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Wang, Songcan; Chen, Hongjun; Gao, Guoping; Butburee, Teera; Lyu, Miaoqiang; Thaweesak, Supphasin; Yun, Jung-Ho; Du, Aijun; Liu, Gang; Wang, Lianzhou
Nano energy, June 2016, 2016-06-00, Letnik: 24Journal Article
WO3 nanoplate arrays with (002) oriented facets grown on fluorine doped SnO2 (FTO) glass substrates are tailored by tuning the precursor solution via a facile hydrothermal method. A 2-step hydrothermal method leads to the preferential growth of WO3 film with enriched (002) facets, which exhibits extraordinary photoelectrochemical (PEC) performance with a remarkable photocurrent density of 3.7mAcm–2 at 1.23V vs. revisable hydrogen electrode (RHE) under AM 1.5G illumination without the use of any cocatalyst, corresponding to ~93% of the theoretical photocurrent of WO3. Density functional theory (DFT) calculations together with experimental studies reveal that the enhanced photocatalytic activity and better photo-stability of the WO3 films are attributed to the synergistic effect of highly reactive (002) facet and nanoplate structure which facilitates the photo–induced charge carrier separation and suppresses the formation of peroxo-species. Without the use of oxygen evolution cocatalysts, the excellent PEC performance, demonstrated in this work, by simply tuning crystal facets and nanostructure of pristine WO3 films may open up new opportunities in designing high performance photoanodes for PEC water splitting. Display omitted •WO3 nanoplate arrays with enriched (200) and (002) facets were prepared.•A remarkably high photocurrent density of 3.7mAcm–2 at 1.23V vs. RHE under AM 1.5G illumination was achieved.•Synergistic crystal facet engineering and structural control are critical for designing efficient PEC water splitting system.
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JCR | SNIP | JCR | SNIP | JCR | SNIP | JCR | SNIP |
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in: SICRIS
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