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Mahdieh Sharifi

Researcher at Payame Noor University

Publications -  7
Citations -  63

Mahdieh Sharifi is an academic researcher from Payame Noor University. The author has contributed to research in topics: Quenching (fluorescence) & Quantum dot. The author has an hindex of 2, co-authored 7 publications receiving 18 citations.

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Trends of biofuel cells for smart biomedical devices

TL;DR: Small and self-powered with high sensitivity biomedical devices are recommended, among different power sources that introduced for devices, biofuel cells would be produced as power source for a range of medical devices because of its capability to generate sufficient power output compared to the primary power source.
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Efficient and Versatile Application of Fluorescence DNA-Conjugated CdTe Quantum Dots Nanoprobe for Detection of a Specific Target DNA of SARS Cov-2 Virus.

TL;DR: In this paper, a fluorescence CdTe quantum dots-DNA (QDs-DNA) nanosensor was prepared for efficient detection of a specific target complementary DNA or RNA from the SARS Cov-2 virus using FRET experiment via forming a classic "sandwich" structure.
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Synthesis of magnetic multi walled carbon nanotubes hydrogel nanocomposite based on poly (acrylic acid) grafted onto salep and its application in the drug delivery of tetracyceline hydrochloride

TL;DR: In this paper, a magnetic multi walled carbon nanotube hydrogel nanocomposite based on poly (acrylic acid) grafted onto salep was synthesized and then fully characterized by using FTIR spectroscopy, thermogravimetric analysis, EDAX spectrum, SEM, TEM, AFM images, and vibrating sample magnetometer (VSM) and synthesis mechanism was suggested.
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Preparation of novel fluorescence nanosensor κC - CdTe/ZnS quantum dots for high accurate detection of Epirubicin

TL;DR: In this paper, the preparation of novel fluorescence nanosensors κC-CdTe/ZnS quantum dots is reported, and the best linear quenching equation for entitled nanosesor in the presence of Epirubicin is F0/F 1.0379Q + 1.15 (R2/R 2 = 0.99).
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Novel CMC-CdTe / ZnS QDs Nanosensor for the Detection of Anticancer Drug Epirubicin.

TL;DR: In this article, a novel fluorescence nanosensor named CMC-CdTe/ZnS based on using quantum dots (QDs) was developed, which can be used for determination of Epirubicin in commercial samples as well.