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104-73-4

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104-73-4 Usage

General Description

1-Dodecylpyridinium bromide is a cationic surfactant commonly used in biochemical and pharmaceutical research. It is an organic compound with a molecular formula of C19H33BrN and is typically found in the form of white or off-white crystals. 1-Dodecylpyridinium bromide is known for its ability to form micelles in aqueous solutions, making it useful for solubilizing hydrophobic compounds and as an antimicrobial agent. It has been studied for its potential applications in drug delivery systems, as a stabilizer in emulsions, and as a component in various industrial and consumer products. Additionally, 1-Dodecylpyridinium bromide has been investigated for its potential toxic effects on aquatic organisms and its environmental impact.

Check Digit Verification of cas no

The CAS Registry Mumber 104-73-4 includes 6 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 3 digits, 1,0 and 4 respectively; the second part has 2 digits, 7 and 3 respectively.
Calculate Digit Verification of CAS Registry Number 104-73:
(5*1)+(4*0)+(3*4)+(2*7)+(1*3)=34
34 % 10 = 4
So 104-73-4 is a valid CAS Registry Number.
InChI:InChI=1/C17H30N.BrH/c1-2-3-4-5-6-7-8-9-10-12-15-18-16-13-11-14-17-18;/h11,13-14,16-17H,2-10,12,15H2,1H3;1H/q+1;/p-1

104-73-4SDS

SAFETY DATA SHEETS

According to Globally Harmonized System of Classification and Labelling of Chemicals (GHS) - Sixth revised edition

Version: 1.0

Creation Date: Aug 17, 2017

Revision Date: Aug 17, 2017

1.Identification

1.1 GHS Product identifier

Product name 1-Dodecylpyridinium Bromide

1.2 Other means of identification

Product number -
Other names 1-Dodecylpyridin-1-ium bromide

1.3 Recommended use of the chemical and restrictions on use

Identified uses For industry use only.
Uses advised against no data available

1.4 Supplier's details

1.5 Emergency phone number

Emergency phone number -
Service hours Monday to Friday, 9am-5pm (Standard time zone: UTC/GMT +8 hours).

More Details:104-73-4 SDS

104-73-4Downstream Products

104-73-4Relevant articles and documents

The Interaction of Alkylammonium Salts with Synthetic Clays. A Fluorescence and Laser Excitation Study

Nakamura, T.,Thomas, J. K.

, p. 641 - 644 (1986)

The interaction of surfactants with synthetic clays has been studied by a steady-state and a time-resolved fluorescence quenching method.The fluorescence quenching of 4-(1-pyrenyl)butyltrimethylammonium ion (PN(1+)) adsorbed on colloidal laponite clay by coadsorbed alkylpyridinium ions showed unusual behavior.Increasing the quencher concentration at first led to an efficient quenching of PN(1+) flourescence, but on increasing the quencher concentration further a reverse effect is observed, whereby the fluorescence started to recover, only to be followed by a smaller degree of quenching.The degree of recovery was strongly dependent on the chain length of the alkylpyridinium ions, the longer the chain length the larger the degree of recovery.PN(1+) fluorescence was also quenched by laponite clay itself or cupric ion in copper-clay, where cupric ion was constructed in the clay lattice.However, coadsorbed hexadecyltrimethylammonium ions (CTAB cations) dramatically reduced the quenching.The results can be explained in terms of the change of geometrical arrengement of PN(1+) adsorbed on clay.Quenching of PN(1+) fluorescence by dimethylaniline, nitrobenzene, and nitromethane in the CTAB-laponite system obeyed Poisson type kinetics, indicating that the adsorbents exist in the form of clusters or zones on the clay surface.

Preparation of the pyridinium salts differing in the length of the N-alkyl substituent

Marek, Jan,Stodulka, Petr,Cabal, Jiri,Soukup, Ondrej,Pohanka, Miroslav,Korabecny, Jan,Musilek, Kamil,Kuca, Kamil

, p. 1967 - 1972 (2010)

Quaternary pyridinium salts with chains ranging from C8 to C20 belong in the large group of cationic surfactants. In this paper, the preparation of such cationic surface active agents based on the pyridinium moiety and differing in the length of the N-alkyl chain is described. Additionally, HPLC technique was established to distinguish each prepared pyridinium analogue. This study represents universal method for preparation and identification of quaternary pyridinium detergents.

