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Influence of Substructures on the Spreading Ability and Hydrolysis Resistance of Double-Tail Trisiloxane Surfactants

机译:亚结构对双尾三硅氧烷表面活性剂扩展能力和耐水解性的影响

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摘要

Four types of novel double-tail trisiloxane surfactants of the general formula Me3SiOSiMeR~1OSiMe3 (R~1 = -(CH2)3NR~2CH2CH(OH)CH2(OCH2CH2)_xOCH3; R~2 = -CH2CH(OH)CH2OCH2(CH2)_yCH3, -CH2(CH2)3CH3, -CH2CH2CH(CH3)2; x = 8.4, 12.9, 17.5, 22; y = 2, 6), have been synthesized. Their structures were characterized by proton and carbon nuclear magnetic resonance. Most of them are able to reduce the surface tension of water to less than 24 mN/m at concentration levels of 10~(-5) mol/L and 10~(-4) mol/L. The emphasis was on the influence of substructures on their spreading ability and hydrolysis resistance. The results showed that a weaker hydrophilicity of a surfactant molecule, a larger molar ratio of methyl to methylene in the whole hydrophobic groups, more flexible hydrophobic groups and introduction of a methyl group in the spacer can all improve the spreading ability of the double-tail trisiloxane surfactant solutions on low-energy solid surfaces. The double-tail trisiloxane surfactants 1F and 2F are stable for more than 270 days in a neutral environment (pH 7.0). The hydrolysis resistance of the double-tail trisiloxane surfactants can be improved by a weaker hydrophilicity of the surfactant molecule, and a larger volume of the hydrophobic groups.
机译:通式为Me3SiOSiMeR〜1OSiMe3的四种新型双尾三硅氧烷表面活性剂(R〜1 =-(CH2)3NR〜2CH2CH(OH)CH2(OCH2CH2)_xOCH3; R〜2 = -CH2CH(OH)CH2OCH2(CH2)已经合成了_yCH 3,-CH 2(CH 2)3 CH 3,-CH 2 CH 2 CH(CH 3)2; x = 8.4、12.9、17.5、22; y = 2、6)。它们的结构以质子和碳核磁共振为特征。它们中的大多数能够在10〜(-5)mol / L和10〜(-4)mol / L的浓度水平下将水的表面张力降低至24 mN / m以下。重点是亚结构对其扩展能力和抗水解性的影响。结果表明,表面活性剂分子的亲水性较弱,整个疏水基团中甲基与亚甲基的摩尔比较大,疏水性基团更具柔性以及在间隔基中引入甲基都可以改善双尾的铺展能力。低能量固体表面上的三硅氧烷表面活性剂溶液。双尾三硅氧烷表面活性剂1F和2F在中性环境(pH 7.0)下稳定超过270天。可以通过表面活性剂分子的较弱的亲水性和较大体积的疏水基团来改善双尾三硅氧烷表面活性剂的耐水解性。

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