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- W3040713063 abstract "Abstract WO 3 /GQDs-H composites were synthesized by a hydrothermal method using WCl 6 as the tungsten source. Various analyses were conducted to investigate the composition, structure, morphology and performance of the composites. WO 3 /GQDs-H composites formed a special ‘dot-on-nanoparticle’ structure by anchoring GQDs on the surface of WO 3 . The lattice spacings of 0.34 and 0.386 nm were attributed to the (002) facets of GQDs and WO 3 , respectively. Compared to blank WO 3 , an obvious shift to higher value in the binding energy of W 6+ and W 5+ and a decreased I D /I G value in the Raman spectra could be observed for WO 3 /GQDs-H composites. The photocurrent value of hydrothermal synthesized WO 3 /GQDs-H composites achieved 1.56 × 10 –5 A cm −2 , which was obviously prior to that of blank WO 3 and mechanically mixed WO 3 /GQDs. The result indicated that the hydrothermal process promoted GQDs as a conductive route to transfer photoexcited electrons and improve the photoelectric performance of WO 3 /GQDs in comparison to the mechanical mixture process." @default.
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- W3040713063 date "2020-07-01" @default.
- W3040713063 modified "2023-10-16" @default.
- W3040713063 title "Enhanced photoelectric performance of GQDs anchored WO<sub>3</sub> with a ‘dot-on-nanoparticle’ structure" @default.
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- W3040713063 doi "https://doi.org/10.1088/2053-1591/aba393" @default.
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