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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >The Role of Citric Acid in the Stabilization of Nanoparticles and Colloidal Particles in the Environment: Measurement of Surface Forces between Hafnium Oxide Surfaces in the Presence of Citric Acid
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The Role of Citric Acid in the Stabilization of Nanoparticles and Colloidal Particles in the Environment: Measurement of Surface Forces between Hafnium Oxide Surfaces in the Presence of Citric Acid

机译:柠檬酸在环境中纳米粒子和胶体颗粒稳定的作用:在柠檬酸存在下氧化铪表面之间的表面力的测量

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摘要

The interactions between colloidal particles and nanoparticles determine solution stability and the structures formed when the particles are unstable to flocculation. Therefore, knowledge of the interparticle interactions is important for understanding the transport, dissolution, and fate of particles in the environment. The interactions between particles are governed by the surface properties of the particles, which are altered when species adsorb to the surface. The important interactions in the environment are almost never those between the bare particles but rather those between particles that have been modified by the adsorption of natural organic materials. Citric acid is important in this regard not only because it is present in soil but also as a model of humic and fulvic acids. Here we have studied the surface forces between the model metal oxide surface hafnia in the presence of citric acid in order to understand the stability of colloidal particles and nanoparticles. We find that citric acid stabilizes the particles over a wide range of pH at low to moderate ionic strength. At high ionic strength, colloidal particles will flocculate due to a secondary minimum, resulting in aggregates that are dense and easily redispersed. In contrast, nanoparticles stabilized by citric acid remain stable at high ionic strengths and therefore exist in solution as individual particles; this will contribute to their dispersion in the environment and the uptake of nanoparticles by mammalian cells.
机译:胶体颗粒和纳米颗粒之间的相互作用确定溶液稳定性,并且当颗粒不稳定到絮凝时形成的结构。因此,对颗粒间相互作用的知识对于了解环境中粒子的运输,溶解和命运是重要的。颗粒之间的相互作用受颗粒的表面性质来控制,当物种吸附到表面时被改变。环境中的重要相互作用几乎绝不是裸粒子之间的相互作用,而是通过天然有机材料的吸附来改性的颗粒之间的相互作用。柠檬酸在这方面很重要,不仅是因为它存在于土壤中,而且作为腐殖液和富含酸酸的模型。在这里,我们在柠檬酸存在下研究了模型金属氧化物表面Hafnia之间的表面力,以了解胶体颗粒和纳米颗粒的稳定性。我们发现柠檬酸在低至中间离子强度下稳定颗粒在宽范围的pH上。在高离子强度下,胶体颗粒将由于二次最低限制而絮凝,导致聚集体,致密,易于重新分离。相反,通过柠檬酸稳定的纳米颗粒在高离子强度下保持稳定,因此存在于单个颗粒的溶液中;这将有助于它们在环境中的分散和哺乳动物细胞的纳米颗粒的吸收。

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    Institute for Materials Chemistry and Engineering Kyushu University CE41 ITO Campus 744 Motooka Nishiku Fukuoka 819-0395 Japan;

    Department of Applied Mathematics Research School of Physics and Engineering Australian National University Canberra ACT 0200 Australia;

    Department of Applied Mathematics Research School of Physics and Engineering Australian National University Canberra ACT 0200 Australia;

    Institute for Materials Chemistry and Engineering Kyushu University CE41 ITO Campus 744 Motooka Nishiku Fukuoka 819-0395 Japan;

    School of Engineering and Information Technology Murdoch University 90 South St. Murdoch 6150 WA Australia;

    Department of Applied Mathematics Research School of Physics and Engineering Australian National University Canberra ACT 0200 Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理化学(理论化学)、化学物理学;化学;
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