich information on the one-and two-exciton states.It is believed that the theoretically proposed doubly resonant 2D 3WM spectroscopy,which can be considered to be an optical activity spectroscopy,will be of use in studying both structural and dynamical aspects of coupled multichromophore systems,such as proteins,nucleic acids,nanoparticle aggregates etc.
机译:给出了偶合发色团系统的双共振二维(2D)和频产生(SFG)和差频产生(DFG)光谱的理论描述。尽管每个电子或振动发色团都是非手性的,但相互作用耦合多色团体系在溶液中的诱导手性可以通过使用双共振二维三波混合(3WM)光谱法进行测量。电子耦合的二聚体,其中的每个单体都被建模为简单的两级体系,可以不消失。 SFG(或DFG)特性,例如,频域中的磁化率或时域中的非线性响应函数,如果二聚体的诱导偶极子向量不正交于两个单体电子跃迁偶极子向量的向量乘积。这些2D 3WM光谱方法可用于确定多肽的溶液结构。作者进行了丙氨酸的量子化学计算二肽并获得与二肽的酰胺I振动跃迁相关的一阶和二阶偶极导数。它表明,数值模拟的二维IR-IR SFG光谱对二肽二级结构高度敏感,并提供了丰富的信息-和两个激子态。据信理论上提出的双共振2D 3WM光谱,可以被认为是光学活性光谱,将用于研究偶联的多发色团系统(例如蛋白质)的结构和动力学方面,核酸,纳米颗粒聚集体等。

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