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Optimization of process parameters using D-optimal design for synthesis of ZnO nanoparticles via sol-gel technique

机译:使用D-最佳设计优化工艺参数以通过溶胶-凝胶技术合成ZnO纳米颗粒

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摘要

The experimental conditions for the synthesis of ZnO nanoparticles to produce minimal size were optimized using the D-optimal design. The influence of process parameters involves molar ratio of the starting materials, pH and the calcination temperature on the particle size were evaluated using the polynomial regression. The optimum conditions revealed by the model for obtaining a minimum particle size of ZnO were predicted to have a molar ratio of 1.76, pH of 1.50 and calcination at 402.2 °C. The obtainable particle size upon applying the model is 22.9 nm in compare to experimental result of 18 ± 2 nm was obtained.
机译:使用D优化设计优化了合成ZnO纳米粒子以产生最小尺寸的实验条件。工艺参数的影响涉及原料的摩尔比,pH和煅烧温度对粒度的影响,使用多项式回归进行评估。该模型揭示的获得最小ZnO粒度的最佳条件预计为1.76的摩尔比,1.50的pH和402.2°C的煅烧。应用该模型时可获得的粒径为22.9 nm,而获得的实验结果为18±2 nm。

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