节点文献

双十八烷基四羟乙基二溴丙二铵的微波合成及其性能研究

Microwave synthesis and properties of dioctadecyl tetrahydroxyethyl dibromopropane diammonium

  • 推荐 CAJ下载
  • PDF下载
  • 不支持迅雷等下载工具,请取消加速工具后下载。

【作者】 彭思玉郑成毛桃嫣魏渊宋华峰

【Author】 PENG Siyu;ZHENG Cheng;MAO Taoyan;WEI Yuan;SONG Huafeng;Institute of Fine Chemical Engineering, Guangzhou University;Guangzhou Vocational College of Science and Technology;

【通讯作者】 郑成;

【机构】 广州大学精细化工研究所广州科技职业技术学院

【摘要】 以十八烷基二乙醇胺、1,3-二溴丙烷为主要原料,在微波高压条件下进行季铵化反应合成了一种双子表面活性剂双十八烷基四羟乙基二溴丙二铵(DTDD),通过红外光谱(IR)和核磁共振(1H NMR)对DTDD进行了表征,并用液相色谱-质谱联用(LC-MS)测定了其纯度。通过单因素、正交实验得到了微波法合成目标产物的最佳合成条件为:设置微波功率为900 W,反应时间8 h,反应温度为140℃,产品收率达92%以上。与传统加热法对比,使用微波合成法反应速率大大提高。性能测试结果表明:对比单链季铵盐(OMDAB),目标产物DTDD具有良好的表面性能,其临界胶束浓度为0.087 g/L,相应的表面张力γCMC为31.09 mN/m。

【Abstract】 A gemini surfactant called dioctadecyl tetrahydroxyethyl dibromopropane diammonium(DTDD) was synthesized via quaternization reaction under the condition of microwave and high pressure using octadecyl diethanolamine and 1,3-dibromopropane as the main raw materials. The target compound was characterized by IR and 1H NMR, and its purity was determined by HPLC-ELSD. By analysing the single-factor and orthogonal array design experiments, the optimal synthesis conditions for the synthesis of DTDD by microwave method were determined as follows: microwave power was set to 900 W, reaction time was 8 h and reaction temperature was 140°C, reaching a yeild of 92%. Compared with the traditional heating method, the reaction rate using microwave synthesis was greatly increased. The critical micelle concentration(CMC), surface tension, Kraft point, and foam properties of the product and the traditional surfactant octadecylmethyldihydroxyethyl ammonium bromide(OMDAB) were determined. The performance test results showed that compared with OMDAB, the target product had good surface properties with the critical micelle concentration of 0.087 g/L and the corresponding surface tension γCMC of 31.09 mN/m.

【关键词】 多羟基表面活性剂高压微波界面合成
【Key words】 polyhydroxylsurfactantshigh-pressuremicrowaveinterfacesynthesis
【基金】 国家自然科学基金项目(21878058)
  • 【文献出处】 化工学报 ,CIESC Journal , 编辑部邮箱 ,2019年S1期
  • 【分类号】TQ423
  • 【被引频次】1
  • 【下载频次】97
节点文献中: