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Dynamic behaviors of approximately ellipsoidal microbubbles photothermally generated by a graphene oxide-microheater

机译:氧化石墨烯-微加热器光热产生的近似椭圆形微气泡的动力学行为

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摘要

Thermal microbubbles generally grow directly from the heater and are spherical to minimize surface tension. We demonstrate a novel type of microbubble indirectly generated from a graphene oxide-microheater. Graphene oxide's photothermal properties allowed for efficient generation of a thermal gradient field on the microscale. A series of approximately ellipsoidal microbubbles were generated on the smooth microwire based on heterogeneous nucleation. Other dynamic behaviors induced by the microheater such as constant growth, directional transport and coalescence were also investigated experimentally and theoretically. The results are not only helpful for understanding the bubble dynamics but also useful for developing novel photothermal bubble-based devices.
机译:热微气泡通常直接从加热器中生长,并且呈球形,以使表面张力最小。我们演示了一种新型的从微气泡氧化石墨烯间接产生的微气泡。氧化石墨烯的光热特性可在微米尺度上高效生成热梯度场。基于异质形核,在光滑微丝上产生了一系列近似椭圆形的微气泡。还通过实验和理论研究了由微加热器引起的其他动态行为,例如恒定生长,定向传输和聚结。结果不仅有助于理解气泡动力学,而且对开发新型基于光热气泡的器件也很有用。

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