Title of article :
Facile Synthesis of Indium Sulfide/Flexible Electrospun Carbon Nanofiber for Enhanced Photocatalytic Efficiency and Its Application
Author/Authors :
Fang, Dong School of Chemistry and Environmental Engineering - Yancheng Teachers University - Yancheng , China , Han, Liu School of Chemistry and Environmental Engineering - Yancheng Teachers University - Yancheng , China , Dong, Haohao School of Chemistry and Environmental Engineering - Yancheng Teachers University - Yancheng , China , Mao, Dong School of Chemistry and Environmental Engineering - Yancheng Teachers University - Yancheng , China , Hua, Baolv School of Chemistry and Environmental Engineering - Yancheng Teachers University - Yancheng , China , Li, Qinyu School of Chemistry and Environmental Engineering - Yancheng Teachers University - Yancheng , China
Pages :
11
From page :
1
To page :
11
Abstract :
Heterojunction system has been proved as one of the best architectures for photocatalyst owing to extending specific surface area,expanding spectral response range, and increasing photoinduced charges generation, separation, and transmission, which canprovide better light absorption range and higher reaction site. In this paper, Indium Sulfide/Flexible Electrospun Carbon Nanofiber(In2S3/CNF) heterogeneous systems were synthesized by a facile one-pot hydrothermal method. The results from characterizationsof SEM, TEM, XRD, Raman, and UV-visible diffuse reflectance spectroscopy displayed that flower-like In2S3was deposited on thehair-like CNF template, forming a one-dimensional nanofibrous network heterojunction photocatalyst. an‎d the newly preparedIn2S3/CNF photocatalysts exhibit greatly enhanced photocatalytic activity compared to pure In2S3. In addition, the formationmechanism of the one-dimensional heterojunction In2S3/CNF photocatalyst is discussed and a promising approach to degradeRhodamine B (RB) in the photocatalytic process is processed
Keywords :
Facile Synthesis , Indium Sulfide/Flexible , Electrospun Carbon Nanofiber , Enhanced Photocatalytic , Efficiency and Its Application , SEM, TEM, XRD
Journal title :
Scanning
Serial Year :
2017
Full Text URL :
Record number :
2614102
Link To Document :
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