2005
DOI: 10.1016/j.matlet.2005.05.018
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Spray deposition process of polycrystalline thin films of CuWO4 and study on its photovoltaic electrochemical properties

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Cited by 68 publications
(42 citation statements)
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“…The band structure calculations using hybrid PBE0-13% and WCGGA-PBE-16% functionals provide the band gap values E g =2.32 eV and 2.56 eV, respectively, which agree with the experimental values (2.0 eV [11], 2.25 eV [12,18], 2.3 eV [19]). The calculated PDOS allowed us to interpret the atomic contributions into the electronic bands and show good agreement with the experimental valence-band XPS data from [46].…”
Section: Discussionsupporting
confidence: 77%
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“…The band structure calculations using hybrid PBE0-13% and WCGGA-PBE-16% functionals provide the band gap values E g =2.32 eV and 2.56 eV, respectively, which agree with the experimental values (2.0 eV [11], 2.25 eV [12,18], 2.3 eV [19]). The calculated PDOS allowed us to interpret the atomic contributions into the electronic bands and show good agreement with the experimental valence-band XPS data from [46].…”
Section: Discussionsupporting
confidence: 77%
“…With a band gap of approximately 2.0-2.3 eV in the thin-film form, CuWO 4 has been suggested as a photoanode material candidate for the photovoltaic electrochemical (PVEC) cell [11,12]. The all-solid-state thin-film lithium batteries, which are based on the nano-sized CuWO 4 positive electrode as proposed in [13], show a high-volume rate capacity in the first discharge and lack the unfavourable electrochemical degradation, observed in liquid electrolyte systems [13].…”
Section: Introductionmentioning
confidence: 99%
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“…impedance spectroscopy and conductometry) [10][11][12][13][14][15], spectroscopic techniques such as X-ray photoelectron spectroscopy (XPS), IR and Raman spectroscopies, electron paramagnetic resonance (EPR) [16][17][18][19][20][21], and imaging such as transmission electron (TEM) and scanning electron microscopies (SEM) [22][23][24][25]. In the present work, conductometric analysis is used to characterise the oxygen states operating in CuWO 4 thin-films in the 100°C < T < 500 °C temperature range and under varying O 2 partial pressure.…”
Section: Introductionmentioning
confidence: 99%
“…It also has a conduction band that falls short of the HER and as such would need some form of external bias to split water. Copper tungstate (CuWO 4 ) has a band gap of 2.2 eV and its band edges straddle the HER and OER 40,41 . CuWO 4 unfortunately has poor transport properties that need to be improved before it becomes viable for PEC watersplitting.…”
Section: State-of-the-art Semiconductor Review For Photoelectrochemicmentioning
confidence: 99%