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Ionic Liquid Modified SPION@Chitosan as a Novel and Reusable Superparamagnetic Catalyst for Green One-Pot Synthesis of Pyrido[2,3-d]pyrimidine-dione Derivatives in Water

Catalysts, ISSN: 2073-4344, Vol: 13, Issue: 2
2023
  • 11
    Citations
  • 0
    Usage
  • 10
    Captures
  • 1
    Mentions
  • 0
    Social Media
Metric Options:   Counts1 Year3 Year

Metrics Details

  • Citations
    11
  • Captures
    10
  • Mentions
    1
    • News Mentions
      1
      • News
        1

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Findings on Nanoparticles Reported by Investigators at Payame Noor University (Ionic Liquid Modified Spion@chitosan As a Novel and Reusable Superparamagnetic Catalyst for Green One-pot Synthesis of Pyrido[2,3-d]Pyrimidine-dione Derivatives In ...)

2023 MAR 31 (NewsRx) -- By a News Reporter-Staff News Editor at Middle East Daily -- Researchers detail new data in Nanotechnology - Nanoparticles. According

Article Description

In this paper, the chitosan-functionalized ionic liquid is modified with superparamagnetic iron oxide nanoparticles to form a novel and reusable catalyst (SPION@CS-IL), which was carried out using an ultrasonic promoted approach. Transmission electron microscopy (TEM), vibrating-sample magnetometer (VSM), energy-dispersive X-ray spectroscopy (EDX), Fourier transform infrared spectroscopy (FT-IR), X-ray powder diffraction (XRD), energy-dispersive X-ray spectroscopy (EDX), and thermogravimetric analysis (TGA) are some of the techniques that are used to fully characterize SPION@CS-IL. The created nanoparticles were discovered to be a reusable heterogeneous superparamagnetic catalyst for the environmentally friendly one-pot synthesis of pyrido[2,3-d]pyrimidine derivatives using a simple three-component reaction approach involving thiobarbituric acid, 4-hydroxy coumarin, and various aromatic aldehydes. The method is studied by performing the reaction under ultrasonic irradiation, while the approach is a “green” method, it uses water as the solvent. The isolated yields of the synthesized products are very advantageous. The catalyst has outstanding reusability and is easily removed from the products via filtration (5 runs). Short reaction times, low catalyst loadings, the nanocatalyst’s capacity to be recycled five times, and the absence of harmful chemical reagents are all significant benefits of this environmentally benign process.

Bibliographic Details

Mohammad Hosein Sayahi; Farokh Bazrafkan; Asma Sepahdar; Farzaneh Dehghani; Mohammad Mahdavi; Saeed Bahadorikhalili

MDPI AG

Chemical Engineering; Environmental Science; Chemistry

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