Adolphe Merkle Institute and Fribourg Center for Nanomaterials, University of Fribourg, Route de l'Ancienne Papeterie P.O. Box 209, 1723 Marly 1, Switzerland.
Langmuir. 2011 Jun 7;27(11):6622-7. doi: 10.1021/la200525u. Epub 2011 Apr 29.
We report on a single-step coating process and the resulting colloidal stability of silica-coated spindle-type hematite nanoparticles (NPs) decorated with a layer of poly(acrylic acid) (PAA) polyelectrolyte chains that are partially incorporated into the silica shell. The stability of PAA coated NPs as a function of pH and salt concentration in water was compared to bare hematite particles and simple silica-coated hematite NPs, studying their electrophoretic mobility and the hydrodynamic radius by dynamic light scattering. Particles coated with this method were found to be more stable upon the addition of salt at pH 7, and their aggregation at the pH of the isoelectric point is reversible. The hybrid coating appears to increase the colloidal stability in aqueous media due to the combination of the decrease of the isoelectric point and the electrosteric stabilization. This coating method is not limited to hematite particles but can easily be adapted to any silica-coatable particle.
我们报告了一种单步涂层工艺以及由此产生的带有聚(丙烯酸)(PAA)聚电解质链的硅涂层纺锤形赤铁矿纳米颗粒(NPs)的胶体稳定性,这些链部分掺入到硅壳中。将 PAA 涂层 NPs 的稳定性作为 pH 和盐浓度在水中的函数与裸露的赤铁矿颗粒和简单的硅涂层赤铁矿 NPs 进行了比较,通过动态光散射研究了它们的电泳迁移率和水动力半径。发现用这种方法涂覆的颗粒在 pH 7 下添加盐时更稳定,并且它们在等电点的聚集是可逆的。由于等电点的降低和电动稳定的结合,这种杂化涂层似乎增加了在水介质中的胶体稳定性。这种涂层方法不仅限于赤铁矿颗粒,而且可以很容易地适应任何可涂覆硅的颗粒。