Surface Bubble Growth in Plasmonic Nanoparticle Suspension

Understanding the growth dynamics of the microbubbles produced by plasmonic heating can benefit a wide range of applications like microfluidics, catalysis, micropatterning, and photothermal energy conversion. Usually, surface plasmonic bubbles are generated on plasmonic structures predeposited on th...

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Published inACS applied materials & interfaces Vol. 12; no. 23; pp. 26680 - 26687
Main Authors Zhang, Qiushi, Neal, Robert Douglas, Huang, Dezhao, Neretina, Svetlana, Lee, Eungkyu, Luo, Tengfei
Format Journal Article
LanguageEnglish
Published United States 10.06.2020
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ISSN1944-8244
1944-8252
1944-8252
DOI10.1021/acsami.0c05448

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Summary:Understanding the growth dynamics of the microbubbles produced by plasmonic heating can benefit a wide range of applications like microfluidics, catalysis, micropatterning, and photothermal energy conversion. Usually, surface plasmonic bubbles are generated on plasmonic structures predeposited on the surface subject to laser heating. In this work, we investigate the growth dynamics of surface microbubbles generated in plasmonic nanoparticle (NP) suspension. We observe much faster bubble growth rates compared to those in pure water with surface plasmonic structures. Our analyses show that the volumetric heating effect around the surface bubble due to the existence of NPs in the suspension is the key to explaining this difference. Such volumetric heating increases the temperature around the surface bubble more efficiently compared to surface heating which enhances the expelling of dissolved gas. We also find that the bubble growth rates can be tuned in a very wide range by changing the concentration of NPs, besides laser power and dissolved gas concentration.
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ISSN:1944-8244
1944-8252
1944-8252
DOI:10.1021/acsami.0c05448