0000000000166836

AUTHOR

Giuseppe Drago

showing 3 related works from this author

MODELLI DATA-DRIVEN VALORIZZAZIONE DELLE INFORMAZIONI DIGITALI A SUPPORTO DEI PROCESSI DECISIONALI DELLA SUPPLY CHAIN

2023

Settore ING-IND/17 - Impianti Industriali MeccaniciDigital supply chain management Statistical learning Supply chain disruption Supply chain finance Risk management Public management Health economics COVID-19.
researchProduct

Electrochemical detection of dopamine with negligible interference from ascorbic and uric acid by means of reduced graphene oxide and metals-NPs base…

2021

Abstract Dopamine is an important neurotransmitter involved in many human biological processes as well as in different neurodegenerative diseases. Monitoring the concentration of dopamine in biological fluids, i.e., blood and urine is an effective way of accelerating the early diagnosis of these types of diseases. Electrochemical sensors are an ideal choice for real-time screening of dopamine as they can achieve fast, portable inexpensive and accurate measurements. In this work, we present electrochemical dopamine sensors based on reduced graphene oxide coupled with Au or Pt nanoparticles. Sensors were developed by co-electrodeposition onto a flexible substrate, and a systematic investigati…

Dopaminechemistry.chemical_elementMetal NanoparticlesNanotechnologyAscorbic AcidPlatinum nanoparticlesBiochemistryAnalytical Chemistrylaw.inventionlawSettore ING-IND/17 - Impianti Industriali MeccaniciEnvironmental ChemistryHumansElectrodesSpectroscopyPlatinumDetection limitChemistryGrapheneSubstrate (chemistry)Electrochemical TechniquesUric AcidSettore ING-IND/23 - Chimica Fisica ApplicataLinear rangeColloidal goldElectrodeGraphiteGoldDopamine Electrochemical sensor Graphene oxide Metal nanoparticles Neurodegenerative disease UrinePlatinumAnalytica chimica acta
researchProduct

Electrochemical detection of chloride ions using Ag-based electrodes obtained from compact disc

2022

Abstract In this work electrochemical sensors fabricated from compact disc material (waste or new) are used to quantify chloride ions in different types of samples. All three electrodes, working, counter, and pseudo-reference electrodes, were fabricated from the compact disc and directly used. Different parameters were studied in order to demonstrate the possibility of using this waste material for efficient and low-cost electrochemical sensors. Chloride sensing performance was evaluated using linear scan voltammetry as the detection technique. A sensitivity of 0.174 mA mM−1 cm−2 with a limit of detection of 20 μM and excellent selectivity against many interferents was observed. Selectivity…

Detection limitReproducibilityCompact DisksChemistryAnalytical chemistryReproducibility of ResultsElectrochemical TechniquesElectrochemistryBiochemistryChlorideAnalytical ChemistryElectrochemical gas sensorSettore ING-IND/23 - Chimica Fisica ApplicataChloridesChloride ions Compact disc Cystic fibrosis Disposable sensor Electrochemical sensor Real time monitoring Water quality Wearable sensorsElectrodeSettore ING-IND/17 - Impianti Industriali MeccanicimedicineEnvironmental ChemistrySelectivityVoltammetryElectrodesSpectroscopymedicine.drug
researchProduct