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吖啶黄染料在甘油和乙二醇中的准分子荧光

Excimer Fluorescence of Acriflavine Dye in Glycerol and Ethylene Glycol.

作者信息

Swargiary Hiren, Radiul Seikh Mustafa, Hazarika Simanta

机构信息

Department of Physics, Gauhati University, Guwahati, 781014, Assam, India.

Department of Physics, Eastern Karbi Anglong College, Sarihajan, Karbi Anglong, 782480, Assam, India.

出版信息

J Fluoresc. 2025 Apr;35(4):2365-2377. doi: 10.1007/s10895-024-03686-w. Epub 2024 Apr 8.

DOI:10.1007/s10895-024-03686-w
PMID:38587712
Abstract

This research investigates the excimerisation of acriflavine dye in ethylene glycol and glycerol solvents. Acriflavine, a member of the acridine dye family, exhibits unique fluorescence properties with applications in various fields, including cellular nucleus observation, nucleic acid analysis, and dye laser active media etc. The study explores the impact of solvent and concentration on acriflavine's emission properties, with a focus on excimer formation, which can influence its suitability as a dye laser active medium. UV-Visible absorption spectroscopy reveals concentration-dependent absorption profiles, with distinctive monomer bands. Steady-state fluorescence studies demonstrate the emergence of red-shifted excimer fluorescence bands as concentrations increase in both solvents. Temperature-dependent fluorescence studies reveal the dynamics of excimer formation, suggesting dynamic diffusion as the excimerisation mechanism. Time-resolved fluorescence spectroscopy confirms the singlet character of both monomer and excimer states, providing insights into the excimerisation process. Critical concentration values are determined, representing the equilibrium between monomeric and excimeric forms. The study also explores pH-induced spectral shifts, highlighting the influence of acidity on fluorescence properties. Overall, this research deepens our understanding of acriflavine's excimerisation in ethylene glycol and glycerol, offering insights that can enhance its diverse applications, especially in laser technologies.

摘要

本研究调查了吖啶黄染料在乙二醇和甘油溶剂中的准分子形成过程。吖啶黄是吖啶染料家族的一员,具有独特的荧光特性,在包括细胞核观察、核酸分析和染料激光活性介质等多个领域有应用。该研究探讨了溶剂和浓度对吖啶黄发射特性的影响,重点关注准分子的形成,这可能会影响其作为染料激光活性介质的适用性。紫外可见吸收光谱揭示了浓度依赖性的吸收谱,具有独特的单体谱带。稳态荧光研究表明,随着两种溶剂中浓度的增加,出现了红移的准分子荧光带。温度依赖性荧光研究揭示了准分子形成的动力学,表明动态扩散为准分子形成机制。时间分辨荧光光谱证实了单体和准分子态的单重态特性,为了解准分子形成过程提供了线索。确定了临界浓度值,代表单体和准分子形式之间的平衡。该研究还探讨了pH诱导的光谱位移,突出了酸度对荧光特性的影响。总体而言,本研究加深了我们对吖啶黄在乙二醇和甘油中准分子形成过程的理解,提供了有助于增强其多种应用(特别是在激光技术方面)的见解。

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本文引用的文献

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Fluorescence of dyes in solutions with high absorbance. Inner filter effect correction.高吸光度溶液中染料的荧光。内滤光效应校正。
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