Solvent Effects on the Spectral Properties of Rhodamine 6G: Estimation of Ground and Excited State Dipole Moments

被引:0
作者
Abimbola Ogunsipe
机构
[1] Federal University of Petroleum Resources,Department of Chemistry
来源
Journal of Solution Chemistry | 2018年 / 47卷
关键词
Rhodamine 6G; Absorption; Fluorescence; Solvent effects; Fluorescence quenching; Dipole moment;
D O I
暂无
中图分类号
学科分类号
摘要
Spectroscopic and photophysical behavior of Rhodamine 6G (R6G) in seven solvents are reported in this work. R6G monomers exhibit strong electronic absorptions (due to π*←π transitions) in the 529–539-nm region, and the band positions were shown to depend on the refractive indices of the respective solvents. The Stokes’ shifts displayed a linear dependence on solvent polarity, with values ranging between 19 nm (in benzene) and 28 nm (in water). R6G’s fluorescence quantum yields (ΦF) are generally high (> 0.90), and this was ascribed to structural features (rigidity, planarity and presence of condensed rings) in the R6G molecule. These ΦF values are shown to vary with solvent viscosity in accordance with the Förster–Hoffmann model. Fluorescence quenching of R6G by 1,4-benzoquinone was diffusion controlled and occurred via an electron transfer mechanism. Theoretical treatment of the fluorescence quenching data yielded fluorescence lifetime values, which were also shown to be solvent viscosity dependent. Ground-state and excited-state dipole moments of R6G were obtained semi-empirically via the analysis of solvatochromic data, and the values are found to be 0.69 D and 1.97 D, respectively.
引用
收藏
页码:203 / 219
页数:16
相关论文
共 132 条
[1]  
Chen J(2007)A functionalized gold nanoparticles and Rhodamine 6G based fluorescent sensor for high sensitive and selective detection of mercury(II) in environmental water samples Anal. Chim. Acta 599 134-142
[2]  
Zheng A(1998)A new ion sensor based on fiber optics Talanta 35 113-118
[3]  
Chen A(1997)A fast-responding optical pH sensor based on the fluorescence of eosin trapped in a TiO J. Fluoresc. 7 215S-218S
[4]  
Gao Y(2007) solgel thin film Chin. Phys. Lett. 24 954-956
[5]  
He C(2012)Effect of Ag nanoparticles on optical properties of R6G doped PMMA films Opt. Photonics J. 2 135-139
[6]  
Kai X(2002)Nonlinear optical studies of DNA doped Rhodamine 6G PVA films using picosecond pulses Chem. Phys. Lett. 361 439-445
[7]  
Wu G(1996)Nonlinear absorption and excited state dynamics in Rhodamine B studied using Z-scan and degenerate four wave mixing techniques J. Phys. Chem. 100 11054-11061
[8]  
Chen T(1992)Excited state and photosensitization aspects of rhodamine 6G H–aggregates bound to SiO Laryngoscope 102 81-87
[9]  
Bright FV(2008) and SnO Um-Salama Sci. J. 5 107-114
[10]  
Poirier GE(2003) colloids J. Mol. Struct. 650 131-140