Enhanced tetracycline degradation by NC codoped Fe2O3 with rich oxygen vacancies in peroxymonosulfate assisting photoelectrochemical oxidation system: performance, mechanism and degradation pathway - ScienceDirect
Enhanced tetracycline degradation by NC codoped Fe2O3 with rich oxygen vacancies in peroxymonosulfate assisting photoelectrochemical oxidation system: performance, mechanism and degradation pathway - ScienceDirect,Construction of a novel S-type γ-Bi 2 O 3 /CeO 2 heterojunction for highly efficient photocatalytic degradation of antibiotics - Physical Chemistry Chemical Physics (RSC Publishing) DOI:10.1039/D3CP03990K,Enhanced tetracycline degradation by NC codoped Fe2O3 with rich oxygen vacancies in peroxymonosulfate assisting photoelectrochemical oxidation system: performance, mechanism and degradation pathway - ScienceDirect,Insights into the synergism of Mn-doped carbon@Fe7S8/Fe2O3/Fe derived from MIL-88A(Fe) in activating peroxymonosulfate and degrading ciprofloxacin: Accelerating superoxide radicals generation - ScienceDirect,Construction of a novel S-type γ-Bi 2 O 3 /CeO 2 heterojunction for highly efficient photocatalytic degradation of antibiotics - Physical Chemistry Chemical Physics (RSC Publishing) DOI:10.1039/D3CP03990K