Synthesis and characterization of cationic quaternary ammonium geminis (16-s-16) and their role in ninhydrin-[Cu(II)-His]+ reaction

Cationic quaternary ammonium gemini surfactants were synthesized by mixing N,N-dimethylcetylamine and α,ω-dibromoalkane. The synthesized products were characterized by C, H, N elemental and 1 H NMR analyses. The critical micelle concentration (CMC) of these surfactants with and without additives was...

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Published inChemical engineering communications Vol. 208; no. 11; pp. 1607 - 1617
Main Authors Kumar, Dileep, Rub, Malik Abdul
Format Journal Article
LanguageEnglish
Published Philadelphia Taylor & Francis 02.11.2021
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Abstract Cationic quaternary ammonium gemini surfactants were synthesized by mixing N,N-dimethylcetylamine and α,ω-dibromoalkane. The synthesized products were characterized by C, H, N elemental and 1 H NMR analyses. The critical micelle concentration (CMC) of these surfactants with and without additives was calculated by means of the conductivity technique. The role of the synthesized quaternary ammonium geminis in the reaction was investigated by a UV-vis spectroscopy. The rate constant (k ψ ) was determined at different gemini concentrations and plotted graphically as k ψ vs. [16-s-16]. Additionally, the influence of other reaction parameters (viz., reactants, pH, and temperature) was investigated. The binding constants were also determined (K A for [Cu(II)-His] + and K B for ninhydrin). The resulting k ψ -[16-s-16] plot can be understood in terms of a pseudo-phase model of micelles.
AbstractList Cationic quaternary ammonium gemini surfactants were synthesized by mixing N,N-dimethylcetylamine and α,ω-dibromoalkane. The synthesized products were characterized by C, H, N elemental and 1 H NMR analyses. The critical micelle concentration (CMC) of these surfactants with and without additives was calculated by means of the conductivity technique. The role of the synthesized quaternary ammonium geminis in the reaction was investigated by a UV-vis spectroscopy. The rate constant (k ψ ) was determined at different gemini concentrations and plotted graphically as k ψ vs. [16-s-16]. Additionally, the influence of other reaction parameters (viz., reactants, pH, and temperature) was investigated. The binding constants were also determined (K A for [Cu(II)-His] + and K B for ninhydrin). The resulting k ψ -[16-s-16] plot can be understood in terms of a pseudo-phase model of micelles.
Cationic quaternary ammonium gemini surfactants were synthesized by mixing N,N-dimethylcetylamine and α,ω-dibromoalkane. The synthesized products were characterized by C, H, N elemental and 1H NMR analyses. The critical micelle concentration (CMC) of these surfactants with and without additives was calculated by means of the conductivity technique. The role of the synthesized quaternary ammonium geminis in the reaction was investigated by a UV–vis spectroscopy. The rate constant (kψ) was determined at different gemini concentrations and plotted graphically as kψ vs. [16–s–16]. Additionally, the influence of other reaction parameters (viz., reactants, pH, and temperature) was investigated. The binding constants were also determined (KA for [Cu(II)–His]+ and KB for ninhydrin). The resulting kψ–[16–s–16] plot can be understood in terms of a pseudo-phase model of micelles.
Author Rub, Malik Abdul
Kumar, Dileep
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  organization: Center of Excellence for Advanced Materials Research, King Abdulaziz University
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Snippet Cationic quaternary ammonium gemini surfactants were synthesized by mixing N,N-dimethylcetylamine and α,ω-dibromoalkane. The synthesized products were...
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SubjectTerms Additives
catalysis
Cations
Cu(II)-His
interfacial properties
kinetics
Micelles
Ninhydrin
NMR
Nuclear magnetic resonance
quaternary ammonium geminis
surfactant micelles
Surfactants
Title Synthesis and characterization of cationic quaternary ammonium geminis (16-s-16) and their role in ninhydrin-[Cu(II)-His]+ reaction
URI https://www.tandfonline.com/doi/abs/10.1080/00986445.2020.1805437
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Volume 208
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