scispace - formally typeset
Journal ArticleDOI

Investigation of Spectral Sensitization V. A Study of the Visible and Infrared Spectra of Some Very Pure 2-bis-Benzoxazolyl, 2-bis-Indolinyl, and 2-bis-Quinolyl Cyanine Iodides

TLDR
In this paper, a detailed study of the visible spectra in solution and the infrared spectrum in the solid state has been made for the following vinylogous series of cyanine dyes.
Abstract
A detailed study of the visible spectra in solution and the infrared spectra in the solid state has been made for the following vinylogous series of cyanine dyes: [2-bis (3-ethylbenzoxazolyl)] cyanine iodides, [2-bis-(1-ethyl-3,3-dimethylindolinyl)] cyanine iodides, and [2-bis-(1-ethylquinolyl)] cyanine iodides. Each dye, to be acceptable for study, had to be chromatographically pure, give a correct microchemical elemental analysis, and be free of electron-spin-resonance (free-radical) signals. The characteristic red shift of the principal absorption maxima was observed for these dyes in the visible range as the number of methine linkages increased. A careful comparison of the visible spectral data of the [2-bis (3-ethylbenzoxazolyl)] cyanine iodides with those of the corresponding [2-bis (3-ethylbenzothiazolyl)] and [2-bis (3-ethylbenzoselenazolyl)] cyanine iodides, [Leifer et al., Appl. Spectry. 20, 289 (1966)] indicates that the electronegativity of the atom S, Se, or O in the heterocyclic rings probably affects the wavelength of the principal absorption maximum. As the electronegativity of the Group VI.A atom increases, the principal absorption maximum shifts slightly toward the blue. Assignments of vibrational modes to separate absorption regions have been made for these vinylogous series of dyes. Each vinylog has a characteristic pattern of resonant-conjugated stretching modes in the region 1600–1400 cm−1. Some of these modes exhibit a low frequency shift as the resonant-conjugated chain increases. Comparison of the benzoxazolyl modes with those of the corresponding benzothiazolyl and benzoselenazolyl modes indicates that they are probably a function of the electronegativity of S, Se, or O in the heterocyclic rings. As the electronegativity of the VI.A atom increases, the resonant-conjugated stretching modes shift to higher frequencies. There are also characteristic bands in the 1600–1400 cm−1 region which are present in all the vinylogs of each series of these dyes. These bands have been assigned to the stretching modes of the fused phenyl rings present in these dyes. It appears that the fused phenyl stretching modes are a function of the groupings C(CH3)2, O, S, Se present in the indolinyl, benzoxazolyl, benzothiazolyl, and benzoselenazolyl heterocyclic rings, respectively. The sulfur and selenium atoms affect these modes the least while the oxygen atom affects these modes the most. Assignments have been made for the aromatic CH out-of-plane bending modes in the region 800–700 cm−1 for these vinylogous series of cyanine dyes. In the spectra of the 2-bis-indolinyl and 2-bis-quinolyl cyanine iodides, there is a band appearing in the region 1000–900 cm−1 which changes systematically with an increase in the number of hydrogens on the bridge. This band has been assigned to the out-of-plane bending vibrations of the hydrogens in a trans configuration on the bridge. No evidence of a cis isomer was observed in the spectra.

read more

Citations
More filters
Journal ArticleDOI

Direct and sensitized photooxidation of cyanine dyes.

TL;DR: Direct photooxidation of cyanine dyes was found to be markedly enhanced by formation of hypsochromically shifted (H) aggregates bysinglet oxygen attack on 3,3′‐diethyl‐8,10‐dimethylthiacarbocyanine yields carbonyl products consistent with 1,2 addition to the 2,8 bond of the methine chain.
Journal ArticleDOI

Orientation and conformation of octadecyl rhodamine B in hybrid Langmuir-Blodgett monolayers containing clay minerals

TL;DR: In this article, the orientation and conformation of octadecyl rhodamine B (RhB18) were analyzed by polarized attenuated total reflection Fourier transform infrared (ATR-FTIR) spectroscopy and fluorescence analysis.
Journal ArticleDOI

Infrared reflection absorption spectroscopy study of smectite clay monolayers

TL;DR: In this paper, the infrared external reflection spectroscopy (IRRAS) is used for studying ultrathin hybrid clay films prepared by the Langmuir-Blodgett (LB) method.
Journal ArticleDOI

The triplet state of $1,1'$-diethyl-$2,2'$-cyanine iodide in neat and mixed crystals

TL;DR: In this article, the singlet-triplet absorption spectrum of crystalline 1,1′−diethyl−2,2′−cyanine iodide has been obtained.
References
More filters
Journal ArticleDOI

Wavelength Formulas and Configuration Interaction in Brooker Dyes and Chain Molecules

TL;DR: In this article, a simplified adaptation of the ideas of Brooker, Herzfeld, and Sklar is presented, where the zero-order wavelength of absorption, λI, is modified in second order by configurational mixing of the ground state with a certain excited state.
Journal ArticleDOI

Investigation of Spectral Sensitization III. A Study of the Visible and Infrared Spectra of Some Very Pure Bis-Thiazolinyl and Bis-Thiazolyl Cyanine Iodides

TL;DR: In this paper, a detailed study of the visible spectra in solution and the infrared spectra of the dyes in the solid state have been made for the following vinylogous series of cyanine dyes: [2-bis (3-ethylthiazolinyl)] cyanine iodides, I; [2bis ( 3-ethyl-4-methylthiazolyl] cyanine ionides, II; and [ 2-bis(3-methyl-4,5-diphenylthiozolyl) [CILI], III.
Journal ArticleDOI

A study of the intra-red spectra of cyanine and merocyanine dye intermediates—some heterocyclic quaternary amine iodides

TL;DR: In this paper, it has been shown that for quaternary amine iodides there are intense bands in the region 900-700 cm−1 which are a function of the out-of-plane bending vibrations of the number of adjacent hydrogens on the isolated carbocyclic and heterocycyclic rings.
Journal ArticleDOI

Investigation of Spectral Sensitization IV. A Study of Visible and Infrared Spectra of Some Very Pure Bis—Benzothiazolyl and Bis—Benzoselenazolyl Cyanine Iodides

TL;DR: A detailed study of the visible spectra and the infrared spectra in the solid state have been made for the following vinylogous series of dyes: [2bis(3-ethylbenzothiazolyl)] cyanine iodides and [2-bis 3-ethyl benzoselenazolyl] cyanine ionides as mentioned in this paper.
Related Papers (5)