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GaN nanowires as a reusable photoredox catalyst for radical coupling of carbonyl under blacklight irradiation

机译:GaN纳米线作为可重复使用的光致毒剂催化剂,用于黑光照射下的羰基的自由基偶联

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Employing photo-energy to drive the desired chemical transformation has been a long pursued subject. The development of homogeneous photoredox catalysts in radical coupling reactions has been truly phenomenal, however, with apparent disadvantages such as the difficulty in separating the catalyst and the frequent requirement of scarce noble metals. We therefore envisioned the use of a hyper-stable III–V photosensitizing semiconductor with a tunable Fermi level and energy band as a readily isolable and recyclable heterogeneous photoredox catalyst for radical coupling reactions. Using the carbonyl coupling reaction as a proof-of-concept, herein, we report a photo-pinacol coupling reaction catalyzed by GaN nanowires under ambient light at room temperature with methanol as a solvent and sacrificial reagent. By simply tuning the dopant, the GaN nanowire shows significantly enhanced electronic properties. The catalyst showed excellent stability, reusability and functional tolerance. All reactions could be accomplished with a single piece of nanowire on Si-wafer.
机译:采用光能推动所需的化学转化一直是一个长期追求的主题。然而,在自由基偶联反应中的均相光致毒剂催化剂的发展是真正的缺点,如表观缺点,例如分离催化剂的难度和稀缺贵金属的频繁要求。因此,我们设想使用具有可调谐的费米水平和能带的超稳定III-V光敏半导体,作为用于自由基偶联反应的容易可分离的和可回收的非均相光针催化剂。在本文中,使用羰基偶联反应作为概念验证,我们在室温下用甲醇作为溶剂和牺牲试剂报告了在室温下在室温下催化的光碱偶联反应。通过简单地调整掺杂剂,GaN纳米线显示出​​显着增强的电子特性。催化剂显示出优异的稳定性,可重用性和功能性耐受性。所有反应都可以用Si-晶片上的一块纳米线完成。

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