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1.
Ultrason Sonochem ; 64: 105036, 2020 Jun.
Article in English | MEDLINE | ID: mdl-32146333

ABSTRACT

Herein, we have synthesized zinc sulfide nanospheres (ZnS NPs) encapsulated on reduced graphene oxide (RGO) hybrid by an ultrasonic bath (50 kHz/60 W). The physical and structural properties of ZnS NPs@RGO hybrid were analyzed by TEM, XRD, EIS and EDS. As-prepared ZnS NPs@RGO hybrid was applied towards the electrochemical determination of caffeic acid (CA) in various food samples. The ZnS NPs@RGO hybrid modified electrode (GCE) exhibited an excellent electrocatalytic performance towards caffeic acid detection and determination, when compared to other modified electrodes. Therefore, the electrochemical sensing performance of the fabricated and nanocomposite modified electrode was significantly improved owing to the synergistic effect of ZnS NPs and RGO catalyst. Furthermore, the hybrid materials provide highly active electro-sites as well as rapid electron transport pathways. The proposed electrochemical caffeic acid sensor produces a wide linear range of 0.015-671.7 µM with a nanomolar level detection limit (3.29 nM). In addition, the real sample analysis of the proposed sensor has applied to the determination of caffeic acid in various food samples.


Subject(s)
Graphite/chemistry , Nanocomposites/chemistry , Sulfides/chemistry , Zinc Compounds/chemistry , Caffeic Acids/analysis , Catalysis , Electrochemistry , Electrodes , Food Analysis
2.
Ultrason Sonochem ; 64: 104717, 2020 Jun.
Article in English | MEDLINE | ID: mdl-32062532

ABSTRACT

The ultrasound-assisted synthesis of a novel neodymium sesquioxide nanoparticles (Nd2O5 NPs) decorated graphene oxide (GO) nanocomposite under ultrasonic probe (Ultrasonic processor model-PR 1000; frequency-30 kHz; power of 100 W/cm2) has been reported. After then, SEM, TEM, XRD, EDX and electrochemical impedance spectroscopy characterized was analyzed using Nd2O5 NPs@GO nanomaterial. Furthermore, the nanomaterial modified GCE (glassy carbon electrode) shows excellent electrochemical sensing performance towards anti-cancer drug. Raloxifene is one of the important anti-cancer drug. Moreover, the fabricated electrochemical sensor has showed a wide linear range for raloxifene between 0.03 and 472.5 µM and nanomolar detection limit (18.43 nM). In addition, the Nd2O5 NPs@GO modified sensor has been applied to the determination of raloxifene in human blood and urine samples.


Subject(s)
Electrochemistry/instrumentation , Graphite/chemistry , Limit of Detection , Nanocomposites/chemistry , Nanotechnology , Raloxifene Hydrochloride/analysis , Ultrasonic Waves , Antineoplastic Agents/analysis , Antineoplastic Agents/blood , Antineoplastic Agents/chemistry , Antineoplastic Agents/urine , Chemistry Techniques, Synthetic , Electrodes , Humans , Raloxifene Hydrochloride/blood , Raloxifene Hydrochloride/chemistry , Raloxifene Hydrochloride/urine
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