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Characterization of TiO2 nanoparticle suspensions for electrophoretic deposition

机译:用于电泳沉积的TiO2纳米颗粒悬浮液的表征

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The rheology of suspensions is critically important for the successful achievement of defect-free TiO2 deposits by electrophoretic deposition (EPD). The rheological behaviour of TiO2 nanoparticle suspensions in acetylacetone with and without iodine was investigated over a broad solid-concentration range (0.3-2.5 wt.%) and at different shear rates (<(gamma) over dot> = 10-250 s(-1)). The influence of these parameters on the quality of TiO2 films obtained by EPD on stainless steel substrates was assessed. The pure solvent and the 1 wt.% TiO2 nanoparticles suspension without iodine exhibited shear-thickening flow behaviour. For other concentrations, the suspensions showed shear-thinning behaviour followed by an apparent shear-thickening effect at a critical shear rate (100 s(-1)). For the suspension with 1 wt.% TiO2 containing iodine, a shear-thickening flow behaviour was observed over the whole shear rate range investigated. The maximum solids fraction (phi(m)) was experimentally determined from a linear relationship between solid concentration and viscosity. The estimated value was phi(m) = 7.94 wt.% for this system. Using a suspension with 1 wt.% concentration, good-quality TiO2 deposits on stainless steel planar substrates were obtained by EPD at constant voltage condition. The influence of pH on suspension stability was determined in the range pH = 1-9, being pH approximate to 5 the optimal value for this system in terms of EPD results.
机译:悬浮液的流变学对于通过电泳沉积(EPD)成功实现无缺陷的TiO2沉积至关重要。在较宽的固体浓度范围(0.3-2.5 wt。%)和不同的剪切速率下(<(点上的γ)> = 10-250 s(-),研究了含或不含碘的乙酰丙酮中TiO2纳米颗粒悬浮液的流变行为。 1))。评估了这些参数对通过EPD在不锈钢基材上获得的TiO2薄膜质量的影响。不含碘的纯溶剂和1 wt%的TiO2纳米颗粒悬浮液表现出剪切增稠的流动行为。对于其他浓度,悬浮液在临界剪切速率(100 s(-1))下表现出剪切稀化行为,随后表现出明显的剪切稠化作用。对于具有1重量%的含碘的TiO 2的悬浮液,在研究的整个剪切速率范围内观察到剪切增稠的流动行为。根据固体浓度和粘度之间的线性关系,通过实验确定最大固体分数(phi(m))。该系统的估计值为phi(m)= 7.94 wt。%。使用浓度为1 wt。%的悬浮液,通过EPD在恒定电压条件下,可以在不锈钢平面基板上获得高质量的TiO2沉积物。在pH = 1-9的范围内确定了pH对悬浮液稳定性的影响,根据EPD结果,pH约为该系统最佳值的5。

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