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BiVO4 thin film

Based on

4 Articles
2016 Most recent source

Composition

Image only illustrates the order and placement of components as described in literature.

1

bismuth vanadate

Type Single Compound
Formula BiVO4
Role raw materials

Properties

General physical and chemical properties

Property Value Nanomaterial Variant Source
activation energy for photoluminescence thermal quenching

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Applications

Area Application Nanomaterial Variant Source
catalysis

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Characterization

Method Nanomaterial Variant Source
atomic force microscopy

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Biological effects

Preparation

Method 1

Type: Chemical synthesis
Source:
Starting materials
  • bismuth(III) nitrate pentahydrate
  1. yRcnaNvH4VZhI
  2. gMtd7VBAXu
  3. JFpyim
Product

BiVO4 thin film

Thickness: ~ 50 nm

Medium: none

Support: silicon dioxide

Method 2

Type: Chemical synthesis
Source:
Starting materials
  • bismuth(III) nitrate pentahydrate
  • bis(acetylacetonato)oxovanadium(IV)
  1. 7S04kifibNyAejzgfTnQ4xueseOBLS0lBm
  2. 2tQZbcazFiD8Ib5vq5cXWmVKd0qXjPpR8xjkXC8ZQ4W
Product

BiVO4 thin film

Thickness: ~ 80 nm

Medium/Support: none

Method 3

Type: Chemical synthesis
Source:
Starting materials
  • bismuth(III) nitrate pentahydrate
  • bis(acetylacetonato)oxovanadium(IV)
  1. siIXvBjFf6Nou5awDPPmparR
Product

BiVO4 thin film

Grain size: 128 - 178 nm

RMS roughness: 9 - 11 nm

Thickness: 41 - 67 nm

Medium: none

Support: fluorine doped tin oxide glass

Method 4

Type: Physical formation
Source:
Starting materials
  • SrRuO3/yttria-stabilized zirconia
  • bismuth-vanadium oxide
  1. 9Y90JB
  2. ibFrWcVAQ6KNB
Product

BiVO4 thin film

Thickness: ~ 100 nm

Medium: none

Support: SrRuO3/yttria-stabilized zirconia

Method 5

Type: Chemical synthesis
Source:
Starting materials
  • bismuth(III) nitrate pentahydrate
  1. E9OB3bp10jnsF
  2. 1xUTunGSGU
  3. mt3l83
Product

BiVO4 thin film

Thickness: ~ 50 nm

Medium: none

Support: fluorine doped tin oxide glass

References

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