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激发浓度和波长对水杨酸根阴离子在乙腈和水中光物理性质的影响。

Effect of concentration and wavelength of excitation on the photophysics of salicylate anion in acetonitrile and water.

作者信息

Bishen Siddharth Mall, Adhikari Meena, Mishra Hirdyesh

机构信息

Department of Physics, Institute of Science, Banaras Hindu University, Varanasi 221005, India; Physics Section, MMV, Department of Physics, Banaras Hindu University, Varanasi 221005, India.

Physics Section, MMV, Department of Physics, Banaras Hindu University, Varanasi 221005, India.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2025 Jan 5;324:124994. doi: 10.1016/j.saa.2024.124994. Epub 2024 Aug 17.

Abstract

Sodium salicylate (NaSA) molecule exists as salicylate anion in acetonitrile (ACN) and water solvents, and exhibits large Stokes shifted fluorescence due to excited state intramolecular proton transfer (ESIPT), with decay times of ∼5 ns in ACN and ∼3.9 ns in water by 300 nm (absorption maxima) excitation. Previous studies report both ground and excited state enol-keto tautomerization in ACN, but only excited state tautomerization in water at 10 M. However, the current work explores the effect of concentration and excitation wavelengths on the photoinduced dynamics of ESIPT in the salicylate anion. On increasing the concentration of NaSA, no change in absorption spectra appears in both the solvents, and emission spectra of NaSA in water remain unaffected by changes in concentration or excitation wavelength, whereas, a slight red shift and decrease in FWHM appears in ACN. Time-domain fluorescence measurements show predominantly single-exponential decay throughout the emission profile by 300 nm excitation above the 10 M concentration in both the solvents, while by 375 nm excitation, multi-exponential fluorescence decay is observed at low concentrations, and as the concentration of NaSA increases, this decay behaviour tends to converge towards a single exponential decay. These results suggest that solute-solvent interactions stabilize the ground-state intermolecular hydrogen-bonded species at low concentrations, while higher concentrations weaken these interactions, leading to emission solely from the salicylate anion. Peak fit analysis of excitation spectra confirms enol-keto tautomerization in both the solvents, with the keto form being more stabilized in ACN. These findings underscore that in ACN, behaviour of NaSA is influenced by both concentration and excitation wavelength and contrary to previous reports, the keto form of the molecule is also present in water, though at a very low concentration and an increase in non-radiative transitions in water cause fluorescence quenching.

摘要

水杨酸钠(NaSA)分子在乙腈(ACN)和水溶剂中以水杨酸根阴离子形式存在,由于激发态分子内质子转移(ESIPT)而呈现出较大的斯托克斯位移荧光,在ACN中通过300nm(吸收最大值)激发的衰减时间约为5ns,在水中约为3.9ns。先前的研究报道了ACN中基态和激发态的烯醇 - 酮互变异构,但在10M的水中仅报道了激发态互变异构。然而,当前的工作探讨了浓度和激发波长对水杨酸根阴离子中ESIPT光诱导动力学的影响。随着NaSA浓度的增加,两种溶剂中的吸收光谱均未出现变化,水中NaSA的发射光谱不受浓度或激发波长变化的影响,而在ACN中出现轻微的红移和半高宽减小。时域荧光测量表明,在两种溶剂中,当浓度高于10M时,通过300nm激发,整个发射谱主要呈现单指数衰减,而通过375nm激发,在低浓度下观察到多指数荧光衰减,并且随着NaSA浓度的增加,这种衰减行为趋向于收敛为单指数衰减。这些结果表明,溶质 - 溶剂相互作用在低浓度下稳定了基态分子间氢键物种,而较高浓度则削弱了这些相互作用,导致仅从水杨酸根阴离子发射。激发光谱的峰拟合分析证实了两种溶剂中均存在烯醇 - 酮互变异构,酮形式在ACN中更稳定。这些发现强调,在ACN中,NaSA的行为受浓度和激发波长的影响,与先前的报道相反,该分子的酮形式在水中也存在,尽管浓度非常低,并且水中非辐射跃迁的增加导致荧光猝灭。

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