Simulations of Two-Photon Absorption Spectra of Fluorescent Dyes: The Impact of Non-Condon Effects.

IF 5.5 1区 化学 Q2 CHEMISTRY, PHYSICAL Journal of Chemical Theory and Computation Pub Date : 2025-04-08 Epub Date: 2025-03-26 DOI:10.1021/acs.jctc.4c01545
Rudraditya Sarkar, Carmelo Naim, Karan Ahmadzadeh, Robert Zaleśny, Denis Jacquemin, Josep M Luis
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Abstract

Computer simulations play a pivotal role in interpreting experimental two-photon absorption (2PA) spectra. One of the key aspects of the simulation of these spectra is to take into account the vibrational fine structure of the bands in electronic spectra. This is typically done by employing Franck-Condon (FC) term and low-order terms in the Herzberg-Teller (HT) expansion. In this work, we present a systematic study of first-order HT effects on the vibronic structure of π → π* electronic bands in 2PA spectra of 13 common fluorophores. We begin by evaluating the performance of several density functional approximations (DFAs) against the second-order coupled cluster singles and doubles model (CC2) for reproducing two-photon transition moments and their first- and second-order derivatives with respect to normal modes of vibration on a set of six donor-acceptor molecules. Our findings reveal that most DFAs produce inaccurate values for these derivatives, with the exception of the LC-BLYP functionals with range-separation parameters of 0.33 and 0.47. Although these functionals underestimate the HT contribution to the 2PA total intensities of the π → π* electronic bands, they offer a reasonable qualitative reproduction of the HT vibrational fine structure of the reference spectra. We further explore HT effects on fluorescent chromophores, finding that HT contributions are secondary to FC effects, leading to small shifts of the wavelengths peaks, and minimal changes in the intensities. Additionally, the adiabatic Hessian, vertical Hessian, and vertical gradient vibronic models are assessed. The general agreement among these models confirms that the harmonic approximation is suitable for studying the selected fluorophores.

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荧光染料双光子吸收光谱的模拟:非安全套效应的影响。
计算机模拟在解释实验双光子吸收(2PA)光谱中起着关键作用。这些谱的模拟的一个关键方面是考虑电子谱带的振动精细结构。这通常是通过在Herzberg-Teller (HT)展开中使用frank - condon (FC)项和低阶项来完成的。在这项工作中,我们系统地研究了一阶高温对13个常见荧光团2PA光谱中π→π*电子带的振动结构的影响。我们首先评估了几种密度泛函近似(dfa)对二阶耦合簇单和双模型(CC2)的性能,用于再现双光子跃迁矩及其一阶和二阶导数在一组六个供体-受体分子上的正常振动模式。我们的研究结果表明,除了LC-BLYP泛函的范围分离参数为0.33和0.47外,大多数dfa对这些衍生物产生不准确的值。虽然这些泛函数低估了高温对π→π*电子带2PA总强度的贡献,但它们提供了参考光谱的高温振动精细结构的合理定性再现。我们进一步探讨了高温对荧光发色团的影响,发现高温的贡献次于FC效应,导致波长峰的小位移和强度的最小变化。此外,绝热Hessian,垂直Hessian和垂直梯度振动模型进行了评估。这些模型之间的一般一致性证实了谐波近似适用于所选荧光团的研究。
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来源期刊
Journal of Chemical Theory and Computation
Journal of Chemical Theory and Computation 化学-物理:原子、分子和化学物理
CiteScore
9.90
自引率
16.40%
发文量
568
审稿时长
1 months
期刊介绍: The Journal of Chemical Theory and Computation invites new and original contributions with the understanding that, if accepted, they will not be published elsewhere. Papers reporting new theories, methodology, and/or important applications in quantum electronic structure, molecular dynamics, and statistical mechanics are appropriate for submission to this Journal. Specific topics include advances in or applications of ab initio quantum mechanics, density functional theory, design and properties of new materials, surface science, Monte Carlo simulations, solvation models, QM/MM calculations, biomolecular structure prediction, and molecular dynamics in the broadest sense including gas-phase dynamics, ab initio dynamics, biomolecular dynamics, and protein folding. The Journal does not consider papers that are straightforward applications of known methods including DFT and molecular dynamics. The Journal favors submissions that include advances in theory or methodology with applications to compelling problems.
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