A series of orthorhombic photocatalysts (AgNbO 3 ) 1Àx (NaNbO 3 ) x solid solutions have been synthesized by a solid-state reaction method. The composition dependence of the photophysical and photocatalytic properties of synthesized solid solutions has been investigated systematically. With an incre
Band structure and photoelectrochemical behavior of AgNbO3–NaNbO3 solid solution photoelectrodes
✍ Scribed by Guoqiang Li; Na Yang; Wanling Wang; W.F. Zhang
- Book ID
- 103828287
- Publisher
- Elsevier Science
- Year
- 2010
- Tongue
- English
- Weight
- 356 KB
- Volume
- 55
- Category
- Article
- ISSN
- 0013-4686
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✦ Synopsis
a b s t r a c t NaNbO 3 , (AgNbO 3 ) 0.5 (NaNbO 3 ) 0.5 and AgNbO 3 films on FTO conducting glass substrates were fabricated by pulsed laser deposition at 973 K for 1 h under 10 Pa oxygen pressure with the laser energy of 400 mJ. The energy band structure and photoelectrochemical behavior were investigated by measuring the flatband potential (V fb ) and photocurrent. The optical band gaps for NaNbO 3 , (AgNbO 3 ) 0.5 (NaNbO 3 ) 0.5 and AgNbO 3 are 3.50, 3.25 and 2.93 eV, respectively. And the V fb for the NaNbO 3 , (AgNbO 3 ) 0.5 (NaNbO 3 ) 0.5 and AgNbO 3 films are -0.91, -0.76 and -0.88 V (vs. Ag/AgCl), respectively, indicating that the conduction band bottom of (AgNbO 3 ) 0.5 (NaNbO 3 ) 0.5 is more positive than those of NaNbO 3 and AgNbO 3 , and the valence band top becomes more positive in order of AgNbO 3 , (AgNbO 3 ) 0.5 (NaNbO 3 ) 0.5 and NaNbO 3 . The AgNbO 3 film shows the largest photocurrent density due to the more light harvesting, the relative higher donor density and large contact surface area between the electrode and the electrolyte solution. The (AgNbO 3 ) 0.5 (NaNbO 3 ) 0.5 film shows lowest photocurrent due to lower donor density.
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