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荧光编码红外振动光谱中决定亮度的分子因素。

Molecular factors determining brightness in fluorescence-encoded infrared vibrational spectroscopy.

作者信息

Guha Abhirup, Whaley-Mayda Lukas, Lee Seung Yeon, Tokmakoff Andrei

机构信息

Department of Chemistry, James Franck Institute, and Institute of Biophysical Dynamics, The University of Chicago, Chicago, Illinois 60637, USA.

出版信息

J Chem Phys. 2024 Mar 14;160(10). doi: 10.1063/5.0190231.

Abstract

Fluorescence-encoded infrared (FEIR) spectroscopy is a recently developed technique for solution-phase vibrational spectroscopy with detection sensitivity at the single-molecule level. While its spectroscopic information content and important criteria for its practical experimental optimization have been identified, a general understanding of the electronic and nuclear properties required for highly sensitive detection, i.e., what makes a molecule a "good FEIR chromophore," is lacking. This work explores the molecular factors that determine FEIR vibrational activity and assesses computational approaches for its prediction. We employ density functional theory (DFT) and its time-dependent version (TD-DFT) to compute vibrational and electronic transition dipole moments, their relative orientation, and the Franck-Condon factors involved in FEIR activity. We apply these methods to compute the FEIR activities of normal modes of chromophores from the coumarin family and compare these predictions with experimental FEIR cross sections. We discuss the extent to which we can use computational models to predict the FEIR activity of individual vibrations in a candidate molecule. The results discussed in this work provide the groundwork for computational strategies for choosing FEIR vibrational probes or informing the structure of designer chromophores for single-molecule spectroscopic applications.

摘要

荧光编码红外(FEIR)光谱是一种最近开发的用于溶液相振动光谱的技术,其检测灵敏度可达单分子水平。虽然已经确定了其光谱信息内容及其实际实验优化的重要标准,但对于高灵敏度检测所需的电子和核性质,即是什么使分子成为“良好的FEIR发色团”,仍缺乏全面的了解。这项工作探索了决定FEIR振动活性的分子因素,并评估了用于预测的计算方法。我们采用密度泛函理论(DFT)及其含时版本(TD-DFT)来计算振动和电子跃迁偶极矩、它们的相对取向以及FEIR活性中涉及的弗兰克-康登因子。我们应用这些方法来计算香豆素家族发色团正常模式的FEIR活性,并将这些预测结果与实验FEIR截面进行比较。我们讨论了在何种程度上可以使用计算模型来预测候选分子中单个振动的FEIR活性。这项工作中讨论的结果为选择FEIR振动探针或为单分子光谱应用设计发色团结构的计算策略奠定了基础。

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