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Influence of synthesis parameters on iron nanoparticle size and zeta potential

机译:合成参数对铁纳米粒子尺寸和ζ电势的影响

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Zero valent iron nanoparticles are of increasing interest in clean water treatment applications due to their reactivity toward organic contaminants and their potential to degrade a variety of compounds. This study focuses on the effect of organophosphate stabilizers on nanoparticle characteristics, including particle size distribution and zeta potential, when the stabilizer is present during nanoparticle synthesis. Particle size distributions from DLS were obtained as a function of stabilizer type and iron precursor (FeSO4·7H2O or FeCl3), and nanoparticles from 2 to 200 nm were produced. Three different organophosphate stabilizer compounds were compared in their ability to control nanoparticle size, and the size distributions obtained for particle volume demonstrated differences caused by the three stabilizers. A range of stabilizer-to-iron (0.05–0.9) and borohydride-to-iron (0.5–8) molar ratios were tested to determine the effect of concentration on nanoparticle size distribution and zeta potential. The combination of ferrous sulfate and ATMP or DTPMP phosphonate stabilizer produced stabilized nanoparticle suspensions, and the stabilizers tested resulted in varying particle size distributions. In general, higher stabilizer concentrations resulted in smaller nanoparticles, and excess borohydride did not decrease nanoparticle size. Zeta potential measurements were largely consistent with particle size distribution data and indicated the stability of the suspensions. Probe sonication, as a nanoparticle resuspension method, was minimally successful in several different organic solvents.
机译:零价铁纳米颗粒由于对有机污染物的反应能力以及降解各种化合物的潜力,因此在净水处理应用中受到越来越多的关注。这项研究的重点是当在纳米粒子合成过程中存在稳定剂时,有机磷酸盐稳定剂对纳米粒子特性的影响,包括粒度分布和zeta电位。根据稳定剂类型和铁前体(FeSO 4 ·7H 2 O或FeCl 3 )的不同,从DLS获得粒度分布。产生了2-200nm的纳米颗粒。比较了三种不同的有机磷酸酯稳定剂化合物控制纳米颗粒尺寸的能力,并且针对颗粒体积获得的尺寸分布证明了由三种稳定剂引起的差异。测试了一系列稳定剂与铁的摩尔比(0.05–0.9)和硼氢化物与铁的摩尔比(0.5–8),以确定浓度对纳米颗粒尺寸分布和zeta电位的影响。硫酸亚铁和ATMP或DTPMP膦酸酯稳定剂的组合产生了稳定的纳米颗粒悬浮液,测试的稳定剂导致了不同的粒度分布。通常,较高的稳定剂浓度导致较小的纳米颗粒,过量的硼氢化物不会减小纳米颗粒的尺寸。 Zeta电势测量值与粒度分布数据基本一致,并表明了悬浮液的稳定性。探针超声处理作为一种纳米颗粒重悬方法,在几种不同的有机溶剂中获得的成功最少。

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