Cu-doped flower-like hematite nanostructures for efficient water splitting applications. (November 2016)
- Record Type:
- Journal Article
- Title:
- Cu-doped flower-like hematite nanostructures for efficient water splitting applications. (November 2016)
- Main Title:
- Cu-doped flower-like hematite nanostructures for efficient water splitting applications
- Authors:
- Tsege, Ermias Libnedengel
Atabaev, Timur Sh.
Hossain, Md. Ashraf
Lee, Dongyun
Kim, Hyung-Kook
Hwang, Yoon-Hwae - Abstract:
- Abstract: This study reports the successful preparation of Cu-doped hematite (α-Fe2 O3 ) flower-like nanostructures with different Cu concentrations on FTO glass substrates using a facile hydrothermal method. The Cu-doped α-Fe2 O3 flower-like nanostructure combines the advantage of p-type doping with the feature of a flower-like architecture. The prepared nanostructure film was applied as a photocathode in a photoelectrochemical (PEC) water splitting experiment and achieved a significantly improved photocurrent density of −5.34 mA cm −2 at −0.6 V vs. reversible hydrogen electrode (RHE) for 1 mol% Cu doping. The obtained photocurrent is about 4.85 times higher than that of the pure α-Fe2 O3 based photoelectrode. The incorporation of Cu into α-Fe2 O3 results in a dramatic enhancement in the water splitting performance. The enhancement is gained through an improvement in light harvesting and charge carrier separation. The copper-modified α-Fe2 O3 sample also exhibited an up shift in the conduction band edge potential, which is energetically favorable for the water reduction reaction. This result demonstrated high performance PEC water splitting as a potential route for the production of hydrogen gas using a single Cu-doped α-Fe2 O3 photoelectrode without the need for other catalysts and hybrid structures. Highlights: Flower-like Cu-doped hematite nanostructures on FTO glass substrates were prepared. The prepared nanostructures were applied for water splitting experiments.Abstract: This study reports the successful preparation of Cu-doped hematite (α-Fe2 O3 ) flower-like nanostructures with different Cu concentrations on FTO glass substrates using a facile hydrothermal method. The Cu-doped α-Fe2 O3 flower-like nanostructure combines the advantage of p-type doping with the feature of a flower-like architecture. The prepared nanostructure film was applied as a photocathode in a photoelectrochemical (PEC) water splitting experiment and achieved a significantly improved photocurrent density of −5.34 mA cm −2 at −0.6 V vs. reversible hydrogen electrode (RHE) for 1 mol% Cu doping. The obtained photocurrent is about 4.85 times higher than that of the pure α-Fe2 O3 based photoelectrode. The incorporation of Cu into α-Fe2 O3 results in a dramatic enhancement in the water splitting performance. The enhancement is gained through an improvement in light harvesting and charge carrier separation. The copper-modified α-Fe2 O3 sample also exhibited an up shift in the conduction band edge potential, which is energetically favorable for the water reduction reaction. This result demonstrated high performance PEC water splitting as a potential route for the production of hydrogen gas using a single Cu-doped α-Fe2 O3 photoelectrode without the need for other catalysts and hybrid structures. Highlights: Flower-like Cu-doped hematite nanostructures on FTO glass substrates were prepared. The prepared nanostructures were applied for water splitting experiments. Cu-doping results in an enhancement of the hematite's water splitting performance. … (more)
- Is Part Of:
- Journal of physics and chemistry of solids. Volume 98(2016:Nov.)
- Journal:
- Journal of physics and chemistry of solids
- Issue:
- Volume 98(2016:Nov.)
- Issue Display:
- Volume 98 (2016)
- Year:
- 2016
- Volume:
- 98
- Issue Sort Value:
- 2016-0098-0000-0000
- Page Start:
- 283
- Page End:
- 289
- Publication Date:
- 2016-11
- Subjects:
- Nanostructures -- Hematite -- Cu-doping -- Water splitting -- Photocathode
Solids -- Periodicals
Solides -- Périodiques
Solids
Periodicals
530.41 - Journal URLs:
- http://www.sciencedirect.com/science/journal/00223697 ↗
http://www.elsevier.com/journals ↗ - DOI:
- 10.1016/j.jpcs.2016.07.014 ↗
- Languages:
- English
- ISSNs:
- 0022-3697
- Deposit Type:
- Legaldeposit
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - 5036.500000
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- 115.xml