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Effects of Dissolving Agents on Particle Size Reduction of Titanium Dioxide Synthesized by Solution Combustion Technique

机译:溶解剂对溶液燃烧技术合成的二氧化钛粒度降低的影响

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High photocatalytic activity of nanoparticulate titanium dioxide has attracted worldwide attention. Synthesis techniques of the nanoparticles, however, often require high energy supply or costly initial reagents. Solution combustion technique is an energy-effective technique capable of synthesizing nano-sized titanium powders. This research aimed at utilizing a less expensive initial reagent in synthesis of nanoparticulate titanium dioxide by the solution combustion technique. The research also examined effects of dissolving agents on chemical composition and particle sizes of the synthesized powders. A low-cost initial reagent, titanium dioxide with average particle size of 154 nanometers, was dissolved in sulfuric acid or dispersed in nitric acid prior to the combustion. Experimental results revealed that the pure anatase phase titanium dioxide was successfully obtained in powders prepared from both sulfuric acid and nitric acid. The average particle size of the powder prepared from sulfuric acid was 77 nanometers, while that of the powder prepared from nitric acid was 117 nanometers. The difference in particle sizes was attributed to solubility of the initial reagent in the acid. Complete solution of initial reagent in sulfuric acid was the main factor attributed to finer particle size.
机译:纳米颗粒钛二氧化钛的高光催化活性在全球上引起了全世界的关注。然而,纳米颗粒的合成技术通常需要高能量供应或昂贵的初始试剂。溶液燃烧技术是能够合成纳米尺寸钛粉末的能量有效技术。本研究旨在通过溶液燃烧技术合成纳米颗粒二氧化钛的合成中的较便宜的初始试剂。该研究还检查了溶解剂对合成粉末的化学成分和颗粒尺寸的影响。低成本的初始试剂,平均粒度为154纳米的二氧化钛,溶解在硫酸中或在燃烧之前分散在硝酸中。实验结果表明,在由硫酸和硝酸制备的粉末中成功地获得二氧化钛的纯锐钛矿相相钛。由硫酸制备的粉末的平均粒度为77纳米,而由硝酸制备的粉末的粉末为117纳米。颗粒尺寸的差异归因于酸中的初始试剂的溶解性。硫酸中的初始试剂的完全溶液是归因于更细粒粒度的主要因素。

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