Binding of N-Alkylpyridinium Chlorides to Nonionic Micelles

Shirahama, Keishiro,Nishiyama, Yoshinori,Takisawa, Noboru

, p. 5928 - 5930 (1987)

Binding of N-alkylpyridinium chlorides (C10, C12, and C14) to dodecyl oxyethylene ether (C12E6 and C12E8) micelles is determined in the presence of 5 mol m-3 NaCl at various temperatures by potentiometry which employs an electrode responsive to the surfactants.Binding affinity is expressed in terms of a distribution coefficient, Kx, of a cationic surfactant between the aqueous bulk phase and the nonionic micellar phase, and is larger for an alkylpyridinium cation with a longer hydrocarbon chain.The values of Kx are divided into three regions depending on the mole fraction of bound cationic surfactant in a micelle, X.At X x remains constant, while for 0.02 0.2.The constant Kx values reflect an intrinsic binding affinity (K0).With increase in X, electrostatic repulsion among bound cationic surfactants causes decreased Kx values, which may be analyzed by a simple electrostatic theory to estimate the position of bound cationic head groups.From the temperature dependence of K0, it is found that the binding process is nearly athermal for C12E8 micelles but exothermic for C12E6 micelles, the latter associated with the growth of micellar size with temperature.

Ultrafast dynamics in aromatic cation based ionic liquids: A femtosecond raman-induced kerr effect spectroscopic study

Shirota, Hideaki,Kakinuma, Shohei,Takahashi, Kotaro,Tago, Akito,Jeong, Hocheon,Fujisawa, Tomotsumi

, p. 1106 - 1128 (2016)

We studied the ultrafast dynamics of 40 aromatic cation based ionic liquids (ILs) by means of femtosecond Ramaninduced Kerr effect spectroscopy. The low-frequency Kerr spectra (ca. 0.3700 cm1) of the ILs were obtained from the Kerr transients by Fourier-Transform deconvolution analysis. The low-frequency Kerr spectra in the frequency range less than 200 cm-1 coming mainly from the intermolecular vibrations for the ILs were discussed in terms of (i) anion dependence, (ii) imidazolium cations vs. pyridinium cations, (iii) alkyl group dependence, and (iv) effect of methylation in aromatic cations. Several liquid properties, such as density, viscosity, electrical conductivity, and surface tension, of the present sample ILs at 293K were also estimated in this study. We clarified that the aromatic cation based ILs show a different relation of the first moment of the low-frequency spectral band to the bulk liquid parameter, which is the square root of surface tension divided by liquid density, from aprotic molecular liquids. The slope of the first moment to the bulk parameter for the aromatic cation based ILs is gentler than that for aprotic molecular liquids.

Effect of some pyridinium based compounds on the hydrolysis of carboxylate ester

Singha, Namrata,Ghosh, Kallol K.,Marek, Jan,Kuca, Kamil

experimental part, p. 611 - 616 (2012/08/08)

Nucleophilic reactivity of some pyridinium based compounds towards hydrolysis of p-nitrophenyl acetate (PNPA) has studied at pH 9.0 and temperature 27°C. The nucleophilic reactivity of newly synthesized pyridinium compounds has compared with commercially available pyridinium based compounds such as pralidoxime and dodecylpyridinium bromide. It has been observed that with an increase in the concentration of these compounds there is an increase in the first rate constant of the reaction. The apparent acid dissociation constant (pKj of some compounds have also been determined spectrophotometrically. Oximate ions released from 3-hydroxyiminomethyl-i-dodecylpyridinium bromide (3-HIDDPB) and pralidoxime have proved to be better nucleophilic agents for cleavage of carboxylate ester. Present investigation explores the structure-activity relationship of some pyridinium based compounds with same alkyl tail length.

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