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양상선(Sangsun Yang),장윤형(Yoon-Hyung Jang),김창혁(Chang Hyuk Kim),황창선(Changseon Hwang),채석병(Sukbyung Chae),정세권(Sekwon Jung),이정훈(Jeonghoon Lee),최만수(Mansoo Choi) 대한기계학회 2009 대한기계학회 춘추학술대회 Vol.2009 No.5
Flame metal combustion method for continuously synthesizing metal oxide nanoparticles with a high production rate was proposed. Micro-sized metal powder precursors injected into a hydrogen-oxygen flame were converted into metal oxide nanoparticles with good crystallinity. There is no limitation in the selection of precursors including metal chloride and metal organic powders to synthesize nanoparticles. Various oxides such as magnesia, iron oxides and zinc oxide were generated by using this method. The sizes of oxide nanoparticles were found to be dependent on flame temperatures and residence times.