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生物胺分子量和结构对表面活性剂在气-水界面吸附的影响。

Impact of biogenic amine molecular weight and structure on surfactant adsorption at the air-water interface.

作者信息

Penfold Jeffrey, Thomas Robert K, Li Peixun

机构信息

ISIS, STFC, Rutherford Appleton Laboratory, Chilton, Didcot, Oxon OX11 0QX, UK; Physical and Theoretical Chemistry Laboratory, Oxford University, South Parks Road, Oxford OX1 3QZ, UK.

Physical and Theoretical Chemistry Laboratory, Oxford University, South Parks Road, Oxford OX1 3QZ, UK.

出版信息

J Colloid Interface Sci. 2016 Feb 1;463:199-206. doi: 10.1016/j.jcis.2015.10.058. Epub 2015 Oct 24.

Abstract

The oligoamines, such as ethylenediamine to pentaethylenetetramine, and the aliphatic biogenic amines, such as putrescine, spermidine and spermine, strongly interact with anionic surfactants, such as sodium dodecylsulfate, SDS. It has been shown that this results in pronounced surfactant adsorption at the air-water interface and the transition from monolayer to multilayer adsorption which depends upon solution pH and oligoamine structure. In the neutron reflectivity, NR, and surface tension, ST, results presented here the role of the oligoamine structure on the adsorption of SDS is investigated more fully using a range of different biogenic amines. The effect of the extent of the intra-molecular spacing between amine groups on the adsorption has been extended by comparing results for cadavarine with putrescine and ethylenediamine. The impact of more complex biogenic amine structures on the adsorption has been investigated with the aromatic phenethylamine, and the heterocyclic amines histamine and melamine. The results provide an important insight into how surfactant adsorption at interfaces can be manipulated by the addition of biogenic amines, and into the role of solution pH and oligoamine structure in modifying the interaction between the surfactant and oligoamine. The results impact greatly upon potential applications and in understanding some of the important biological functions of biogenic amines.

摘要

低聚胺,如乙二胺至五乙烯四胺,以及脂肪族生物胺,如腐胺、亚精胺和精胺,能与阴离子表面活性剂,如十二烷基硫酸钠(SDS)发生强烈相互作用。研究表明,这会导致表面活性剂在气-水界面发生显著吸附,并从单层吸附转变为多层吸附,这种转变取决于溶液的pH值和低聚胺的结构。在此呈现的中子反射率(NR)和表面张力(ST)结果中,我们使用一系列不同的生物胺更全面地研究了低聚胺结构对SDS吸附的作用。通过比较尸胺与腐胺和乙二胺的结果,扩展了胺基之间分子内间距程度对吸附的影响。我们还研究了更复杂的生物胺结构,如芳香族苯乙胺、杂环胺组胺和三聚氰胺对吸附的影响。这些结果为通过添加生物胺来控制表面活性剂在界面的吸附,以及溶液pH值和低聚胺结构在改变表面活性剂与低聚胺之间相互作用中的作用提供了重要见解。这些结果对潜在应用以及理解生物胺的一些重要生物学功能有很大影响。

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