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磁铁矿/聚乳酸核壳纳米颗粒的胶体稳定性

Colloidal stability of magnetite/poly(lactic acid) core/shell nanoparticles.

作者信息

Gómez-Lopera Salvador A, Arias José L, Gallardo Visitación, Delgado Angel V

机构信息

Department of Applied Physics, Polytechnic University of Cartagena, Spain.

出版信息

Langmuir. 2006 Mar 14;22(6):2816-21. doi: 10.1021/la0530079.

Abstract

In this work, we describe an experimental investigation on the colloidal stability of suspensions of three kinds of particles, including magnetite, poly(lactic acid) (PLA), and composite core/shell colloids formed by a magnetite core surrounded by a PLA shell. The experiments were performed with dilute suspensions, so that recording the optical absorbance with time gives a suitable indication of the aggregation and sedimentation of the suspensions. The method allowed us to distinguish very accurately between the different surface and magnetic forces responsible for the structures acquired by particle aggregates. Thus, the pure PLA suspensions are very sensitive to ionic strength and almost unaffected by pH changes. On the contrary, the stability of magnetite systems is mainly controlled by pH. The effect of vertical magnetic fields on the stability of magnetite and magnetite/PLA suspensions is also investigated. The PLA shell reduces the magnetic responsiveness of magnetite, but it is demonstrated that the mixed particles can also form structures induced by the field, despite their lower magnetization, and they can be considered in magnetically targeted biomedical applications.

摘要

在这项工作中,我们描述了对三种颗粒悬浮液的胶体稳定性进行的实验研究,这三种颗粒包括磁铁矿、聚乳酸(PLA)以及由磁铁矿核被PLA壳包围而成的复合核壳胶体。实验是在稀悬浮液中进行的,因此记录光吸收随时间的变化能很好地指示悬浮液的聚集和沉降情况。该方法使我们能够非常准确地区分导致颗粒聚集体形成特定结构的不同表面力和磁力。因此,纯PLA悬浮液对离子强度非常敏感,几乎不受pH值变化的影响。相反,磁铁矿体系的稳定性主要受pH值控制。我们还研究了垂直磁场对磁铁矿和磁铁矿/PLA悬浮液稳定性的影响。PLA壳降低了磁铁矿的磁响应性,但结果表明,尽管混合颗粒的磁化强度较低,但它们也能形成由磁场诱导的结构,并且可用于磁靶向生物医学应用。

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