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Increased Active Sites on Irregular Morphological α-Fe2O3 Nanorods for Enhanced Photoelectrochemical Performance

机译:增加了不规则形态α-Fe2O3纳米棒的活性位点,用于增强光电化学性能

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Uniform rectangular α-Fe_(2)O_(3) nanorods (R-Fe_(2)O_(3)) and irregular α-Fe_(2)O_(3) nanorods (D-Fe_(2)O_(3)) with a random size vertically aligned on fluorine-doped tin oxide were prepared with a facile one-step hydrothermal procedure. X-ray diffraction (XRD) measurements and Raman spectra confirm that the obtained samples are α-Fe_(2)O_(3), and XRD patterns show that D-Fe_(2)O_(3) has two extra (012) and (104) planes of hematite in addition to the identical peaks to R-Fe_(2)O_(3). The carrier density of the D-Fe_(2)O_(3) sample is four times larger than that of R-Fe_(2)O_(3). Finally, the D-Fe_(2)O_(3) photoelectrode exhibited a better photoelectrochemical (PEC) performance under visible illumination than that of R-Fe_(2)O_(3), achieving the photocurrent density of 0.15 mA cm~(–2) at 1.23 V versus reversible hydrogen electrode. In addition, incident photo-to-current conversion efficiency of D-Fe_(2)O_(3) is nearly three times larger than that of R-Fe_(2)O_(3). Hence, the improved PEC performance of D-Fe_(2)O_(3) can be ascribed to higher carrier density resulting from the amount of oxygen vacancies and more activated exposed surface facets.
机译:均匀矩形α-FE_(2)O_(3)纳米码(R-FE_(2)O_(3))和不规则α-FE_(2)O_(3)纳米码(D-FE_(2)O_(3))用容易的一步水热程序制备在氟掺杂氧化锡上垂直对准的随机尺寸。 X射线衍射(XRD)测量和拉曼光谱确认所获得的样品是α-FE_(2)O_(3),XRD图案显示D-FE_(2)O_(3)有两个额外(012)和(104)除了相同的峰,除了相同的峰,(2)O_(3)。 D-FE_(2)O_(3)样本的载流子密度比R-FE_(2)O_(3)大的四倍。最后,D-Fe_(2)O_(3)光电极在可见光下显示出比R-FE_(2)O_(3)的光电化学(PEC)性能,实现了0.15 mA cm的光电流密度〜( - 2)在1.23V 与可逆氢电极。此外,D-FE_(2)O_(3)的入射照片到电流转换效率几乎比R-FE_(2)O_(3)大的三倍。因此,D-Fe_(2)O_(3)的改善的PEC性能可以归因于由氧空位量和更激活的暴露表面刻面的较高的载体密度。

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