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Completely engulfed olive/silicone oil Janus emulsions with gelatin and chitosan

机译:将明胶和壳聚糖完全吞噬的橄榄油/硅油Janus乳液

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Janus emulsions, formed by mixing two oil components (i.e., olive oil (OO) and silicone oil (SiO)) with water in the presence of two surface active biopolymers, i.e., gelatin and chitosan, are investigated in more detail. The stability of Janus droplets formed strongly depends on the polymer components used. The mixture of both biopolymers represents an extraordinary effect which can be related to the complex formation of gelatin and chitosan. Taken into account that under the given pH conditions, in the acidic pH range between 4 and 6, below the isoelectric point of gelatin, both polymers are polycations, one can conclude that non-Coulombic interactions are of relevance for the enhanced surface activity of the complexes. Dynamic interfacial tension (gamma) measurements by using the drop profile analysis tensiometry (PAT) indicate a strong adsorption of the polymer complexes at the olive oil/water interface in contrast to the silicone/water interface. In a first step, the polymer complexes are adsorbed at the interface, and in a second step, a more rigid skin-like polymer layer is formed. This first example of a polymer-stabilized Janus emulsion opens new perspectives for the application, e.g., in food emulsions or for making scaffold materials.
机译:在两种表面活性生物聚合物即明胶和壳聚糖的存在下,通过将两种油组分(即橄榄油(OO)和硅油(SiO))与水混合而形成的Janus乳液得到了更详细的研究。形成的Janus液滴的稳定性在很大程度上取决于所使用的聚合物组分。两种生物聚合物的混合物均表现出非凡的效果,这可能与明胶和壳聚糖的复杂形成有关。考虑到在给定的pH条件下,在4至6的酸性pH范围(低于明胶的等电点)下,两种聚合物均为聚阳离子,可以得出结论,非库伦相互作用与增强表面活性有关。复合体。通过使用液滴轮廓分析张力法(PAT)进行的动态界面张力(γ)测量表明,与有机硅/水界面相反,聚合物复合物在橄榄油/水界面处有很强的吸附力。在第一步中,将聚合物络合物吸附在界面上,并且在第二步中,形成更坚硬的皮肤状聚合物层。聚合物稳定的Janus乳液的第一个例子为例如在食品乳液或制造支架材料中的应用开辟了新的前景。

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