Wu, T.; Cui, J.; Wang, C.; Zhang, G.; Li, L.; Qu, Y.; Niu, Y.
Oxygen Vacancy-Mediated Activates Oxygen to Produce Reactive Oxygen Species (ROS) on Ce-Modified Activated Clay for Degradation of Organic Compounds without Hydrogen Peroxide in Strong Acid. Nanomaterials 2022, 12, 4410.
https://doi.org/10.3390/nano12244410
AMA Style
Wu T, Cui J, Wang C, Zhang G, Li L, Qu Y, Niu Y.
Oxygen Vacancy-Mediated Activates Oxygen to Produce Reactive Oxygen Species (ROS) on Ce-Modified Activated Clay for Degradation of Organic Compounds without Hydrogen Peroxide in Strong Acid. Nanomaterials. 2022; 12(24):4410.
https://doi.org/10.3390/nano12244410
Chicago/Turabian Style
Wu, Tianming, Jing Cui, Changjiang Wang, Gong Zhang, Limin Li, Yue Qu, and Yusheng Niu.
2022. "Oxygen Vacancy-Mediated Activates Oxygen to Produce Reactive Oxygen Species (ROS) on Ce-Modified Activated Clay for Degradation of Organic Compounds without Hydrogen Peroxide in Strong Acid" Nanomaterials 12, no. 24: 4410.
https://doi.org/10.3390/nano12244410
APA Style
Wu, T., Cui, J., Wang, C., Zhang, G., Li, L., Qu, Y., & Niu, Y.
(2022). Oxygen Vacancy-Mediated Activates Oxygen to Produce Reactive Oxygen Species (ROS) on Ce-Modified Activated Clay for Degradation of Organic Compounds without Hydrogen Peroxide in Strong Acid. Nanomaterials, 12(24), 4410.
https://doi.org/10.3390/nano12244410