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Self-assembled nanoparticle-stabilized photocatalytic reactors

机译:自组装纳米粒子光催化反应器

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The efficiency of nanostructured photocatalysts continues to improve at an impressive pace and is closing in on those needed for commercial applications; however, present-day reactor strategies used to deploy these nanostructures fail to achieve the sufficient areas (>1 m(2)) needed for solar application. Here we report the Self-assembled Nanoparticle-stabilized Photocatalytic Reactor (SNPR), a fully-scalable reactor strategy comprised only of nanoparticles adsorbed at the fluid-fluid interfaces of oil-in-water emulsions, water-in-oil emulsions, and CO2-in-water foams. We show that SNPRs naturally disperse over open water and need no physical substrate, requiring only photocatalysts and fluid. In environmental applications the SNPR provides more than double the reaction rate of a comparable single-phase reactor. In continuous mode, the SNPR achieves 100% photocatalyst retention and processes 96% of the stream over 20 hours; in contrast, the performance of a comparable aqueous suspension declines to zero over this interval, losing all photocatalyst to the outlet stream. We further characterize the photoactivity of individual photocatalytic droplets, with reactants in both the continuous and dispersed phases. These results demonstrate SNPRs as a robust and flexible reactor strategy and a route-to-scale for nanomaterials.
机译:纳米催化剂的效率继续在一个令人印象深刻的速度和改善接近那些商业需要应用程序;策略用于部署这些纳米结构未能实现充分的领域(> 1米(2))太阳能所需的应用程序。自组装纳米粒子光催化反应器(SNPR),全面扩展反应堆策略组成的纳米颗粒吸附的油接口水包油乳剂、油包水乳剂和CO2-in-water泡沫。自然分散在打开水,不需要物理衬底,只需要催化剂和流体。提供了反应速率的两倍多与单相反应堆。模式下,SNPR达到100%的光催化剂保留和流程流超过20的96%小时;可比水中悬浮体下降为零在这个区间,失去所有的光催化剂出口流。光敏的光催化滴,反应物在连续的和分散阶段。反应堆SNPRs作为一个健壮且灵活的策略和route-to-scale纳米材料。

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