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Glycine Crystallization in Solution by CW Laser-Induced Microbubble on Gold Thin Film Surface

机译:连续激光诱导微气泡在金薄膜表面上的甘氨酸结晶

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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 micro-bubble, 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.
机译:我们已经开发了一种利用局部热诱导气泡/水界面的新型激光诱导结晶方法。 1064 nm的连续激光束聚焦在覆盖有甘氨酸过饱和水溶液的金纳米颗粒薄膜表面上。由于局部等离振子共振而引起的膜的光吸收在焦点位置处引起局部加热,并产生单个热蒸气微气泡,该气泡产生热梯度,随后在气泡周围对流,最终导致甘氨酸结晶和生长。通过考虑在对流和温度跃迁的帮助下,在气泡/水界面周围聚集和积累分子来讨论结晶机理。

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