1 |
Preparation of chitosan modified magnetic carbon nanotubes and application in immobilized enzymes Cai YX, Zhang C, Cai XL Composite Interfaces, 27(6), 601, 2020 |
2 |
Immobilization of horseradish peroxidase on Fe3O4/nanotubes composites for Biocatalysis-degradation of phenol Zhang C, Cai XL Composite Interfaces, 26(5), 379, 2019 |
3 |
Synthesis and application of layered titanates in the photocatalytic degradation of phenol Ivanova S, Penkova A, Hidalgo MD, Navio JA, Romero-Sarria F, Centeno MA, Odriozola JA Applied Catalysis B: Environmental, 163, 23, 2015 |
4 |
Experimental study and theoretical calculation on the conductivity and stability of praseodymium doped tin oxide electrode Guo MM, Xie XJ, Jia JQ, Liang ZH, Fan CM, Han PD Electrochimica Acta, 151, 177, 2015 |
5 |
Carbon nanostrutured materials as direct catalysts for phenol oxidation in aqueous phase Soria-Sanchez M, Maroto-Valiente A, Alvarez-Rodriguez J, Munoz-Andres V, Rodriguez-Ramos I, Guerrero-Ruiz A Applied Catalysis B: Environmental, 104(1-2), 101, 2011 |
6 |
Catalytic wet air oxidation of phenol with air and micellar molybdoyanadophosphoric polyoxometalates under room condition Zhao S, Wang XH, Huo MX Applied Catalysis B: Environmental, 97(1-2), 127, 2010 |
7 |
Microwave-assisted rapid fabrication of Co3O4 nanorods and application to the degradation of phenol Lai TL, Lai YL, Lee CC, Shu YY, Wang CB Catalysis Today, 131(1-4), 105, 2008 |
8 |
Preparation and Characterization of Cobalt Cation-Exchanged NaX Zeolite as Catalyst for Wastewater Treatment Yamamoto T, Eiad-ua A, Kim SI, Ohmori T Journal of Industrial and Engineering Chemistry, 13(7), 1142, 2007 |
9 |
Microwave-enhanced catalytic degradation of phenol over nickel oxide Lai TL, Lee CC, Wu KS, Shu YY, Wang CB Applied Catalysis B: Environmental, 68(3-4), 147, 2006 |
10 |
Photocatalytic decomposition of phenol over a novel kind of loaded photocatalyst of TiO2/activated carbon/silicon rubber film Liu HT, Gao Y Reaction Kinetics and Catalysis Letters, 83(2), 213, 2004 |