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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Plasmonic Nanobubbles in 'Armored' Surface Nanodroplets
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Plasmonic Nanobubbles in 'Armored' Surface Nanodroplets

机译:“铠装”表面纳米杆状纳米骨纳米杆

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摘要

Plasmonic nanobubbles are bubbles that are formed from local heat generated by noble metal nanoparticles under illumination of light at resonance. Understanding the formation and behavior of plasmonic nanobubbles is important for a broad suite of applications that rely on enhanced local heating of nanoparticles, such as in biomedical treatments and solar energy conversion. Here, we investigate formation, growth, and dissolution of plasmonic bubbles in a model system of oil nanodroplets in water. Gold nanoparticles were located at the surface of nanodroplets immobilized on a substrate. We followed temporal evolution of plasmonic nanobubbles from ~200 nm in radius and above. Our experimental results show that there is an upper limit of the bubble size set by hosting droplet size, beyond which the nanobubbles burst. Nanobubbles grew, following the same growth exponent that was reported for a sub-millimeter bubble in contact with a bulk organic solvent. When the laser was switched off, the nanobubbles could remain for several minutes, much longer than the bubbles formed directly in water. The findings from this work may be valuable for light-driven chemical conversion in droplets or photothermal treatments involving immiscible phases.
机译:等离子体纳米泡是由贵金属纳米颗粒产生的局部热形成的气泡,在光照下的光照下的光照下。理解等离子体纳米柔臼的形成和行为对于依赖于增强纳米粒子的局部加热的广泛应用,例如生物医学处理和太阳能转化,这是重要的应用。在这里,我们调查在水中油纳米块模型系统中的阶级气泡的形成,生长和溶解。金纳米颗粒位于固定在基材上的纳米辊表面的表面。我们在半径和以上从〜200nm的〜200nm追踪等离子体纳米骨库的时间演变。我们的实验结果表明,通过托管液滴尺寸设定的泡沫尺寸的上限,纳米泡突发的液滴尺寸。纳米胚芽在与批量有机溶剂接触的亚毫米泡沫相同的增长指数之后,纳米胶杆菌成长。当激光关闭时,纳米泡可以保持几分钟,比直接形成在水中的气泡长得多。这项工作的发现可能对液滴或涉及不混溶的阶段的光热处理中的光驱动的化学转化有价值。

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