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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Solvent and concentration effects on the visible spectra of tri-para-dialkylamino-substituted triarylmethane dyes in liquid solutions
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Solvent and concentration effects on the visible spectra of tri-para-dialkylamino-substituted triarylmethane dyes in liquid solutions

机译:溶剂和浓度对液体溶液中三对二烷基氨基取代的三芳基甲烷染料的可见光谱的影响

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We have characterized the spectroscopy properties of crystal violet (CV+) and ethyl violet (EV+) in liquid solutions as a function of the solvent type and dye concentration. The analysis of how solvent properties and dye concentration affects the electronic spectra of these tri-para-dialkylamino substituted tryarylmethane (TAM(+)) dyes was performed on the basis of two spectroscopic parameters, namely the difference in wavenumber (Deltanu) between the maximum and the shoulder that appears in the short-wavelength side of the respective maximum visible band (Deltanu = 1/lambda(shoulder) - 1/lambda(max), cm(-1)), and the wavelength of the maximum absorption (lambda(max)). The solvent and the concentration effects on lambda(max) and Deltanu have indicated that both solute/solute (ion-pairing and dye aggregation) and solute/solvent (H-bonding type) interactions modulate the shape of the visible electronic spectra of these dyes in solution. In solvent with small dieletric constant (epsilon < similar to 10), the formation of ion-pairs represents a major contribution to the shaping of these spectra. Upon increasing dye concentration the formation of ion-pairs was characterized by an increase in Deltanu observed concomitantly with a red shift lambda(max). In chloroform and chlorobenzene the ion-pair association constant of CV+ and EV+ with Cl- ions were found to be in the order of 10(6) and 10(5) M-1, respectively. In trichloroethylene the association constant for the CV+Cl- pair was 10(8) M-1. In water, dye aggregation instead of ion-pairing represents a major contribution to the shaping of the visible spectra of CV+ and EV+. Dye aggregation was indicated by an increase in Deltanu observed concomitantly with a blue shift in lambda(max) upon increasing dye concentration. The distinct behavior of lambda(max) for dye aggregation and ion-pairing as a function of dye concentration can therefore assist in the characterization of these two distinct phenomena. The solute/solvent interactions were studied in a series of polar solvents in which solute/solute interactions do not occur in any detectable extent. The dependence found for Deltanu as a function of the Kamlet-Tafts solvatochromic parameters (alpha, beta and pi*) is in keeping with previous inferences indicating that the splitting in the overlapped absorption band of CV+ and EV+ in hydroxilated solvents arises from a perturbation in the molecular symmetry induced by hydrogen bonding (donor-acceptor) type interactions with solvent molecules. A distinction between the effects of solute/solute and solute/solvent interactions on the visible spectra of these dyes is provided. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 26]
机译:我们已经表征了液体溶液中结晶紫(CV +)和乙基紫(EV +)的光谱性质与溶剂类型和染料浓度的关系。基于两个光谱参数,即最大光谱之间的波数差异(Deltanu),对溶剂性质和染料浓度如何影响这些三对二烷基氨基取代的三芳基甲烷(TAM(+))染料的电子光谱进行了分析。出现在相应最大可见光带(Deltanu = 1 / lambda(shoulder)-1 / lambda(max),cm(-1))的短波长一侧的肩膀和最大吸收波长(lambda (最大)。溶剂和浓度对lambda(max)和Deltanu的影响表明,溶质/溶质(离子对和染料聚集)和溶质/溶剂(H键型)相互作用均调节了这些染料的可见电子光谱的形状。在解决方案中。在具有小介电常数(ε<类似于10)的溶剂中,离子对的形成代表了这些光谱的形状的主要贡献。随着染料浓度的增加,离子对的形成以Deltanu的增加为特征,同时观察到红移λ(max)。在氯仿和氯苯中,CV +和EV +与Cl-的离子对缔合常数分别约为10(6)和10(5)M-1。在三氯乙烯中,CV + Cl-对的缔合常数为10(8)M-1。在水中,染料聚集而不是离子对代表了CV +和EV +可见光谱成形的主要贡献。通过增加染料浓度观察到的Deltanu的增加伴随着lambda(max)的蓝移,表明了染料聚集。因此,lambda(max)对于染料聚集和离子对的独特行为是染料浓度的函数,可以帮助表征这两种不同的现象。在一系列极性溶剂中研究了溶质/溶剂之间的相互作用,其中在任何可检测的范围内均不发生溶质/溶质之间的相互作用。发现Deltanu作为Kamlet-Tafts溶剂化变色参数(α,β和pi *)的函数,与先前的推论相符,后者表明CX +和EV +的重叠吸收带在氢氧化溶剂中的分裂是由对Cv +和EV +的扰动引起的。氢键(供体-受体)与溶剂分子相互作用引起的分子对称性。溶质/溶质和溶质/溶剂相互作用对这些染料可见光谱的影响之间有区别。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:26]

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