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Efficient utilization of photogenerated electrons and holes for photocatalytic selective organic syntheses in one reaction system using a narrow band gap CdS photocatalyst

机译:在一个使用窄带隙CdS光催化剂的反应系统中有效利用光生电子和空穴进行光催化选择性有机合成

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In this study, a nanoparticle structure of CdS with cubic phase (CdS-G) was prepared by a facile solid-state reaction at room temperature for the first time. CdS-G can be used as a highly active photocatalyst for selective oxidation of p-methoxybenzyl alcohol (pMBA) to p-methoxybenzaldehyde (pMBAD) and reduction of nitrobenzene (NB) to aniline (AL) in a coupled reaction system under green mild reaction conditions through visible light irradiation. Compared with the counterparts prepared by the conventional precipitation method (CdS-P) and hydrothermal method (CdS-H), the photocatalytic performance of CdS-G is greatly improved owing to the unique features of the nanostructure, the high surface area, pore volume, visible light absorption and photoelectric properties. The yield of pMBAD (AL) over CdS-G is about 1.6 (5.2) and 1.9 (20.8) times higher than that over CdS-P and CdS-H, respectively. The CdS-G sample exhibits excellent selectivity and stability because its valence band (VB) and conduction band (CB) positions matched well with the redox potentials of pMBA/pMBAD and NB/AL. Furthermore, the photogenerated holes and electrons can be efficiently and directly reacted with pMBA and NB, respectively. The photocatalytic selective oxidation and reduction reaction is a synergistic reaction via producing and consuming protons. The photogenerated holes and electrons could be utilized thoroughly to produce pMBAD and AL, respectively. The molar ratio of pMBA and NB was 3 : 1, and the yield of pMBAD and AL could be successfully achieved at a theoretical ratio of 1 : 1. This work highlights the promising scope for selective organic synthesis in one reaction system under mild conditions using photogenerated electrons and holes directly and simultaneously.
机译:在这项研究中,首次在室温下通过固态反应制备了具有立方相的CdS纳米颗粒结构(CdS-G)。 CdS-G可用作高活性光催化剂,可在绿色温和反应的偶联反应体系中将对甲氧基苄醇(pMBA)选择性氧化为对甲氧基苯甲醛(pMBAD)以及将硝基苯(NB)还原为苯胺(AL)。通过可见光照射的条件。与传统的沉淀法(CdS-P)和水热法(CdS-H)制备的相比,由于纳米结构的独特性,高表面积,孔体积,CdS-G的光催化性能大大提高。 ,可见光吸收和光电性能。与CdS-P和CdS-H相比,CdS-G上pMBAD(AL)的产率分别高约1.6(5.2)和1.9(20.8)倍。 CdS-G样品的价带(VB)和导带(CB)位置与pMBA / pMBAD和NB / AL的氧化还原电位非常匹配,因此具有出色的选择性和稳定性。此外,光生空穴和电子可以分别有效地与pMBA和NB直接反应。光催化选择性氧化还原反应是通过产生和消耗质子的协同反应。光生空穴和电子可以分别被充分利用来生产pMBAD和AL。 pMBA和NB的摩尔比为3:1,理论上的比例为1:1可以成功实现pMBAD和AL的收率。这项工作突显了在温和条件下使用一种反应体系进行选择性有机合成的广阔前景光生电子和空穴直接并同时发生。

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