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Ali Shirzadmehr

Researcher at Bu-Ali Sina University

Publications -  23
Citations -  1365

Ali Shirzadmehr is an academic researcher from Bu-Ali Sina University. The author has contributed to research in topics: Potentiometric sensor & Potentiometric titration. The author has an hindex of 21, co-authored 23 publications receiving 1166 citations. Previous affiliations of Ali Shirzadmehr include Islamic Azad University.

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Composite of Cu metal nanoparticles-multiwall carbon nanotubes-reduced graphene oxide as a novel and high performance platform of the electrochemical sensor for simultaneous determination of nitrite and nitrate.

TL;DR: A novel electrochemical sensor based on Cu metal nanoparticles on the multiwall carbon nanotubes-reduced graphene oxide nanosheets (Cu/MWCNT/RGO) for individual and simultaneous determination of nitrite and nitrate ions is fabricated.
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Simultaneous electrochemical determination of heavy metals using a triphenylphosphine/MWCNTs composite carbon ionic liquid electrode

TL;DR: In this article, a triphenylphosphine-modified carbon nanotube composite with a room temperature ionic liquid as pasting binder was employed as a novel electrode for sensitive and simultaneous determination of Cd 2+, Pb 2+ and Hg 2+.
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Simultaneous trace-levels determination of Hg(II) and Pb(II) ions in various samples using a modified carbon paste electrode based on multi-walled carbon nanotubes and a new synthesized Schiff base.

TL;DR: The modified electrode displayed a good reproducibility and selectivity, making it suitable for the simultaneous determination of Hg(II) and Pb( II) in real samples such as sea water, waste water, tobacco, marine and human teeth samples.
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New nano-composite potentiometric sensor composed of graphene nanosheets/thionine/molecular wire for nanomolar detection of silver ion in various real samples.

TL;DR: The suggested potentiometric silver(I) sensor was successfully applied to the determination of silver in radiological film, environmental and drug samples with satisfactory results.
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A new nano-composite potentiometric sensor containing an Hg2 +-ion imprinted polymer for the trace determination of mercury ions in different matrices

TL;DR: In this article, a carbon paste sensor composed of nanomaterials (graphene nanosheets and alumina nanoparticles), an Hg2+-ion imprinted polymer, as a sensing modifier, and an ionic liquid, as the binder, was prepared and used for the potentiometric determination of Hg 2+ ions in a wide variety of real samples.