首页> 外文期刊>Tenside Surfactants Detergents: Journal for Theory, Technology and Application of Surfactants >Synthesis and Characterization of a Novel Class of Zwitterionic Fluorocarbon Surfactants Based on Perfluorobutyl
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Synthesis and Characterization of a Novel Class of Zwitterionic Fluorocarbon Surfactants Based on Perfluorobutyl

机译:基于全氟丁基的两类新型二碳氟碳表面活性剂的合成与表征

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Perfluorooctane sulfonate (PFOS) and its derivatives had been banned due to their potential environmental hazards, although they possessed excellent surface activity. An effective method to solve this problem was to shorten the fluorocarbon chain of these surfactants from C8H17 to C4F9. As previous studies had shown, zwitterionic surfactants possess higher surface activity but have lower toxicity compared to other types of surfactants. In view of this, a class of novel zwitterionic fluorocarbon surfactants (n-CFNA-Br) with perfluorobutyl moiety was synthesized in this work. Their structures were characterized by FTIR, H-1 NMR, C-13 NMR, F-19 NMR and MS. The results showed that all synthesized n-CFNA-Br had almost the same minimum surface tension, but their critical micelle concentration (CMC) decreased with increasing length of hydrophobic carbon chain. In pure water, the surface tension at the CMC (gamma(CMC)) of the four n-CFNA-Br were about 20 mN/m, and the CMC values were 7.73 mmol/L for 1-CFNA-Br, 4.70 mmol/L for 2-CFNA-Br, 4.13 mmol/L for 3-CFNA-Br, and 3.36 mmol/L for 4-CFNA-Br, indicating high efficiency and effectiveness. In 0.1 mol/L NaCl, the CMC values reduced to less than half of the CMC values measured in the pure aqueous surfactant solution, while the surface tensions gamma(CMC) remained almost unchanged, indicating good salinity tolerance of the synthesized surfactants. The acidic surfactant solutions exhibited similar CMC values to the saline solutions, but the surface tension cCMC increased slightly to 25 mN/m. However, further investigation showed that the n-CFNA-Br surfactants exhibited poor surface activity in alkaline solution (0.1 mol/L NaOH). In the pH range of 6.6 to 10.4, white precipitates appeared in the surfactant solutions after some time, indicating that the n-CFNA-Br are not suitable for use in alkaline systems with pH greater than 6.6.
机译:全氟辛烷磺酸(PFOS)及其衍生物因其潜在的环境危害而被禁用,尽管它们具有优异的表面活性。解决这一问题的有效方法是将这些表面活性剂的氟碳链从C8H17缩短到C4F9。之前的研究表明,两性离子表面活性剂具有较高的表面活性,但与其他类型的表面活性剂相比毒性较低。鉴于此,本文合成了一类新型的含全氟丁基的两性氟表面活性剂(n-CFNA-Br)。通过FTIR、H-1 NMR、C-13 NMR、F-19 NMR和MS对其结构进行了表征。结果表明,所有合成的n-CFNA-Br具有几乎相同的最小表面张力,但其临界胶束浓度(CMC)随疏水碳链长度的增加而降低。在纯水中,四种n-CFNA-Br在CMC(γ(CMC))下的表面张力约为20 mN/m,1-CFNA-Br的CMC值为7.73 mmol/L,2-CFNA-Br为4.70 mmol/L,3-CFNA-Br为4.13 mmol/L,4-CFNA-Br为3.36 mmol/L,表明其高效性和有效性。在0.1 mol/L NaCl中,CMC值降至纯表面活性剂水溶液中测得的CMC值的一半以下,而表面张力γ(CMC)几乎保持不变,表明合成的表面活性剂具有良好的耐盐性。酸性表面活性剂溶液的CMC值与盐水溶液相似,但表面张力cCMC略微增加至25 mN/m。然而,进一步研究表明,n-CFNA-Br表面活性剂在碱性溶液(0.1 mol/L NaOH)中表现出较差的表面活性。在pH值为6.6至10.4的范围内,经过一段时间后,表面活性剂溶液中出现白色沉淀,表明n-CFNA-Br不适合用于pH值大于6.6的碱性系统。

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