Gawad Sayed A Abdel, Ghazy R, Mansour S, Ahmed Hala, Ghazy Ahmed R
Basic Science Center, Misr University for Science and Technology (MUST), 6 of October, Egypt.
Laser Laboratory, Physics Department, Faculty of Science, Tanta University, Tanta, 31527, Egypt.
J Fluoresc. 2025 May;35(5):3363-3376. doi: 10.1007/s10895-024-03723-8. Epub 2024 May 22.
This work explores the effects of solvent polarity on Janus Green B (JGB) photophysical properties. The Lippert-Mataga, Billot, and Ravi equations were utilized to calculate the singlet-state excited dipole moments (µ) and ground state dipole moments (µ) using absorption and fluorescence spectra analyses. The results showed an increase in the former, which is suggestive of electronic structural alterations upon excitation. Analysis of fluorescence quantum yield values revealed that JGB's environment had an impact on its emission characteristics; it was particularly sensitive to silver nanoparticles, suggesting possible interactions. While simulations of electron density, electrostatic potential, and energy gap (E) helped to understand the electronic structure of JGB, theoretical absorption spectra produced by Time Dependent Density Function Theory (TD-DFT) calculations offered insights into electronic transitions during absorption. To sum up, the present study contributes to our comprehension of the molecular behavior of JGB in various solvents by elucidating the intricate relationship among solvent polarity, molecular environment, and interactions with silver nanoparticles. Additionally, theoretical computations support the interpretation of experimental results.
本工作探究了溶剂极性对健那绿B(JGB)光物理性质的影响。利用Lippert-Mataga、Billot和Ravi方程,通过吸收光谱和荧光光谱分析来计算单重态激发偶极矩(µ)和基态偶极矩(µ)。结果表明前者有所增加,这表明激发时电子结构发生了改变。对荧光量子产率值的分析表明,JGB所处的环境对其发射特性有影响;它对银纳米颗粒特别敏感,这表明可能存在相互作用。虽然对电子密度、静电势和能隙(E)的模拟有助于理解JGB的电子结构,但由含时密度泛函理论(TD-DFT)计算得出的理论吸收光谱为吸收过程中的电子跃迁提供了见解。总之,本研究通过阐明溶剂极性、分子环境以及与银纳米颗粒之间的复杂关系,有助于我们理解JGB在各种溶剂中的分子行为。此外,理论计算支持了对实验结果的解释。