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首页> 外文期刊>Nature reviews Cancer >Metastable Intermediates in Amorphous Titanium Oxide: A Hidden Role Leading to Ultra-Stable Photoanode Protection
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Metastable Intermediates in Amorphous Titanium Oxide: A Hidden Role Leading to Ultra-Stable Photoanode Protection

机译:无定形氧化钛中的亚稳的中间体:导致超稳定的光电码保护的隐藏作用

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Metastable intermediates represent a nonequilibrium state of matter that may impose profound impacts to materials properties beyond our understandings of monolithic and equilibrium systems. Here, we report a discovery of hidden metastable intermediates in amorphous TiO2 thin films and their critical role in electrochemical damage. These intermediates have a non-bulk crystal-like structure and exhibit significantly higher electrical conductivity than both the amorphous and the crystalline phases. When these TiO2 films are applied to protect Si photoelectrochemical (PEC) photoanodes, the intermediates can induce localized high electrical currents that largely accelerate the etching of the TiO2 film and the Si electrode underneath. The intermediates can be effectively suppressed by raising their nucleation barrier via reducing the film thickness from 24 to 2.5 nm. The homogeneous amorphous TiO2-film-coated Si photoanodes achieved more than 500 h of PEC water oxidation at a steady photocurrent density of over 30 mAcm(-2).
机译:亚稳态的中间体代表了一种非资格的物质状态,这可能对超出我们对整体和平衡系统的理解之外的材料特性产生深远的影响。在这里,我们在无定形TiO2薄膜中举行发现隐藏的亚稳中间体及其在电化学损伤中的关键作用。这些中间体具有非块状晶体状结构,并且具有比无定形和结晶相的导电性显着更高。当施加这些TiO 2薄膜以保护Si光电化学(PEC)光桥时,中间体可以诱导局部高电流,这在很大程度上加速了TiO 2膜的蚀刻和下面的Si电极。通过将其成核屏障通过将膜厚度从24〜2.5nm降低,可以有效地抑制中间体。均匀的无定形TiO2膜涂覆的Si光电彩色在超过30mmm(-2)的稳定光电流密度下达到500小时的PEC水氧化。

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