论文标题

通过薄紧凑tio $ _2 $ layer在水分中对III-V纳米线的强大保护

Robust Protection of III-V Nanowires in Water Splitting by a Thin Compact TiO$_2$ Layer

论文作者

Cui, Fan, Zhang, Yunyan, Fonseka, H. Aruni, Promdet, Premrudee, Channa, Ali Imran, Wang, Mingqing, Xia, Xueming, Sathasivam, Sanjayan, Liu, Hezhuang, Parkin, Ivan P., Yang, Hui, Li, Ting, Choy, Kwang-Leong, Wu, Jiang, Blackman, Chris, Sanchez, Ana M., Liu, Huiyun

论文摘要

具有合适带结构和强大的轻度捕获能力的窄带III-V半导体纳米线(NWS)非常适合高效低成本太阳能水分分解系统。但是,由于其纳米级尺寸,电解质溶液遭受的腐蚀比薄膜溶液更严重。因此,短期耐用性是将这些NW用于实际水分分配应用的主要障碍。在这里,我们首次证明了由原子层沉积沉积的薄层(〜7 nm厚)的紧凑型Tio $ _2 $可以为III-V NWS提供强大的保护。在环境大气中存储14个月后,受保护的GAAS NWS维持其光致发光强度的91.4%,这表明TIO $ _2 $层不含针孔。与未受保护的同类产品相比,它们作为水分分裂的光电阴道的光电流密度大45%,而法拉第效率的高度为91%,并且还可以在窄带IIII-V NW NW光电电极中保持创纪录的高度稳定性。在强酸电解质溶液(pH = 1)中67小时光电化学稳定性测试反应后,它们没有明显的腐蚀迹象,这与未受保护的NWS形成了鲜明的对比,后者在35小时后完全失败。这些发现提供了一种有效的方法,可以增强基于III-V NW的光电极的稳定性和性能,这对于在基于太阳能的水分拆分系统中的实际应用非常重要。

Narrow-bandgap III-V semiconductor nanowires (NWs) with a suitable band structure and strong light-trapping ability are ideal for high-efficiency low-cost solar water-splitting systems. However, due to their nanoscale dimension, they suffer more severe corrosion by the electrolyte solution than the thin-film counterparts. Thus, short-term durability is the major obstacle for using these NWs for practical water splitting applications. Here, we demonstrated for the first time that a thin layer (~7 nm thick) of compact TiO$_2$ deposited by atomic layer deposition can provide robust protection to III-V NWs. The protected GaAs NWs maintain 91.4% of its photoluminescence intensity after 14 months of storage in ambient atmosphere, which suggests the TiO$_2$ layer is pinhole-free. Working as a photocathode for water splitting, they exhibited a 45% larger photocurrent density compared with un-protected counterparts and a high Faraday efficiency of 91%, and can also maintain a record-long highly-stable performance among narrow-bandgap III-V NW photoelectrodes; after 67 hours photoelectrochemical stability test reaction in strong acid electrolyte solution (pH = 1), they show no apparent indication of corrosion, which is in stark contrast to the un-protected NWs that are fully failed after 35-hours. These findings provide an effective way to enhance both stability and performance of III-V NW based photoelectrodes, which are highly important for practical applications in solar-energy-based water splitting systems.

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