Electrical Behavior and Photocatalytic Activity of Ag-Doped In2S3 Thin Films

被引:0
作者
B. Tiss
A. Ben Fradj
N. Bouguila
D. Cristea
C. Croitoru
M. Kraini
C. Vázquez-Vázquez
L. Cunha
C. Moura
S. Alaya
机构
[1] Gabes University,Laboratory of Physics of Materials and Nanomaterials Applied at Environment, Faculty of Sciences in Gabes
[2] CERTE,Laboratory of Wastewater Treatment
[3] Transilvania University,Materials Science and Engineering Faculty
[4] Universidade de Santiago de Compostela,Laboratory of Magnetism and Nanotechnology (NANOMAG), Department of Physical Chemistry, Faculty of Chemistry
[5] Physics Center of Minho and Porto Universities-CF-UM-UP,undefined
来源
Journal of Electronic Materials | 2021年 / 50卷
关键词
In; S; :Ag; spray pyrolysis; physical properties; conduction mechanism; photocatalysis;
D O I
暂无
中图分类号
学科分类号
摘要
Indium sulfide thin films with different amounts of silver doping were deposited by spray pyrolysis. The samples were tested as potential photocatalysts by degrading methylene blue (MB) dye aqueous solution under the effect of light. Samples were prepared using precursors with Ag/In ratios of 0 at.%, 4 at.%, and 6 at.%, corresponding to a measured and normalized Ag concentration in the films of 0.0 at.%, 1.4 at.%, and 2.3 at.%, respectively. Scanning electron microscopy revealed that the surface of the films was homogeneous and compact. Within the energy resolution of dispersive x-ray spectroscopy, the films were revealed to be stoichiometric with an S/In ratio of 1.50 ± 0.05. The films exhibited semiconductor behavior, and the best direct-current (DC) conductance was achieved for the film with 1.4 at.% Ag doping. Changes in the Ag concentration led to the activation of different conduction mechanisms, from correlated barrier hopping (for the undoped and for 1.4 at.% Ag-doped film) to overlapping large-polaron tunneling (for the 2.3 at.% Ag-doped film). After immersing the samples in MB solution and exposing them to visible light for 270 min, a significant decrease of the MB absorption was observed. The lowest absorption (and thus highest photodegradation efficiency) was measured for the solution containing the sample with 1.4 at.% Ag doping, showing a photodegradation efficiency of 83%. Considering their performance and relatively low manufacturing cost, such In2S3:Ag films could contribute to the solution of environmental problems related to wastewater via photodegradation of contaminants under illumination by sunlight.
引用
收藏
页码:3739 / 3747
页数:8
相关论文
共 231 条
[1]  
Maurya NS(2006)Indium sulfide and relatives in the world of photovoltaics Bioresour. Technol. 97 512-undefined
[2]  
Mittal AK(2008)undefined Bioresour. Technol. 99 5582-undefined
[3]  
Cornel P(1997)undefined Water Sci. Technol. 36 189-undefined
[4]  
Rother E(2010)undefined Chem. Soc. Rev. 39 4206-undefined
[5]  
Ncibi MC(2013)undefined J. Am. Chem. Soc. 135 10286-undefined
[6]  
Mahjoub B(2017)undefined J. Catal. 349 8-undefined
[7]  
Seffen M(2017)undefined Chem. Eng. J. 313 1438-undefined
[8]  
Ramakrishna KR(2014)undefined J. Phys. Chem. C 118 21347-undefined
[9]  
Viraraghavan T(2017)undefined Chem. Eng. J. 308 275-undefined
[10]  
Chen CC(2013)undefined Appl. Catal. B 138 299-undefined