Facile Water-Based Strategy for Synthesizing MoO3–x Nanosheets: Efficient Visible Light Photocatalysts for Dye Degradation
Author(s) -
Ahmed S. Etman,
Hani Nasser Abdelhamid,
Youyou Yuan,
Ligang Wang,
Xiaodong Zou,
Junliang Sun
Publication year - 2018
Publication title -
acs omega
Language(s) - Uncategorized
Resource type - Journals
SCImago Journal Rank - 0.779
H-Index - 40
ISSN - 2470-1343
DOI - 10.1021/acsomega.8b00012
Subject(s) - rhodamine b , photocatalysis , materials science , visible spectrum , exfoliation joint , methylene blue , catalysis , photochemistry , degradation (telecommunications) , molybdenum disulfide , nanosheet , chemical engineering , nanotechnology , carbazole , irradiation , chemistry , graphene , organic chemistry , optoelectronics , telecommunications , physics , computer science , nuclear physics , engineering , metallurgy
Nanostructured molybdenum oxides are promising materials for energy storage, catalysis, and electronic-based applications. Herein, we report the synthesis of MoO 3- x nanosheets ( x stands for oxygen vacancy) via an environmentally friendly liquid exfoliation approach. The process involves the reflux of the bulk α-MoO 3 precursor in water at 80 °C for 7 days. Electron microscopy and atomic force microscopy show that the MoO 3- x nanosheets are a few nanometer thick. MoO 3- x nanosheets exhibit near infrared plasmonic property that can be enhanced by visible light irradiation for a short time (10 min). Photocatalytic activity of MoO 3- x nanosheets for organic dye decolorization is examined using two different dyes (rhodamine B and methylene blue). Under visible light irradiation, MoO 3- x nanosheets make a rapid decolorization for the dye molecules in less than 10 min. The simple synthesis procedure of MoO 3- x nanosheets combined with their remarkable photochemical properties reflect the high potential for using the nanosheets in a variety of applications.
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