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首页> 外文期刊>Nanoscale Research Letters >Direct Probing of Dispersion Quality of ZrO2 Nanoparticles Coated by Polyelectrolyte at Different Concentrated Suspensions
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Direct Probing of Dispersion Quality of ZrO2 Nanoparticles Coated by Polyelectrolyte at Different Concentrated Suspensions

机译:聚电解质在不同浓度悬浮液中包覆ZrO 2 纳米粒子的分散质量的直接探测

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This study reports useful application of the electrokinetic sonic amplitude (ESA) technique in combination with rheometry and electron microscopy techniques for direct probing the stability of low and high-concentrated zirconia (ZrO~(2)) nanosuspensions in the presence of an alkali-free anionic polyelectrolyte dispersant Dolapix CE64. A comparative study of the electrokinetic characteristics and the rheological behavior of concentrated ZrO~(2) nanosuspensions has been done. Good agreement was obtained from relationship between the electrokinetic characteristics (zeta potential, ESA signal), viscosity, and its pH dependence for each concentrated ZrO~(2) nanosuspension with different dispersant concentration in the range of 0.9–1.5?mass%. A nanoscale colloidal hypothesis is proposed to illustrate that the addition of different amounts of dispersant influences on both the stability and the electrokinetic and rheological properties of concentrated ZrO~(2) nanosuspensions. It is found that an optimum amount of 1.4?mass% dispersant at the inherent pH (9.2) can be attached fully onto the nanoparticles with sufficient electrosteric dispersion effects, suitable for casting applications. Supplementary scanning electron microscopy (SEM) and high-resolution transmission electron microscopy (HR-TEM) analyses followed by colorization effect were taken to verify the visible interaction between dispersant and nanoparticles surfaces. SEM and HR-TEM images proved the existence of visible coverage of dispersant on the surface of individual nanoparticles and showed that thin polyelectrolyte layers were physically bound onto the particles’ surfaces. This study will be of interest to materials scientists and engineers who are dealing with dispersion technology, nanoparticle surface treatments, functionalization, characterization, and application of bioanoparticle suspensions at various concentrations using different types of polymers.
机译:这项研究报告了电动声振幅(ESA)技术与流变学和电子显微镜技术相结合的有用应用,可在无碱存在下直接探测低浓度和高浓度氧化锆(ZrO〜(2))纳米悬浮液的稳定性阴离子聚电解质分散剂Dolapix CE64。对浓缩的ZrO〜(2)纳米悬浮液的电动特性和流变行为进行了比较研究。电动势特性(ζ电位,ESA信号),粘度及其对pH依赖性的关系在每种分散剂浓度在0.9-1.5%(质量)的范围内的浓缩ZrO〜(2)纳米悬浮液之间都具有良好的一致性。提出了一种纳米级胶体假说,以说明添加不同数量的分散剂对浓ZrO〜(2)纳米悬浮液的稳定性以及电动和流变性能的影响。发现在固有pH(> 9.2)时,最佳量的1.4%质量百分比的分散剂可以完全附着在纳米粒子上,并具有足够的静电空间分散效应,适用于铸造应用。进行了补充扫描电子显微镜(SEM)和高分辨率透射电子显微镜(HR-TEM)分析,以及随后的着色效果,以验证分散剂和纳米颗粒表面之间的可见相互作用。 SEM和HR-TEM图像证明了分散剂在单个纳米颗粒表面上的可见覆盖范围,并表明聚电解质薄层物理结合在颗粒表面上。从事分散技术,纳米颗粒表面处理,功能化,表征以及使用不同类型聚合物的各种浓度生物/纳米颗粒悬浮液处理的材料科学家和工程师,将对此研究感兴趣。

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