Introducing cerium into TiO2@MnO hollow-sphere structure for highly active photothermocatalysis degradation of ethyl acetate and NO under H2O at low temperature
Author:
Publisher
Elsevier BV
Subject
Geochemistry and Petrology,General Chemistry
Reference50 articles.
1. Review and prospect on the atmospheric pollution control in China;Chai;Environ Sustain Dev,2020
2. Explosive growth of PM2.5 during the autumn and winter seaasons in the Jing-Jin-Ji and surrounding area and its control measures with emergency response;Hu;Res Environ Sci,2019
3. Recent advances in VOC elimination by catalytic oxidation technology onto various nanoparticles catalysts: a critical review;Guo;Appl Catal, B,2021
4. Review of synergistic photo-thermo-catalysis: mechanisms, materials and applications;Ma;Int J Hydrogen Energy,2020
5. Efficient UV-vis-infrared light-driven catalytic abatement of benzene on amorphous manganese oxide supported on anatase TiO2 nanosheet with dominant {001} facets promoted by a photothermocatalytic synergetic effect;Lan;Appl Catal, B,2017
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