2021
DOI: 10.1007/s12678-021-00663-w
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Degradation of Norfloxacin by Electrochemical Oxidation Using Ti/Sno2-Sb Electrode Doped with Ni or Mo

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Cited by 19 publications
(9 citation statements)
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“…, Ce, Gd, Eu, and Dy), 162 common metals ( e.g. , Mo and Ni), 21 and graphene oxide. 159 Furthermore, SnO 2 –Sb electrodes can also undergo co-doping for modification, exemplified by Ti/SnO 2 –Sb–Ni–Ce and Ti/SnO 2 –Sb–Eu&rGO.…”
Section: Preparation Methods Of Modified Sno2–sb Electrodesmentioning
confidence: 99%
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“…, Ce, Gd, Eu, and Dy), 162 common metals ( e.g. , Mo and Ni), 21 and graphene oxide. 159 Furthermore, SnO 2 –Sb electrodes can also undergo co-doping for modification, exemplified by Ti/SnO 2 –Sb–Ni–Ce and Ti/SnO 2 –Sb–Eu&rGO.…”
Section: Preparation Methods Of Modified Sno2–sb Electrodesmentioning
confidence: 99%
“…This is primarily due to the corrosive effect of the O 3 generated by the NATO electrode on waterborne pollutants, thereby further enhancing the degradation of noroxacin. 21 O 3 is the predominant ROS in the NATO electrode, followed by $OH. In comparison to Ti/ SnO 2 -Sb, the NATO electrode exhibits a higher reaction rate constant for phenol degradation.…”
Section: Electrogenic Ozonementioning
confidence: 99%
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“…In recent years, Ti/SnO 2 -Sb electrodes have attracted great attention due to their potential electrocatalytic performances, but their short service life and poor catalytic activity in an acidic solution limit their application as the anode for the OER . Many researchers have proved that doping with different elements is much efficient to change the catalytic activity and stability of the electrode. , Zhu et al proved that the increase in Mn-doping concentration could promote lattice shrinkage and optimize the properties of the electrode . Chen et al introduced CeO 2 in the SnO 2 -Sb coating by using ultrasonic spray pyrolysis (USP) technology, finding that Ce modification could significantly change the crystal structure of the coating and decrease the oxygen evolution overpotential .…”
Section: Introductionmentioning
confidence: 99%