Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
50647 | Catalysis Communications | 2014 | 5 Pages |
Abstract
•Co3O4 nanoflowers were synthesized with template-free ultrasonic process.•Co3O4 nanoflowers showed performance on the removal of 10 ppm NO at room temperature.•By doping Mg2 + in the Co3O4 nanoflowers, 9 h for above 50% NO removal was obtained.
Co3O4 nanoflowers with high surface areas were synthesized with a facile template-free ultrasonic process and showed high performance on the removal of low-concentration (10 ppm) NO at room temperature. By doping Mg2 + in the Co3O4 nanoflowers, improved performances of about 9 h for above 50% NO removal were obtained.
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Physical Sciences and Engineering
Chemical Engineering
Catalysis
Authors
Yanyan Du, Weimin Huang, Zile Hua, Yongxia Wang, Xiangzhi Cui, Meiying Wu, Zhu Shu, Lingxia Zhang, Jin Wang, Hangrong Chen, Jianlin Shi,