Improved activity of SnO for the photocatalytic oxygen evolution

Joint Authors

Kaizra, S.
Bilal, B.
Trari, M.
Lutfi, Y.

Source

Journal of Saudi Chemical Society

Issue

Vol. 22, Issue 1 (31 Jan. 2018), pp.76-83, 8 p.

Publisher

Saudi Chemical Society

Publication Date

2018-01-31

Country of Publication

Saudi Arabia

No. of Pages

8

Main Subjects

Chemistry

Abstract EN

SnO prepared by soft chemistry exhibits a black color and semiconducting properties.

The X-ray diffraction indicates a tetragonal symmetry (SG: P4/nmm) with nano crystallites of an average size of 85 nm.

The forbidden band, determined from the diffuse reflectance is found to be 1.46 eV.

The electrical conductivity occurs by polaron hopping and follows an Arrhenius type law with activation energy of 0.21 eV, the change in the slope at 526 K is attributed to the oxidation to SnO2.

The photo-electrochemical study shows n type conduction with a flat band potential of 0.45 V, close to the photocurrent onset potential (0.40 V).

The electrochemical impedance spectroscopy shows the bulk contribution of SnO (Rb= 1.7 kX cm2) and decreases down to 1.89 kX cm2 under illumination.

The photocatalytic properties have been evaluated for the first time for to the oxygen evolution.

The valence band, deriving from Sn2+: 5p orbital with a potential (0.80 VSCE/5.55 eV), is suitably positioned with respect to O2/H2O level (0.6 VSCE), leading to water oxidation under visible light.

The best performance occurs at pH 7 with an oxygen liberation rate of 23 mmol mL h1 (mg catalyst)1 and a quantum efficiency of 1.2%.

An improvement of 13% is observed on the system SnO/clay

American Psychological Association (APA)

Kaizra, S.& Bilal, B.& Lutfi, Y.& Trari, M.. 2018. Improved activity of SnO for the photocatalytic oxygen evolution. Journal of Saudi Chemical Society،Vol. 22, no. 1, pp.76-83.
https://search.emarefa.net/detail/BIM-787947

Modern Language Association (MLA)

Kaizra, S.…[et al.]. Improved activity of SnO for the photocatalytic oxygen evolution. Journal of Saudi Chemical Society Vol. 22, no. 1 (Jan. 2018), pp.76-83.
https://search.emarefa.net/detail/BIM-787947

American Medical Association (AMA)

Kaizra, S.& Bilal, B.& Lutfi, Y.& Trari, M.. Improved activity of SnO for the photocatalytic oxygen evolution. Journal of Saudi Chemical Society. 2018. Vol. 22, no. 1, pp.76-83.
https://search.emarefa.net/detail/BIM-787947

Data Type

Journal Articles

Language

English

Notes

Includes bibliographical references : p. 82-83

Record ID

BIM-787947