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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Encapsulation and surface charge manipulation of organic and inorganic colloidal substrates by multilayered polyelectrolyte films
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Encapsulation and surface charge manipulation of organic and inorganic colloidal substrates by multilayered polyelectrolyte films

机译:多层聚电解质薄膜对有机和无机胶体基质的包封和表面电荷处理

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摘要

Employing layer-by-layer (LbL) technique we could encapsulate both organic and inorganic nano- and microparticulate substrates by multilayer polyelectrolyte films of variable thicknesses. It has been observed that the uniformity of the polyelectrolyte multilayer does not depend severely on the chemical nature of particulate substrate; rather it depends on the initial surface charge density or ζ-potential of their bare surface. Higher ζ-potential of organic albumin nanoparticles helps to keep the polyelectrolyte chains unfolded. On the other hand, a lower ζ-potential of inorganic microparticles such as SiO_2 induces a folding of dangling polyelectrolyte chains, forming domains of their aggregates or complexes at the particle surface, making the encapsulating multilayer inhomogeneous.
机译:使用逐层(LbL)技术,我们可以通过厚度可变的多层聚电解质薄膜封装有机和无机纳米和微粒基材。已经观察到,聚电解质多层的均匀性不严重取决于颗粒基质的化学性质;反之亦然。而是取决于裸露表面的初始表面电荷密度或ζ电位。有机白蛋白纳米颗粒的较高ζ电位有助于保持聚电解质链不折叠。另一方面,较低的无机微粒(如SiO_2)的ζ电位引起悬空的聚电解质链折叠,在颗粒表面形成其聚集体或复合物的畴,从而使封装多层不均匀。

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