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Influence of Atomic Hydrogen Band Bending and Defects in the Top Few Nanometers of Hydrothermally Prepared Zinc Oxide Nanorods

机译:水热制备氧化锌纳米棒的前几纳米中原子氢能带弯曲和缺陷的影响

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摘要

We report on the surface, sub-surface (top few nanometers) and bulk properties of hydrothermally grown zinc oxide (ZnO) nanorods (NRs) prior to and after hydrogen treatment. Upon treating with atomic hydrogen (H*), upward and downward band bending is observed depending on the availability of molecular H2O within the structure of the NRs. In the absence of H2O, the H* treatment demonstrated a cleaning effect of the nanorods, leading to a 0.51 eV upward band bending. In addition, enhancement in the intensity of room temperature photoluminescence (PL) signals due to the creation of new surface defects could be observed. The defects enhanced the visible light activity of the ZnO NRs which were subsequently used to photocatalytically degrade aqueous phenol under simulated sunlight. On the contrary, in the presence of H2O, H* treatment created an electronic accumulation layer inducing downward band bending of 0.45 eV (~1/7th of the bulk ZnO band gap) along with the weakening of the defect signals as observed from room temperature photoluminescence spectra. The results suggest a plausible way of tailoring the band bending and defects of the ZnO NRs through control of H2O/H* species.
机译:我们报告氢处理之前和之后的水热生长的氧化锌(ZnO)纳米棒(NRs)的表面,亚表面(顶部几纳米)和整体性质。在用原子氢(H *)处理时,观察到向上和向下的带弯曲,这取决于NRs结构内分子H2O的可用性。在没有H2O的情况下,H *处理证明了纳米棒的清洁效果,导致向上弯曲了0.51eV。另外,由于新的表面缺陷的产生,可以观察到室温光致发光(PL)信号强度的增强。缺陷增强了ZnO NRs的可见光活性,该ZnO NRs随后被用于在模拟阳光下光催化降解水性酚。相反,在存在H2O的情况下,H *处理产生了一个电子累积层,该层会引起0.45eV的向下带弯曲(约为ZnO带隙的1/7),并且从室温下观察到的缺陷信号也会减弱。光致发光光谱。结果表明通过控制H2O / H *物种来调整ZnO NRs的能带弯曲和缺陷的可行方法。

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