Journal of Materials Chemistry B · 2014 · 54 citations · 28 references
Spiked TapEngineeringDual Catalytic/inhibitionChemistryBiosensorsChemical EngineeringBiosensing SystemsBiorational PesticideAnalytical ChemistryToxicologyNanosensorCation SensingChemical SensorIridium Oxide NanoparticleIridium Oxide NanoparticlesPesticide CompoundsCatalysisEcotoxicologyWater AnalysisDual DetectionSensorsEnvironmental EngineeringBioelectronicsElectroanalytical SensorEnvironmental Toxicology
Environmental pollution control technology has a great demand for detection systems, particularly for pesticides and phenolic compounds. Moreover, analytical systems are highly required for the dual detection of different pollutants using the same platform. In that direction, a new, reliable, easy to use and disposable biosensor for the detection of catechol and chlorpyrifos is proposed. The designed biosensor with synergic properties between the high conductivity of iridium oxide nanoparticles, low-cost screen printed electrodes and the efficiency of tyrosinase shows broad linearity ranges for catechol and chlorpyrifos detection. Using this biosensor, very low limits of detection for catechol (0.08 μM) and chlorpyrifos (0.003 μM) are observed and recoveries of spiked tap and river water samples have also been studied showing very good recoveries.
28
John P. Hart, Stephen A. Wring · TrAC Trends in Analytical Chemistry · 1997 · 280 citations
Environmental Electrochemistry, Chemical Engineering, Biomedical Sensors +11
S. Viswanathan, Hanna Radecka, Jerzy Radecki · Biosensors and Bioelectronics · 2009 · 279 citations
Chemical Engineering, Engineering, Electrochemical Biosensor +7
Silvana Andreescu, Lise Barthelmebs, Jean‐Louis Marty · Analytica Chimica Acta · 2002 · 221 citations
Organophosphorus Insecticides, Engineering, Biochemistry +13