Liu Xiumei, Bao Lei, Dipalo Michele, De Angelis Francesco, Zhang Xuehua
School of Mechatronic Engineering, China University of Mining and Technology, Xuzhou, 221116, China.
Physics of Fluids Group, Faculty of Science and Technology, University of Twente, Enschede, 7500 AE, The Netherlands.
Sci Rep. 2015 Dec 21;5:18515. doi: 10.1038/srep18515.
Bubble formation from plasmonic heating of nanostructures is of great interest in many applications. In this work, we study experimentally the intrinsic effects of the number of three-dimensional plasmonic nanostructures on the dynamics of microbubbles, largely decoupled from the effects of dissolved air. The formation and dissolution of microbubbles is observed on exciting groups of 1, 4, and 9 nanopillars. Our results show that the power threshold for the bubble formation depends on the number density of the nanopillars in highly-ordered arrays. In the degassed water, both the growth rate and the maximal radius of the plasmonic microbubbles increase with an increase of the illuminated pillar number, due to the heat balance between the heat loss across the bubble and the collective heating generated from the nanopillars. Interestingly, our results show that the bubble dissolution is affected by the spatial arrangement of the underlying nanopillars, due to the pinning effect on the bubble boundary. The bubbles on nanopillar arrays dissolve in a jumping mode with step-wise features on the dissolution curves, prior to a smooth dissolution phase for the bubble pinned by a single pillar. The insight from this work may facilitate the design of nanostructures for efficient energy conversion.
纳米结构的等离子体加热产生气泡在许多应用中引起了极大的兴趣。在这项工作中,我们通过实验研究了三维等离子体纳米结构的数量对微泡动力学的内在影响,很大程度上与溶解空气的影响解耦。在激发1、4和9个纳米柱的组时观察到微泡的形成和溶解。我们的结果表明,气泡形成的功率阈值取决于高度有序阵列中纳米柱的数密度。在脱气水中,由于气泡表面的热损失与纳米柱产生的集体加热之间的热平衡,等离子体微泡的生长速率和最大半径都随着被照亮的柱数的增加而增加。有趣的是,我们的结果表明,由于对气泡边界的钉扎效应,气泡溶解受底层纳米柱的空间排列影响。纳米柱阵列上的气泡以跳跃模式溶解,溶解曲线上具有逐步特征,然后是由单个柱钉扎的气泡的平滑溶解阶段。这项工作的见解可能有助于设计用于高效能量转换的纳米结构。