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Rapid Screening of Graphitic Carbon Nitrides for Photocatalytic Cofactor Regeneration Using a Drop Reactor

机译:使用滴滴反应器快速筛选用于光催化辅因子再生的石墨化碳氮化物

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Artificial photosynthesis is the imitation of natural photosynthesis, which promises an efficient way to use solar energy to synthesize organic matters, in which the key step is the coenzyme regeneration (NADH/NADPH). To achieve an efficient regeneration rate, various photocatalysts have been developed, such as g-C 3 N 4 and mesoporous carbon nitride (mpg-C 3 N 4 ). Generally, efficiency determination of different photocatalysts requires laborious experiments, high consumption of reagents, and a considerable amount of time. Here, based on the one-step artificial photosystem I method, we processed the analytical experiment in a very simple PDMS well (20 ????L, a drop) to achieve a rapid screening of photocatalysts. For comparison, we used two types of graphitic carbon nitrides, few-layer g-C 3 N 4 and mpg-C 3 N 4 . Compared with the slurry systems, firstly, the regeneration rate of mpg-C 3 N 4 drop-reactor system is 4.3 times and 7.1 times those of the few-layer g-C 3 N 4 -slurry system and mpg-C 3 N 4 -slurry system, respectively. Secondly, this one-drop method reduces the typical verification time from 90 min to 5 min and lowers the liquid volume from 20 mL to 20 ????L. Thirdly, this operation is a pump-free and soft lithography technique-free process. The miniaturization of the photocatalytic reaction in the PDMS well improves the regeneration rates, saves samples, and achieves high-throughput screening of multiple photocatalysts.
机译:人工光合作用是对自然光合作用的模仿,它有望利用太阳能来合成有机物,而其中的关键步骤就是辅酶再生(NADH / NADPH)。为了获得有效的再生速率,已经开发了各种光催化剂,例如g-C 3 N 4和中孔氮化碳(mpg-C 3 N 4)。通常,确定不同光催化剂的效率需要费力的实验,大量的试剂消耗和大量的时间。在此,基于一步法人工光系统I方法,我们在非常简单的PDMS孔(20 µL,滴)中进行了分析实验,以实现对光催化剂的快速筛选。为了进行比较,我们使用了两种类型的石墨碳氮化物,即薄层g-C 3 N 4和mpg-C 3 N 4。与浆液体系相比,首先,mpg-C 3 N 4液滴反应器的再生速率分别是几层gC 3 N 4浆液体系和mpg-C 3 N 4浆液体系的再生速率的4.3倍和7.1倍。系统。其次,这种一滴法将典型的验证时间从90分钟减少到5分钟,并将液体体积从20 mL减少到20μL。第三,该操作是无泵且无软光刻技术的过程。 PDMS中光催化反应的小型化可很好地提高再生速率,节省样品并实现多种光催化剂的高通量筛选。

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