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Photochemistry in CuInS2 Quantum Dots/Polyoxometalate System

机译:CuInS2量子点/多金属氧酸盐体系中的光化学

摘要

Energy transfer involving semiconductor quantum dots (QDs) has received increased attention in recent years because of high photostability and size-tunable optical properties. Here, we study photochemistry in quantum dot/polyoxometalate (POMs) systems and utilize quantum dots as light antenna that captures visible light to sensitize wide band gap POMs. We also demonstrate the photoenergy storage properties of CuInS2 QD/POM systems. The PL quenching and the decrease in PL lifetime are clear indication that the excited electron of CuInS2 was deactivated by electron transfer to POM such as PMo12O40, W10O32 and SiW10O36 that were hybridized with a cationic surfactant and dispersed together in an organic solvent. The quantum yields of CuInS2 QDs were 2.32% with 3.9 nm in particle size. Irradiating QD/POM systems with visible light generates a one-electron reduced form of POMs, suggesting the reduction of POMs. Photoenergy can be stored as reduced POM under deaerated conditions by visible light. Stored electron in POM can be discharged afterwards via reductive reactions such as oxygen under the dark.
机译:近年来,涉及半导体量子点(QD)的能量转移因其高光稳定性和可调节尺寸的光学特性而受到越来越多的关注。在这里,我们研究量子点/多金属氧酸盐(POM)系统中的光化学,并利用量子点作为光天线,捕获可见光以敏化宽带隙POM。我们还演示了CuInS2 QD / POM系统的光能存储特性。 PL猝灭和PL寿命的降低清楚地表明,CuInS2的激发电子通过电子转移到POM(例如与阳离子表面活性剂杂交并一起分散在有机溶剂中的PMo12O40,W10O32和SiW10O36)而失活了。 CuInS2 QD的量子产率为2.32%,粒径为3.9 nm。用可见光照射QD / POM系统会生成POM的单电子还原形式,表明POM的减少。在脱气条件下,可见光可以将光能存储为减少的POM。之后,POM中存储的电子可以通过还原反应(例如在黑暗中的氧气)释放。

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