2022
DOI: 10.1007/s11356-022-22033-9
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Optimized Mo-doped IrOx anode for efficient degradation of refractory sulfadiazine

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Cited by 4 publications
(2 citation statements)
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“…RuO 2 and IrO 2 are classified as active anodes because of their low oxygen evolution overpotentials that hinder the complete oxidation of pollutants in EO. [301,302] However, these materials have undergone modifications that improve serviceable lifetimes (i.e., stability and resistance to corrosion). [301] Reports of improving stability while decreasing dependence on IrO 2 and or RuO 2 for synthesis and improving electrode integrity are ongoing.…”
Section: Iro 2 and Ruomentioning
confidence: 99%
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“…RuO 2 and IrO 2 are classified as active anodes because of their low oxygen evolution overpotentials that hinder the complete oxidation of pollutants in EO. [301,302] However, these materials have undergone modifications that improve serviceable lifetimes (i.e., stability and resistance to corrosion). [301] Reports of improving stability while decreasing dependence on IrO 2 and or RuO 2 for synthesis and improving electrode integrity are ongoing.…”
Section: Iro 2 and Ruomentioning
confidence: 99%
“…[ 301 ] Reports of improving stability while decreasing dependence on IrO 2 and or RuO 2 for synthesis and improving electrode integrity are ongoing. [ 303 ] Several studies have explored modifications such as IrO 2 –TaO 5 , [ 304 ] (Ir, W)O x , [ 302 ] (Sn, Sb, Ir)O x , [ 302 ] and RuO 2 /CoO x [ 285 ] (Figure 9e,f). These anodes are commonly used in wastewater treatment due to their stability, corrosion resistance, and integration with Ti substrates to increase cost efficiency and conductivity.…”
Section: Electrodesmentioning
confidence: 99%