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Sara Madarshahian

Researcher at University of the Sciences

Publications -  13
Citations -  66

Sara Madarshahian is an academic researcher from University of the Sciences. The author has contributed to research in topics: Chemistry & Mass spectrometry. The author has an hindex of 4, co-authored 9 publications receiving 59 citations. Previous affiliations of Sara Madarshahian include University of Birjand & Cornell University.

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Synthesis and application of a new chelating resin functionalized with 2,3-dihydroxy benzoic acid for Fe(III) determination in water samples by flame atomic absorption spectrometry

TL;DR: In this article, a selective chelating resin for separation and preconcentration of Fe(III) ions in various water samples, amberlite XAD-4 was functionalized with 2,3-dihydroxy benzoic acid by coupling it through an N N− spacer.
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An overview of biological applications and fundamentals of new inlet and vacuum ionization technologies

TL;DR: Examples are provided highlighting exceptional analytical capabilities associated with the novel ionization processes in MS that reduce operational complexity while increasing speed and robustness, achieving mass spectra with low-background for improved sensitivity suggesting the potential of this simple ionization technology to drive MS into areas currently underserved such as clinical and medical applications.
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Investigation of charge transfer complex formation between Fe(III) and 2,6-dihydroxy benzoic acid and its applications for spectrophotometric determination of iron in aqueous media.

TL;DR: In this article, a charge transfer complex (CT) is formed between Fe(III) ion and 2,6-DHB in aqueous media, and the stoichiometry and stability constant of the complex were determined using both mole ratio and Job's methods.
Journal Article

Investigation of charge transfer complex formation between Fe(III) and 2,6-dihydroxy benzoic acid and its applications for spectrophotometric determination of iron in aqueous media

TL;DR: In this article, a charge transfer complex (CT) was formed between Fe(III) ion and 2,6-DHB in acidic media, and the stoichiometry and stability constant of the complex were determined using both mole ratio and Job's methods.
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Online monitoring of gold nanoparticles and induced aggregation by photothermal lens microscopy

TL;DR: In this paper, inverted photothermal lens microscopy (PTLM) with a flow through optical cell for online detection of gold nanoparticles (AuNPs) to monitor the AuNP production process and aggregation is presented.