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Parviz Norouzi

Researcher at University of Tehran

Publications -  513
Citations -  13978

Parviz Norouzi is an academic researcher from University of Tehran. The author has contributed to research in topics: Cyclic voltammetry & Detection limit. The author has an hindex of 50, co-authored 503 publications receiving 12469 citations. Previous affiliations of Parviz Norouzi include Tehran University of Medical Sciences & Amirkabir University of Technology.

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Electrochemical Analysis of Some Toxic Metals by Ion–Selective Electrodes

TL;DR: An overview of potentiometric sensors that are capable of detecting toxic heavy metal ions in environmental samples is presented and discussed and several limitations do exist in terms of selectivity, limits of detection, dynamic ranges, applicability to specific problems, and reversibility.
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A new molecularly imprinted polymer (MIP)-based electrochemical sensor for monitoring 2,4,6-trinitrotoluene (TNT) in natural waters and soil samples.

TL;DR: A high selective voltammetric sensor for 2,4,6-trinitrotoluene (TNT) was introduced and it was shown that electrode washing after TNT extraction led to enhanced selectivity.
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Development of dispersive liquid–liquid microextraction combined with gas chromatography–mass spectrometry as a simple, rapid and highly sensitive method for the determination of phthalate esters in water samples

TL;DR: The proposed method was successfully utilized for the preconcentration and determination of the phthalate esters in different real water samples and satisfactory results were obtained.
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Conductive polymer/reduced graphene oxide/Au nano particles as efficient composite materials in electrochemical supercapacitors

TL;DR: In this article, polyaniline/reduced graphene oxide/Au nano particles (PANI/rGO/auNPs) were used as a hybrid supercapacitor for electrochemical redox capacitors.
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Electrochemical study of a novel high performance supercapacitor based on MnO 2 /nitrogen-doped graphene nanocomposite

TL;DR: In this article, a new nanocomposite was synthesized via deposition of MnO 2 on Nitrogen-doped reduced graphene (MnO 2 /NRGO) by sonochemical method, in which, the particles of manganese oxide were uniformly distributed on NRGO sheets.