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手性的超短激光脉冲区分:包含磁相互作用的电子波包动力学。

Chiral distinction by ultrashort laser pulses: electron wavepacket dynamics incorporating magnetic interactions.

机构信息

Chemistry Department-Theoretical Chemistry, Universität Potsdam, Potsdam, Germany.

出版信息

J Phys Chem A. 2011 Dec 22;115(50):14510-8. doi: 10.1021/jp207270s. Epub 2011 Nov 23.

Abstract

The qualitative and quantitative distinction of enantiomers is one of the key issues in chemical analysis. In the last years, circular dichroism (CD) has been combined with laser ionization mass spectrometry (LIMS), applying resonance enhanced multiphoton ionization (REMPI) with ultrashort laser pulses. We present theoretical investigations on the CD in the populations of the first electronic excited state of the REMPI process, caused by the interaction of 3-methyl-cyclopentanone with either left or right circular polarized fs-laser pulses. For this we performed multistate laser driven many electron dynamics based on ab initio electronic structure calculations, namely, TD-CIS(D)/6-311++(2d,2p). For a theoretical description of these experiments, a complete description of the field-dipole correlation is mandatory, including both electric field-electric dipole and magnetic field-magnetic dipole interactions. The effect of various pulse parameters on the CD are analyzed and compared with experimental results to gain further understanding of the key elements for an optimal distinction of enantiomers.

摘要

对映异构体的定性和定量区分是化学分析中的关键问题之一。在过去的几年中,圆二色性(CD)已经与激光电离质谱(LIMS)相结合,应用共振增强多光子电离(REMPI)与超短激光脉冲。我们对由左或右圆偏振 fs 激光脉冲与 3-甲基环戊酮相互作用引起的 REMPI 过程的第一电子激发态的群体的 CD 进行了理论研究。为此,我们进行了基于从头算电子结构计算的多态激光驱动多电子动力学,即 TD-CIS(D)/6-311++(2d,2p)。为了对这些实验进行理论描述,必须对场偶极相关进行完整描述,包括电场-电偶极子和磁场-磁偶极子相互作用。分析了各种脉冲参数对 CD 的影响,并与实验结果进行了比较,以进一步了解最佳区分对映异构体的关键要素。

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