Title : Electrochemical Sensor Based on Prussian Blue Electrochemically Deposited at ZrO2 Doped Carbon Nanotubes Glassy Carbon Modified Electrode.

Pub. Date : 2020 Jul 7

PMID : 32646042






4 Functional Relationships(s)
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1 The fabricated sensor could be used to efficiently detect H2O2, presenting a good linear relationship between the H2O2 concentration and the peak current, with quantification limit (LQ) of the 10.91 mumol L-1 and detection limit (LD) of 3.5913 mumol L-1. Hydrogen Peroxide L1 cell adhesion molecule Homo sapiens
2 The fabricated sensor could be used to efficiently detect H2O2, presenting a good linear relationship between the H2O2 concentration and the peak current, with quantification limit (LQ) of the 10.91 mumol L-1 and detection limit (LD) of 3.5913 mumol L-1. Hydrogen Peroxide L1 cell adhesion molecule Homo sapiens
3 The fabricated sensor could be used to efficiently detect H2O2, presenting a good linear relationship between the H2O2 concentration and the peak current, with quantification limit (LQ) of the 10.91 mumol L-1 and detection limit (LD) of 3.5913 mumol L-1. Hydrogen Peroxide L1 cell adhesion molecule Homo sapiens
4 The fabricated sensor could be used to efficiently detect H2O2, presenting a good linear relationship between the H2O2 concentration and the peak current, with quantification limit (LQ) of the 10.91 mumol L-1 and detection limit (LD) of 3.5913 mumol L-1. Hydrogen Peroxide L1 cell adhesion molecule Homo sapiens