Separation of single nano particles from suspension by using ultrasonic atomization
Jungsoon Kim, Kanglyeol Ha, Ji Hyang Kim, Jiyeong Yeom, Moojoon Kim
Abstract
Jungsoon Kim, Kanglyeol Ha, Ji Hyang Kim, Jiyeong Yeom, Moojoon Kim
Abstract
It is very important to obtain non-agglomerated nano particle state for practical application of nano technology. In order to improve the functionality of products using nano particles, more precise control of particle size distribution is required in their synthesis process. However, synthesized nano particles are agglomerated due to physical and chemical reasons, and it veils the unique properties of nano particles and has disturbed their practical use. In this study, we propose a separation method for nano particles from suspension by using the droplets as the separation space. The particle size distribution of nano particles in the recollected suspension was measured. From the results, it was confirmed that it is possible to separate and to recollect monodispersed nano particles from original suspension with 0.002 wt.% TiO2powder by using suggested method.
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
It is very important to obtain non-agglomerated nano particle state for practical application of nano technology. In order to improve the functionality of products using nano particles, more precise control of particle size distribution is required in their synthesis process. However, synthesized nano particles are agglomerated due to physical and chemical reasons, and it veils the unique properties of nano particles and has disturbed their practical use. In this study, we propose a separation method for nano particles from suspension by using the droplets as the separation space. The particle size distribution of nano particles in the recollected suspension was measured. From the results, it was confirmed that it is possible to separate and to recollect monodispersed nano particles from original suspension with 0.002 wt.% TiO2powder by using suggested method.
Key concepts: Suspension (topology), Nano-, Particle (ecology), Materials science, Nanoparticle, Particle-size distribution, Particle size, Chemical engineering