2021
DOI: 10.1088/1742-6596/1899/1/012040
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Photocatalytic sensor for chemical oxygen demand flow system using N-TiO2/Ti electrode: determination of glucose and potassium hydrogen phthalate

Abstract: The design of the Chemical Oxygen Demand (COD) flow system using TiO2/Ti and N-TiO2 /Ti electrodes has been carried out. TiO2/Ti electrodes were synthesized from the anodizing process followed by the sol-gel method as nitrogen doping (N) to obtain N-TiO2/Ti electrodes. The test results obtained that TiO2/Ti electrodes are only active in UV light and N-TiO2/Ti electrodes can be active in visible light. Determination of the COD value of the flow system for glucose and potassium hydrogen phthalate at various conc… Show more

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Cited by 6 publications
(1 citation statement)
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“…[ 90 ] In a recent study, a photocatalytic sensor using TiO 2 /Ti and N–TiO 2 /Ti electrodes has been reported to detect COD values of the flow system comprising glucose and potassium hydrogen phthalate. [ 91 ] In continuation, Blanchard and colleagues reported a hybrid biosensor to examine on‐line as well as real‐time photocatalytic degradation practices. [ 92 ] In this study, paracetamol was used as a model substrate due to its extensive use and presence in wastewater.…”
Section: Tio2 Photocatalyst‐enabled Sensingmentioning
confidence: 99%
“…[ 90 ] In a recent study, a photocatalytic sensor using TiO 2 /Ti and N–TiO 2 /Ti electrodes has been reported to detect COD values of the flow system comprising glucose and potassium hydrogen phthalate. [ 91 ] In continuation, Blanchard and colleagues reported a hybrid biosensor to examine on‐line as well as real‐time photocatalytic degradation practices. [ 92 ] In this study, paracetamol was used as a model substrate due to its extensive use and presence in wastewater.…”
Section: Tio2 Photocatalyst‐enabled Sensingmentioning
confidence: 99%