Publications by authors named "Samaheh Sadjadi"

In this study, by innovative combining the unique characteristics of Cu-based metal-organic framework (MOF) with the versatile attributes of saccharides (i.e., heparin, Hep), a promising approach is established for active and passive targeting DDS, Cu-MOF/Hep, with a pH-controlled release profile and enhanced drug efficacy.

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Dendrimer (PAMAM) decorated halloysite nanoclay (Hal) was prepared and applied for immobilization of Pd catalytic species to develop an efficient catalyst for copper and ligand-free CC coupling reactions. The effect of dendrimer generation, Pd valance and incorporation of anthranilamide as terminal functionality of dendrimer on the catalytic activity of the hybrid catalyst was studied experimentally and theoretically. The results of DFT computational studies on the effect of Pd valence showed that Pd(0) has much higher binding energy (-44.

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ZnO nanorods have been successfully used as an efficient, economic, and reusable catalyst for the synthesis of imidazo[1,2-a]azine under ultrasonic irradiation. This procedure offers advantages in terms of higher yields, short reaction times and mild reaction conditions.

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Article Synopsis
  • CuO nanoparticles are an effective and cost-efficient catalyst for synthesizing compounds like quinoxaline, benzoxazine, and benzothiazine using ultrasonic waves.
  • The method results in higher yields and shorter reaction times compared to traditional methods.
  • It also requires mild reaction conditions and allows for the reusability of the CuO catalyst.
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Bis(indolyl)alkanes have been synthesised in excellent yields in the presence of catalytic amount of silica-supported Preyssler nano particles as green, reusable and efficient catalyst under ultra sonic irradiation.

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A new synthesis of 4(3H)-quinazolinone from the reaction of 2-amino-benzamide, and acylchlorides in the presence of catalytic amounts of silica-supported Preyssler nano particles as green, reusable and efficient catalyst under ultra sonic irradiation is reported.

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Synthesis of 3,1,5-benzoxadiazepines from the condensation of o-phenylenediamine (o-PDA) and acyl chlorides in the presence of a catalytic amount of various heteropolyacids (HPAs) is reported.

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