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Conformal Cu2S-coated Cu2O nanostructures grown by ion exchange reaction and their photoelectrochemical properties

机译:离子交换反应生长的共形包覆Cu2S的Cu2O纳米结构及其光电化学性能

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Cuprous oxide Cu2O is a promising p-type semiconductor for photoelectrochemical (PEC) solar hydrogen generation because it has a suitable bandgap (E-g = 2.0-2.2 eV) and a band alignment adapted to water reduction. In addition, metallic Cu is earth-abundant thus making Cu2O a low-cost material. However, the reduction potential of Cu2O into metallic Cu (0.47 V versus RHE) is lower than that of water which induces a severe instability under irradiation in a PEC cell. Therefore, our recent efforts focused on the growth of a protective overlayer on top of Cu2O in order to stabilize Cu2O when used as a photocathode in an aqueous electrolyte. Among potential protective materials cuprous sulphide Cu2S is another p-type semiconductor with a 1.2 eV bandgap and an appropriate energy level alignment with Cu2O that would allow electrons flowing to the interface. We present here an original and simple method aimed at protecting a compact layer (CL) or nanowires (NWs) of Cu2O with a Cu2S coating. Our method is based on the ions exchange reaction (IER) of O2- into S2- at the surface of Cu2O itself in a solution-containing Na2S as the sulphur source. The local surface IER implies the formation of a conformal and uniform coating independently on the starting Cu2O morphology, CLs or NWs. As expected, coating Cu2O photocathodes by a conformal Cu2S layer improves their stability and PEC performances.
机译:氧化亚铜Cu2O是一种有前途的p型半导体,可用于光电化学(PEC)太阳能制氢,因为它具有合适的带隙(E-g = 2.0-2.2 eV)和能适应减水的能带排列。此外,金属铜富含稀土,因此使铜成为低成本材料。但是,Cu2O还原成金属Cu的还原电势(相对于RHE为0.47 V)低于水的还原电势,这会导致PEC电池在辐照下产生严重的不稳定性。因此,我们最近的努力集中在在Cu2O上生长保护层,以便在用作水性电解质中的光电阴极时稳定Cu2O。在潜在的保护材料中,硫化铜Cu2S是另一种p型半导体,具有1.2 eV带隙,并且与Cu2O具有适当的能级对准,这将允许电子流向界面。我们在这里提出一种新颖而简单的方法,旨在用Cu2S涂层保护Cu2O的致密层(CL)或纳米线(NWs)。我们的方法基于在含有Na2S作为硫源的溶液中,O2-在Cu2O本身表面上发生的S2-离子交换反应(IER)。局部表面IER意味着独立于初始Cu2O形态,CL或NW形成共形且均匀的涂层。如所期望的,用保形的Cu 2 S层涂覆Cu 2 O光电阴极改善了它们的稳定性和PEC性能。

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