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Photoelectrochemical properties of tungsten trioxide thin film electrodes prepared from facet-controlled rectangular platelets

机译:由面控制矩形薄片制备的三氧化钨薄膜电极的光电化学性质

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摘要

The control of anisotropic crystal growth is critical for directing the orientation of crystal lattice planes, and it plays a key role towards understanding the effects of different planes on chemical reactions. Here, we report on the photoelectrochemical properties of plate-structured tungsten trioxide (WO _3) thin films prepared from facet-controlled rectangular platelets of hydrotungstite (WO _3 ·2H _2 O) and tungstite (WO _3 ·H _2 O), which are directly grown on tungsten substrates. The WO _3 thin films, prepared via WO _3 ·2H _2 O platelets, show relatively stable current for photoelectrochemical water splitting and methanol oxidation. On the other hand, the photocurrent of the WO _3 thin films prepared via WO _3 ·H _2 O platelets was significantly decreased during the photoelectrochemical oxidation of water, which is likely due to the accumulation of partially oxidized intermediates such as peroxo species on the surface. These results indicate that the surface nanostructures of WO _3 may have a significant influence on photoelectrode efficiency and selectivity for the catalytic oxygen evolution reaction.
机译:各向异性晶体生长的控制对于指导晶格平面的取向至关重要,并且在理解不同平面对化学反应的影响方面起着关键作用。在这里,我们报道了由水钨矿(WO _3·2H _2 O)和钨矿(WO _3·H _2 O)的多面受控矩形薄片制备的板状三氧化钨(WO _3)薄膜的光电化学性质。直接生长在钨衬底上。通过WO _3·2H _2 O血小板制备的WO _3薄膜显示出相对稳定的电流,用于光电化学水分解和甲醇氧化。另一方面,在水的光电化学氧化过程中,通过WO _3·H _2 O血小板制备的WO _3薄膜的光电流显着降低,这很可能是由于部分氧化的中间体(例如过氧化物)在表面上的积累。这些结果表明WO_3的表面纳米结构可能对光电极效率和催化氧放出反应的选择性具有显着影响。

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