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Hematite homojunctions without foreign element doping for efficient and stable overall water splitting

机译:赤铁矿同性全相块没有外部元素掺杂,以高效稳定的整体水分裂

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A new strategy to prepare a hematite homojunction photoanode is proposed in this work. Hematite films with different Fermi levels are obtained by tuning the carrier concentrations in the films. This enables us to fabricate hematite homojunction photoelectrodes without foreign element doping by constructing bilayer films with different Fermi levels, and realize enhanced photoelectric conversion efficiency for highly efficient solar water splitting. The photocurrent density for the hematite homojunction is ~1.1 mA cm ~(?2) at 1.23 V vs. RHE, which is almost 5 times that of single type hematite photoanodes. What is more, with this homojunction configuration, the hematite homojunctions show a 15 times higher stability compared with high-donor-concentration Fe _(2) O _(3) photoelectrodes for oxygen evolution. Most importantly, overall water splitting is realized and the photocell still holds 92.2% of the efficiency for water oxidation even after 73 hours.
机译:在这项工作中提出了一种制定赤铁矿同工结合光电码的新策略。通过调节薄膜中的载体浓度来获得具有不同FERMI水平的赤铁矿薄膜。这使我们能够通过构建具有不同FERMI水平的双层薄膜来制造没有异物掺杂的赤铁矿同源掺杂,并且实现了高效太阳能分裂的增强的光电转换效率。赤铁矿同质结的光电流密度为1.23V与rhe的1.1 mA cm〜(?2),这几乎是单型赤铁矿光电池的5倍。更重要的是,通过这种同性全调配置,赤铁矿同性全相表明,与用于氧气进化的高供浓度Fe _(2)o _(3)光电子相比,稳定性较高的15倍。最重要的是,实现了整个水分裂,并且光电池仍然在73小时后仍然甚至容纳水氧化效率的92.2%。

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