含有机反离子的双子季铵盐的合成与性能
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TQ423.3

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金山区产学研科技成果转化项目(2020-CXY-16);中轻集团科技创新基金项目(2020);中国日用化学工业研究院研究基金(RIDCI 2019)。


Preparation and properties of Gemini quaternary ammonium salts with organic counterions
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Jinshan District Industry-University-Research Technology Achievement Transformation Project(2020-CXY-16); RIDCI Research Funds (RIDCI 2019); Science and Technology Innovation Fund Project of Sinolight Corporation.

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    摘要:

    以十二烷基二甲基叔胺、环氧氯丙烷和对甲基苯磺酸为原料,合成了一种反离子含有机酸根的异丙醇基双子季铵盐GC-S。通过正交实验优化合成工艺,得到合成的最佳反应时间、反应温度与物质的量比。利用FTIR、1HNMR和ESI-MS对产物结构进行鉴定,证明了预期结构的合成。GC-S具有较高的表面活性,cmc为24.06 mN/m,CMC为2.09×10-4 mol/L。与以氯为反离子的传统双子季铵盐GC-Cl和单链季铵盐1231相比,GC-S展现出更好的润湿性(其棉片下沉时间较短,平均为175.2 s);展现出更好的起泡和稳泡性能(其起始泡沫体积较大,为390 mL;5 min时消泡体积较小,为20 mL);展现出更好的乳化性能(其分出定量水层的时间较长,为317 s);对大肠杆菌和金黄色葡萄球菌均表现出极高的抑菌活性。

    Abstract:

    An isopropanol-based Gemini quaternary salt (GC-S) with organic counterion was synthesized from dodecyl dimethyl tertiary amine, epichlorohydrin and p-toluenesulfonic acid. The synthesis process was optimized by orthogonal experimental. The products were characterized by FTIR , 1HNMR and ESI-MS, which demonstrated the successful synthesis of the expected structures. GC-S had a high surface activity with a cmc of 24.06 mN/m and a CMC of 2.09×10-4 mol/L. GC-S was compared with conventional Gemini quaternary ammonium salt with chloride as counterions (GC-Cl) and single-chain quaternary ammonium salt (1231). The results indicated that GC-S had better wettability because of the shortest sink time (175.2 s) for canvas swabs in aqueous solution. GC-S showed better foaming and foam stabilization performance due to larger starting foam volume (390 mL) and smaller defoaming volume (20 mL). GC-S displayed better emulsification performance because the partition out the quantitative aqueous layer from the emulsification system of aqueous solutions with liquid paraffin needed a larger time (317 s). GC-S (10 mg/kg) showed very high antibacterial activity against both E. coli and Staphylococcus aureus.

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丁慧,姜亚洁,王亚魁,鞠洪斌,耿涛.含有机反离子的双子季铵盐的合成与性能[J].精细化工,2022,39(1):

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  • 收稿日期:2021-07-21
  • 最后修改日期:2021-10-11
  • 录用日期:2021-10-15
  • 在线发布日期: 2021-12-06
  • 出版日期: