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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Gemini surfactant/DNA complex monolayers at the air-water interface: Effect of surfactant structure on the assembly, stability, and topography of monolayers
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Gemini surfactant/DNA complex monolayers at the air-water interface: Effect of surfactant structure on the assembly, stability, and topography of monolayers

机译:双子表面活性剂/ DNA复合物在空气-水界面的单层:表面活性剂结构对单层组装,稳定性和形貌的影响

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The formation of complex monolayers between gemini surfactants (CsH2s-alpha,omega-(CmH2m+1N+(CH3)(2)Br-)(2), abbreviated as C12-Cs-C12, s = 3, 4, 6, 8, 10, 12) and DNA at the air-water interface was systematically investigated. The polyion-complex monolayers formed in situ through the electrostatic attraction between the ammonium groups of gemini surfactants and the phosphate groups of DNA. The effect of surfactant spacer length on the surface properties was investigated. A turning point of the surface properties (extrapolated molecular area and collapse pressure) of the gemini surfactant/DNA complex monolayers appears when the surfactant spacer is above a certain length (s = 6). The gemini surfactant spacer taking a reverse U-shape conformation at the air-water interface is proposed to interpret the turning point. A quantitative kinetic analysis of the decay curves further confirms that the turning point appears at the surfactant spacer above its critical length, s = 6. Moreover, the surface topographies of the gemini surfactant/DNA complex monolayers were controlled by the spacer length of the gemini surfactants, which may be important in surface patterning and nanofabrication. [References: 60]
机译:双子表面活性剂(CsH2s-alpha,ω-(CmH2m + 1N +(CH3)(2)Br-)(2)之间的复合单层形成,缩写为C12-Cs-C12,s = 3、4、6、8, 10,12)和空气-水界面处的DNA进行了系统研究。通过双子表面活性剂的铵基团和DNA的磷酸基团之间的静电吸引原位形成聚离子复合物单层。研究了表面活性剂间隔物长度对表面性能的影响。当表面活性剂间隔物超过一定长度(s = 6)时,双子表面活性剂/ DNA复合物单层的表面特性(外推的分子面积和塌陷压力)出现拐点。提出了双子表面活性剂间隔物,其在气-水界面处呈反U形构型,以解释转折点。衰减曲线的定量动力学分析进一步证实,拐点出现在表面活性剂间隔物的临界长度以上,即s =6。此外,双子表面活性剂/ DNA复合物单层的表面形貌由双子化合物的间隔物长度控制表面活性剂,可能在表面图案和纳米加工中很重要。 [参考:60]

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