材料科学
结晶
过饱和度
激光器
气泡
表面等离子共振
自然对流
化学工程
水溶液
纳米技术
光学
纳米颗粒
传热
热力学
机械
物理化学
化学
工程类
物理
作者
Takayuki Uwada,Sho Fujii,Teruki Sugiyama,Anwar Usman,Atsushi Miura,Hiroshi Masuhara,Katsuhiko Kanaizuka,Masa‐aki Haga
摘要
We have developed a novel laser-induced crystallization method utilizing local heat-induced bubble/water interface. Continuous laser beam of 1064 nm is focused on a gold nanoparticles thin film surface covered with glycine supersaturated aqueous solution. Light absorption of the film due to localized plasmon resonance caused local heating at the focal position and produced a single thermal vapor microbubble, which generated thermal gradient followed by convection flow around the bubble and eventually induced glycine crystallization and growth. The crystallization mechanism is discussed by considering gathering and accumulating molecules around the bubble/water interface assisted by convection flow and temperature jump.
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