[PDF] Carbon-based ruthenium nanomaterial-based electroanalytical sensors for the detection of anticancer drug Idarubicin | Semantic Scholar (2024)

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@article{Kaya2020CarbonbasedRN, title={Carbon-based ruthenium nanomaterial-based electroanalytical sensors for the detection of anticancer drug Idarubicin}, author={Sariye Irem Kaya and Sevinç Kurbanoğlu and Ejmer Yavuz and Sibel Demiroglu Mustafov and Fatih G. Sen and Sibel Aysil Ozkan}, journal={Scientific Reports}, year={2020}, volume={10}, url={https://api.semanticscholar.org/CorpusID:220351214}}
  • S. Kaya, S. Kurbanoğlu, S. Ozkan
  • Published in Scientific Reports 6 July 2020
  • Medicine, Chemistry, Materials Science

The results of recovery studies showed that the Ru@VC/GCE nanosensor was free from excipient interferences in the dosage forms of injection, and it can be successfully applied to biological samples.

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Ultrasensitive electrochemical (bio)sensors for therapeutic drug monitoring
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Facile formation of surface functionalised α-Fe2O3 nanoparticles and their role in developing dual sensors towards Cysteamine quantification
    Aswathy S. MuraliBhama Sajeevan Beena Saraswathyamma

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    Materials Research Bulletin

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Synthesis of Silver Nanoparticles by Biogenic Methods: Characterization and Development of a Sensor Sensible to Pharmaceutical Medicine Paracetamol
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    Topics in Catalysis

  • 2023

It is aimed to improve the electrochemical sensor efficiency of synthesized Ag NPs against the pharmaceutical drug paracetamol by using fourier transmission infrared spectroscopy, ultra-violet visible spectroscopy, ultra-violet visible spectroscopy, and transmission electron spectroscopy analyses to elucidate the structure of the synthesized Ag NPs.

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Ruthenium nanoparticles embedded poly(4-aminodiphenylamine) nanocomposites based determination of guaifenesin in real samples
    Mohammed M. Al-HinaaiPalanisamy KannanJahangir Ahmad RatherRayees Ahmad SheikhMohammad Shahzad Samdani

    Chemistry, Materials Science

    Journal of Saudi Chemical Society

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Recent Trends and Application of Nanomaterial Based on Carbon Paste Electrodes: A Short Review
    Karna WijayaR. A. Pratika W. D. Saputri

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: Carbon paste electrodes (CPEs) are a type of electrochemical sensor that have been widely used for sensing and monitoring various analytes. Recently, there has been a growing interest in

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Modified screen-printed electrochemical biosensor design compatible with mobile phones for detection of miR-141 used to pancreatic cancer biomarker
    Muhammed BekmezciRamazan BayatMerve AkinZeynep Kazel CoguplugilF. Sen

    Medicine, Engineering

    Carbon Letters

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This developed strategy has been found to detect miR-141 sensitively, selectively and without tags, and its integration into mobile devices has been successfully carried out.

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Polyglycerol-Decorated Hollow Mesoporous Ruthenium Nanoparticles for Long Circulation and Antitumor Effect
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Electroanalytical sensors-based biogenic synthesized metal oxide nanoparticles for potentiometric assay of pantoprazole sodium
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The results showed that the improved nickel oxide and iron oxide nanosensors exhibited linearity using the concentration range and showed excellent validity and suitability for the determination of pantoprazole in an authentic sample.

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The electrochemical behavior of tert-butylhydroxyanisole antioxidant was investigated at a surface of carbon paste electrode amplified with MgO nanoparticle and n-methyl-3-butylimidazolium bromide as

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A novel electrochemical epinine sensor using amplified CuO nanoparticles and an-hexyl-3-methylimidazolium hexafluorophosphate electrode
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This study suggests a carbon paste electrode modified with CuO nanoparticles andn-hexyl-3-methylimidazolium hexafluorophosphate (CPE/CuO-NPs/HMIPF6) as a powerful tool for the analysis of epinine for

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It is demonstrated further that a fine control of the metal Ru nanoparticle size on the TiO2 support was possible via a controlled nanocluster growth under irradiation, while the nanoparticles revealed a good resistance to thermal sintering.

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