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首页> 外文期刊>Zeitschrift fur Physikalische Chemie: International Journal of Research in Physical Chemistry and Chemical Physics >Synthesis and Doping Strategies to Improve the Photoelectrochemical Water Oxidation Activity of BiVO4 Photoanodes
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Synthesis and Doping Strategies to Improve the Photoelectrochemical Water Oxidation Activity of BiVO4 Photoanodes

机译:改善Bivo4光桥的光电化学水氧化活性的合成与掺杂策略

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摘要

BiVO4 is one of the most investigated and most promising metal oxide based photoanode materials for photoelectrochemical (PEC) water oxidation. Although it has several advantages (suitable band gap around 2.4 eV, suitable valence-band position for water oxidation, low toxicity, high abundance), it suffers from slow charge-carrier transport properties, high surface recombination, and limited water-oxidation activity. In the present work, we review the synthesis and doping strategies that we developed in the last years to improve the PEC performance of BiVO4 photoanodes. Strategies ranging from single anion doping or cation doping to anion and cation co-doping will be presented for fluoride and molybdenum as anion and cation dopants, respectively. One major result is that co-doping allows combining the most important PEC specific benefits of each type of dopant, i.e. an increased charge-injection efficiency in case of fluoride as well as an increased charge-separation efficiency in case of molybdenum.
机译:Bivo4是用于光电化学(PEC)水氧化的最受研究和最有前途的金属氧化物基光潮汐材料之一。虽然它有几个优点(合适的带隙约为2.4eV,用于水氧化,低毒性,高丰度的合适价带位置,但它受到缓慢的电荷 - 载体传输性能,高表面重组和有限的水氧化活性。在目前的工作中,我们审查了我们在过去几年中开发的合成和掺杂策略,以提高BIVO4 Photoanodes的PEC性能。从单阴离子掺杂或阳离子掺杂和阳离子掺杂的策略分别用于氟化物和钼作为阴离子和阳离子掺杂剂。一个主要结果是,共掺杂允许组合每种掺杂剂的最重要的PEC特异性益处,即氟化物的电荷注入效率增加以及在钼的情况下增加的电荷分离效率。

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