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首页> 外文期刊>Journal of Colloid and Interface Science >Chitosan-fatty acid interaction mediated growth of Langmuir monolayer and Langmuir-Blodgett films
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Chitosan-fatty acid interaction mediated growth of Langmuir monolayer and Langmuir-Blodgett films

机译:壳聚糖 - 脂肪酸相互作用介导的Langmuir Monolayer和Langmuir-Blodgett薄膜生长

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The interaction of chitosan with bio-membranes, which plays important role in deciding its use in biological applications, is realized by investigating the interaction of chitosan with stearic acid (fatty acid) in Langmuir monolayers (at air water interface) and Langmuir-Blodgett (LB) films (after transferring it onto solid substrate). It is found from the pressure-area isotherms that the chitosan insertion causes an expansion of chitosan-fatty acid hybrid monolayers, which reduces the elasticity and make the film heterogeneous. It is likely that at low surface pressure chitosan is situated at the interface, interacting with stearic acid molecules via electrostatic and hydrophobic interactions whereas at high pressure chitosan mainly located at subsurface beneath stearic acid molecules. In the latter case the interaction is predominantly electrostatic yielding very small contribution to the surface pressure. The reduction of temperature of the subphase water allows more number of chitosan molecules to reach surface to increase the pressure/interaction. On the other hand, although pure chitosan is found difficult to relocate on the substrate from air-water interface due to its hydrophilic-like nature, it alongside stearic acid (amphiphilic molecules) can be transferred onto substrate using LB technique as evident from infrared spectra. Their out-of plane and in-plane structures, as extracted from two complementary surface sensitive techniques- X-ray reflectivity and atomic force microscopy, are found strongly dependent on the chitosan mole fraction and the deposition pressure. These analysis of the film-structure will essentially allow one to model the system better and provide better insight into the interaction. (C) 2017 Elsevier Inc. All rights reserved.
机译:壳聚糖与生物膜的相互作用在决定其在生物学应用中起着重要作用,通过研究壳聚糖与朗米尔单层(在空中水界面)和Langmuir-Blodgett( LB)薄膜(将其转移到固体基质后)。从压力区等温线中发现壳聚糖插入导致壳聚糖 - 脂肪酸杂交单层的膨胀,这降低了弹性并使膜是异质的。在低表面压力下,壳聚糖位于界面,通过静电和疏水相互作用与硬脂酸分子相互作用,而在高压壳聚糖主要位于硬脂酸分子下面的地下。在后一种情况下,相互作用主要是静电产生对表面压力的非常小的贡献。偶联水的温度的降低允许更多数量的壳聚糖分子到达表面以增加压力/相互作用。另一方面,虽然发现纯壳聚糖由于其亲水性的性质而难以从空气 - 水界面搬迁到基板上,但是,它旁边的硬脂酸(两亲分子)可以使用LB技术从红外光谱中显而易见的。从两种互补表面敏感技术 - X射线反射率和原子力显微镜中提取的它们外平面和面内结构被发现强烈依赖于壳聚糖摩尔分数和沉积压力。这些分析的薄膜结构将基本上允许更好地建模系统并提供更好地洞察互动。 (c)2017年Elsevier Inc.保留所有权利。

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