Chen, X.; Zhang, H.; Xu, S.; Du, X.; Zhang, K.; Hu, C.-P.; Zhan, S.; Mi, X.; Oh, W.D.; Hu, X.;
et al. A Recyclable Co-Fe Bimetallic Immobilized Cellulose Hydrogel Bead (CoFeO@CHB) to Boost Singlet Oxygen Evolution for Tetracycline Degradation. Catalysts 2023, 13, 1150.
https://doi.org/10.3390/catal13081150
AMA Style
Chen X, Zhang H, Xu S, Du X, Zhang K, Hu C-P, Zhan S, Mi X, Oh WD, Hu X,
et al. A Recyclable Co-Fe Bimetallic Immobilized Cellulose Hydrogel Bead (CoFeO@CHB) to Boost Singlet Oxygen Evolution for Tetracycline Degradation. Catalysts. 2023; 13(8):1150.
https://doi.org/10.3390/catal13081150
Chicago/Turabian Style
Chen, Xinying, He Zhang, Shizhe Xu, Xiaoge Du, Kaida Zhang, Chun-Po Hu, Sihui Zhan, Xueyue Mi, Wen Da Oh, Xiao Hu,
and et al. 2023. "A Recyclable Co-Fe Bimetallic Immobilized Cellulose Hydrogel Bead (CoFeO@CHB) to Boost Singlet Oxygen Evolution for Tetracycline Degradation" Catalysts 13, no. 8: 1150.
https://doi.org/10.3390/catal13081150
APA Style
Chen, X., Zhang, H., Xu, S., Du, X., Zhang, K., Hu, C.-P., Zhan, S., Mi, X., Oh, W. D., Hu, X., Pan, Z., & Bao, Y.
(2023). A Recyclable Co-Fe Bimetallic Immobilized Cellulose Hydrogel Bead (CoFeO@CHB) to Boost Singlet Oxygen Evolution for Tetracycline Degradation. Catalysts, 13(8), 1150.
https://doi.org/10.3390/catal13081150