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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Magnetite Hydrosols with Positive and Negative Surface Charge of Nanoparticles: Stability and Effect on the Lifespan of Drosophila melanogaster
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Magnetite Hydrosols with Positive and Negative Surface Charge of Nanoparticles: Stability and Effect on the Lifespan of Drosophila melanogaster

机译:磁铁矿水溶液,纳米粒子的正面和负面电荷:稳定性和对果蝇Melanogaster的寿命的影响

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摘要

This paper presents sols of uncoated and citric acid-coated Fe3O4 nanoparticles obtained by a combination of coprecipitation and sonochemistry methods. A stable concentrated CA-Fe3O4 sol synthesized by a combination of coprecipitation with an inconvenient Fe-2(+)/Fe3+ ratio, modification with citric acid and US treatment was obtained for the first time. A comparative analysis of the composition and morphology of nanoparticles was performed. The sols are oppositely charged and behave as a typical ferrofluid. The citric acid-modified sol is aggregatively stable over wider ranges of pH and electrolyte concentration, but it becomes less stable with the temperature increase. DLVO calculations showed that steric repulsion forces are a vital factor contributing to increased aggregative stability in a modified Fe3O4 sol. The experiments have revealed the magneto-optical effect in a modified Fe3O4 sol with an electrolyte concentration of 0.025-0.075 M caused by a high potential barrier and a deep secondary minimum in pairwise interaction curves. The "pK spectroscopy" mathematical model to describe the potentiometric curves of synthesized magnetite sols was used for the first time. According to potentiometric titration, the ions of the electrolyte practically do not contribute to formation of a surface charge in modified Fe3O4 with a change in pH due to blocking the magnetite surface by citric acid molecules. Drosophila melanogaster was used as a model to show that Fe3O4 in chronic exposure has a low toxic effect.
机译:本文介绍了通过共沉淀和多种子化学方法的组合获得的未涂覆和醋酸涂覆的Fe3O4纳米粒子。通过具有不方便的Fe-2(+)/ Fe3 +比,与柠檬酸和美国治疗的改性,通过共沉淀的组合合成的稳定的浓缩Ca-Fe 3 O 4溶胶。进行了纳米颗粒的组成和形态的对比分析。溶胶与典型的铁磁流体相反。柠檬酸改性的溶胶在更宽的pH和电解质浓度范围内聚集稳定,但随着温度的增加,它变得更不稳定。 DLVO计算表明,空间排斥力是有助于改性Fe3O4溶胶中的聚集稳定性的重要因素。实验已经揭示了在经电解质浓度为0.025-0.075M的改性Fe3O4溶胶中的磁光效应,其由高电位屏障和对成对相互作用曲线的深层二次最小。第一次使用“PK光谱”数学模型描述合成磁铁杆溶胶的电位曲线。根据电位滴定,电解质的离子实际上没有导致在修饰的Fe3O4中形成表面电荷,其由于通过柠檬酸分子阻断磁铁矿表面而导致的pH变化。果蝇Melanogaster被用作模型,以表明慢性暴露中的Fe3O4具有低毒性效果。

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