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Single-Step Preparation of Large Area TiO_2 Photoelectrodes for Water Splitting

机译:用于水分裂的大面积TiO_2光电子的单步制备

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摘要

The fast, single-step and easily scalable production by plasma electrolytic oxidation (PEO) of large area TiO2 electrodes with excellent photoactivity in water splitting under simulated solar light is systematically investigated here. In particular, the effects that the cell voltage (100-180 V) and the processing time (0.5-15 min) have on the electrode properties are studied. The PEO-produced oxide layers are porous, the predominant crystalline structure shifting from anatase, to an anatase-rutile mixture, and finally to rutile by rising the cell voltage. The electrodes show a double-layered structure, with a more compact layer at the interface with the titanium substrate and a thick porous layer on the external surface. The photocurrent density versus wavelength reflects the phase composition, with a maximum incident photon-to-current efficiency of 90% at 320 nm. The highest H-2 production rate is attained with the mixed anatase-rutile electrode prepared by 300 s-long PEO at 150 V.
机译:系统地研究了在模拟太阳灯下的水分裂中具有优异的脱离拍摄的等离子体电解氧化(PEO)通过等离子体电解氧化(PEO)的快速,单步和易于伸缩的生产。特别地,研究了电池电压(100-180V)和处理时间(0.5-15分钟)对电极性质的影响。将PEO-产生的氧化物层是多孔的,主要结晶结构从锐钛矿转移到锐钛矿 - 金红石混合物中,最后通过上升电池电压来金红石。电极显示双层结构,在与钛基板的界面处具有更紧凑的层和外表面上的厚多孔层。光电流密度与波长反射相位组合物,最大入射光率至电流效率为90%,在320nm处。在150V下通过300秒的PEO制备的混合锐钛矿 - 金红石电极获得最高的H-2生产率。

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