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Energy‐Efficient Solar Photochemistry with Luminescent Solar Concentrator Based Photomicroreactors

机译:具有基于发光太阳能聚光器的光微反应器的节能型太阳能光化学

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摘要

The sun is the most sustainable light source available on our planet, therefore the direct use of sunlight for photochemistry is extremely appealing. Demonstrated here, for the first time, is that a diverse set of photon‐driven transformations can be efficiently powered by solar irradiation with the use of solvent‐resistant and cheap luminescent solar concentrator based photomicroreactors. Blue, green, and red reactors can accommodate both homogeneous and multiphase reaction conditions, including photochemical oxidations, photocatalytic trifluoromethylation chemistry, and metallaphotoredox transformations, thus spanning applications over the entire visible‐light spectrum. To further illustrate the efficacy of these novel solar reactors, medicinally relevant molecules, such as ascaridole and an intermediate of artemisinin, were prepared as well.
机译:太阳是地球上最可持续的光源,因此将太阳光直接用于光化学非常吸引人。此处首次展示的是,通过使用耐溶剂且价格低廉的基于发光聚光器的光微反应器,可以通过太阳能辐照有效地驱动各种不同的光子驱动转换。蓝色,绿色和红色反应器可同时满足均相和多相反应条件,包括光化学氧化,光催化三氟甲基化化学和金属光氧化还原转化,因此可应用于整个可见光谱。为了进一步说明这些新型太阳能反应堆的功效,还制备了与医学相关的分子,例如a啶和青蒿素的中间体。

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