阳离子表面活性剂N, N-(2-月桂酸乙酯)硬脂酰胺氯化物的合成

I. Nainggolan, A. Sembiring
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Each compound analyzed function groups by FT-IR spectrophotometric with the analyzed change of melting points, and a part compound analyzed surface tension characteristic with measuring Critical Micelle Concentration (CMC) with use Du Nouy ring method. The analysis product obtained shows that methyl stearate by yield in the amount of 91.66% shows that melting point of 40.5°C, stearamide with yield in the amount of 87.6% show that melting point as 185°C by CMC value 0.133 mol/ L in 40.7 dyne/cm surface tension. Alcanolamide ester with a yield in the amount of 84.7% has a melting point of 55°C by a CMC value of 0.067 mol/L in 36.1 dyne/cm surface tension, and cationic surfactant has a melting point of 45°C by CMC value 0.055 mol/L in 31,1 dyne/cm surface tension. stearamide with a yield in the amount of 87.6% show that melting point of 185°C by a CMC value of 0.133 mol/L in 40.7 dyne/cm surface tension. 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引用次数: 0

摘要

成功合成了阳离子表面活性剂N, N-(2-月桂酸乙酯)硬脂酰胺氯。它是由铵盐和酰胺合成的长链烷基表面活性剂。由脂肪酸衍生物合成的阳离子表面活性剂有硬脂酸和月桂酸。硬脂酸是硬脂酸甲酯与二乙醇胺在甲氧基钠催化下酰胺化的产物,是制备硬脂酰胺的原料。以月桂酸为原料与硬脂酰胺酯化,得到N, N-(2-月桂-乙基)醇酰胺酯硬脂酰胺。醛醇酰胺酯继续用盐酸气进行盐化反应,得到阳离子表面活性剂N, N-(2-月桂酸乙酯)硬脂酰氯。每个化合物通过分析熔点变化的FT-IR分光光度法分析了官能团,部分化合物通过杜诺环法测量临界胶束浓度(CMC)分析了表面张力特性。所得的分析产物表明,硬脂酸甲酯收率为91.66%,熔点为40.5℃,硬脂酰胺收率为87.6%,熔点为185℃,CMC值为0.133 mol/ L,表面张力为40.7达因/cm。产率为84.7%的醛醇酰胺酯在36.1达因/cm的表面张力下,熔点为55℃,CMC值为0.067 mol/L;阳离子表面活性剂在31.1达因/cm的表面张力下,熔点为45℃,CMC值为0.055 mol/L。产率为87.6%的硬脂酰胺在40.7达因/cm的表面张力下,熔点为185℃,CMC值为0.133 mol/L。产率为84.7%的醛醇酰胺酯在36.1达因/cm的表面张力下,熔点为55℃,CMC值为0.067 mol/L;阳离子表面活性剂在31.1达因/cm的表面张力下,熔点为45℃,CMC值为0.055 mol/L。产率为87.6%的硬脂酰胺在40.7达因/cm的表面张力下,熔点为185℃,CMC值为0.133 mol/L。产率为84.7%的醛醇酰胺酯在36.1达因/cm的表面张力下,熔点为55℃,CMC值为0.067 mol/L;阳离子表面活性剂在31.1达因/cm的表面张力下,熔点为45℃,CMC值为0.055 mol/L。
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Synthesis of Cationic Surfactant N, N-(2-Laurate-Ethyl) Stearamidium Chloride
The cationic surfactant of N, N-(2-Lauric-Ethyl) Stearamidium Chloride had been successfully synthesized. It is long-chain alkyl surfactant derivative from ammonium salt with amide. Cationic surfactants that are synthesized from fatty acid derivatives are stearic acid and lauric acid. Stearic acid is used as stearamide-making material which is the product of methyl stearate amidation with diethanolamine use methoxide sodium catalyst. Lauric acid was used as esterification material with stearamide thus obtaining N, N-(2-Lauric-Ethyl) Stearamide of alcanolamide ester. Alcanolamide ester continued by salting reaction use HCl gas until obtained cationic surfactant of N, N-(2-Lauric-Ethyl) Stearimidium Chloride. Each compound analyzed function groups by FT-IR spectrophotometric with the analyzed change of melting points, and a part compound analyzed surface tension characteristic with measuring Critical Micelle Concentration (CMC) with use Du Nouy ring method. The analysis product obtained shows that methyl stearate by yield in the amount of 91.66% shows that melting point of 40.5°C, stearamide with yield in the amount of 87.6% show that melting point as 185°C by CMC value 0.133 mol/ L in 40.7 dyne/cm surface tension. Alcanolamide ester with a yield in the amount of 84.7% has a melting point of 55°C by a CMC value of 0.067 mol/L in 36.1 dyne/cm surface tension, and cationic surfactant has a melting point of 45°C by CMC value 0.055 mol/L in 31,1 dyne/cm surface tension. stearamide with a yield in the amount of 87.6% show that melting point of 185°C by a CMC value of 0.133 mol/L in 40.7 dyne/cm surface tension. Alcanolamide ester with a yield in the amount of 84.7% has a melting point of 55°C by a CMC value of 0.067 mol/L in 36.1 dyne/cm surface tension, and cationic surfactant has melting point as 45°C by CMC value 0.055 mol/L in 31,1 dyne/cm surface tension. stearamide with a yield in the amount of 87.6% show that melting point of 185°C by a CMC value of 0.133 mol/L in 40.7 dyne/cm surface tension. Alcanolamide ester with a yield in the amount of 84.7% has a melting point of 55°C by a CMC value of 0.067 mol/L in 36.1 dyne/cm surface tension, and cationic surfactant has a melting point of 45°C by CMC value 0.055 mol/L in 31,1 dyne/cm surface tension.
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