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Improving Dimensional Stability of Ag-doped TiO_2 Nanoparticles Through Experimental Design

机译:通过实验设计提高Ag掺杂的TiO_2纳米粒子的尺寸稳定性

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The efficiency and competitiveness of using nanomaterials can be increased through introducing scientific experimental designs. For obtaining experimental models which can better approximate the real technological systems, a sufficient number of control factors and of necessary experiment units should be taken into account, having in view their economical aspect, too. Considering the importance of Ag-doped TiO_2 nanoparticles in such domains as industry, environmental protection, health, etc., it is important for manufacturers to obtain nanoparticles of equal dimensions. The present paper is analyzing the ways of improving dimensional stability of Ag-doped TiO_2 nanoparticles produced by the microwave-hydrothermal (M-H) method. In one case, a two-level L_8 Taguchi design was used in 8 experiments, with seven control factors. In the other case, the Draper-Lin design of 40 experiments for 7 factors at two levels was utilized. It has been found out that the L_8 Taguchi experimental design offers the same results as the Draper-Lin experimental design, but with much fewer experiments.
机译:通过引入科学的实验设计,可以提高使用纳米材料的效率和竞争力。为了获得能够更好地逼近实际技术系统的实验模型,还应考虑到其经济方面,考虑到足够数量的控制因素和必要的实验单元。考虑到Ag掺杂的TiO_2纳米颗粒在诸如工业,环境保护,健康等领域中的重要性,对于制造商而言,获得相等尺寸的纳米颗粒是重要的。本文分析了提高微波水热法制备的Ag掺杂TiO_2纳米粒子尺寸稳定性的方法。在一种情况下,在8个实验中使用了两个级别的L_8 Taguchi设计,具有七个控制因子。在另一种情况下,采用了Draper-Lin设计的40个实验,针对两个水平的7个因子。已经发现,L_8 Taguchi实验设计可提供与Draper-Lin实验设计相同的结果,但实验数量少得多。

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