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Janus Emulsion Solar Concentrators as Photocatalytic Droplet Microreactors

机译:Janus乳液太阳能聚光器作为光催化液滴微反应器

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摘要

Efficiently harvesting and conveying photons to photocatalytic reaction centers is one of the great obstacles in photocatalysis. To address this challenge, a new approach is reported that is based on employing biphasic complex emulsions as droplet-based solar concentrators. Specifically, substrates and photocatalysts are compartmentalized into the confined space of Janus emulsion droplets comprised of a hydrocarbon partially encapsulated inside fluorocarbon oil with a large refractive index contrast. Optical confinement of the incident light due to total internal reflection at the concave internal interface of the biphasic emulsion droplets leads to a strong increase of the light intensity inside the reaction medium. In addition, the high gas solubility within the outer fluorocarbon phase promotes oxygen delivery in photocatalytic oxidation reactions. Both effects mutually contribute to a strong performance increase of a series of homogeneous and heterogeneous photocatalytic reactions even under diffuse sunlight conditions.
机译:有效地收获和传送到光催化反应中心的光子是光催化剂中的巨大障碍之一。为了解决这一挑战,报告了一种新方法,即基于使用双相复合乳液作为基于液滴的太阳能聚光器。具体地,衬底和光催化剂被隔间化为由部分包封在氟碳油内的烃类烃的Janus乳液液滴的狭窄空间中,具有大的折射率对比度。由于双相乳液液滴的凹形内部界面的总内反射引起的入射光的光学限制导致反应介质内的光强度的强烈增加。另外,外氟碳相的高气溶性促进光催化氧化反应中的氧输送。即使在漫射阳光条件下,两种效果也促进了一系列均匀和异质光催化反应的强劲性能增加。

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