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首页> 外文期刊>Environmental Science: Nano >Colloidal and chemical stabilities of iron oxide nanoparticles in aqueous solutions: the interplay of structural, chemical and environmental drivers
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Colloidal and chemical stabilities of iron oxide nanoparticles in aqueous solutions: the interplay of structural, chemical and environmental drivers

机译:水溶液中氧化铁纳米粒子的胶体和化学稳定性:结构,化学和环境司机的相互作用

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Nanoparticle (NP) stability in aqueous environments is dependent upon many parameters including environmental conditions, NP concentrations as well as NP intrinsic characteristics. In this study, the effects of pH and surface modifications on the colloidal and chemical stabilities of nanosized magnetite (Fe3O4), maghemite (gamma-Fe2O3) and hematite (alpha-Fe2O3) are investigated. Because changes in surface charge affect the size distribution of NP, pH plays a key role in driving the colloidal stability. More NP aggregation is observed at pH values close to the pH of zero point of charge (pHzpc). Coating of magnetite with humic acid (HA) and phosphatidylcholine (PC) affects the electrostatic interactions and then the colloidal behavior of NP. The rapid transformation of magnetite into maghemite through air oxidation results in significant modification of both surface charge and specific surface area of NP. Because the maghemite almost exclusively formed mu m-scale aggregates, the colloidal stability of magnetite is expected to be hindered in oxic environments. For hematite, the particle size distribution data emphasize the influence of both pH and intrinsic surface properties in colloidal stability. These findings may have strong implications for an accurate prediction of the transformation and mobility of Fe-nanoparticles under environmentally relevant conditions and thus their fate in nature.
机译:纳米粒子(NP)含水环境中的稳定性取决于许多参数,包括环境条件,NP浓度以及NP内在特征。在该研究中,研究了pH和表面修饰对纳米磁铁矿(Fe3O4),磁性石油(Gamma-Fe2O3)和赤铁矿(α-Fe2O3)的胶体和化学稳定性的影响。由于表面电荷的变化影响NP的尺寸分布,因此pH在驱动胶体稳定性方面发挥着关键作用。在接近零充电点的pH值(PHZPC)的pH值下观察到更多NP聚集。用腐殖酸(HA)和磷脂酰胆碱(PC)的磁铁矿涂覆影响静电相互作用,然后是NP的胶体行为。通过空气氧化将磁铁矿的快速转化为磁性氧化导致NP的表面电荷和比表面积的显着改性。因为磁石岩几乎完全形成了MU M级聚集体,所以预期磁铁矿的胶体稳定性在氧环境中受阻。对于赤铁矿,粒度分布数据强调pH和固有表面性质在胶体稳定性中的影响。这些发现可能具有很强的影响,可以对环境相关条件下的Fe纳米颗粒的转化和迁移率准确预测,因此它们的命运本质上。

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