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Solvent-free mechanochemical green synthesis of Schiff bases of tranexamic acid and study of their urease inhibitory and antioxidant activities
Solvent-free mechanochemical green synthesis of Schiff bases of tranexamic acid and study of their urease inhibitory and antioxidant activities

Abid Zulfiqar; Dildar Ahmed

Volume 6, Issue 1 , January 2022, , Pages 40-47

http://dx.doi.org/10.22034/ajgc.2022.1.4

Abstract
  Three Schiff bases of tranexamic acid were successfully synthesized by a mechanochemical green method, which is 4-{(5-bromo-2- hydroxybenzylidene)amino]methyl}cyclohexanecarboxylic ...  Read More
A facile synthesis of benzimidazole derivatives over zinc sulfide nanoparticles as heterogeneous catalyst
A facile synthesis of benzimidazole derivatives over zinc sulfide nanoparticles as heterogeneous catalyst

Fatemeh Hakimi; Marzihe Dehghan Niri; Sayed Hossein Banitaba; Elham Golrasan

Volume 4, Issue 3 , July 2020, , Pages 239-248

http://dx.doi.org/10.22034/AJGC/2020.3.1

Abstract
  An efficient and eco-friendly method for the synthesis of benzimidazole derivatives through the one-pot cyclocondensation of the substituted aldehydes with o-phenylenediamines over ...  Read More
A new application of nickel nanoparticles as a heterogeneous catalyst for synthesis of 1-amidoalkyl-2-naphthols according to green chemistry principles
A new application of nickel nanoparticles as a heterogeneous catalyst for synthesis of 1-amidoalkyl-2-naphthols according to green chemistry principles

Fatemeh Hakimi; Fatemeh Sadat Oreyzi; Fatemeh Bani Fatemeh; Elham Golrasan

Volume 4, Issue 2 , April 2020, , Pages 134-141

http://dx.doi.org/10.22034/AJGC/2020.2.1

Abstract
  1-amidoalkyl-2-naphthols were prepared via one-pot multi-component reaction of 2-naphthol, aldehydes, and amides in the presence of nickel nanoparticles as a solid phase acidic catalyst, ...  Read More
Polyethylene glycol-bis (N-methylimidazolium) dihydroxide as an efficient and recyclable basic phase-transfer catalyst for the synthesis of 4H-pyran derivatives in aqueous media
Polyethylene glycol-bis (N-methylimidazolium) dihydroxide as an efficient and recyclable basic phase-transfer catalyst for the synthesis of 4H-pyran derivatives in aqueous media

Mehdi Fallah-Mehrjardi; Mojgan Foroughi; Sayed Hossein Banitaba

Volume 4, Issue 1 , January 2020, , Pages 75-86

http://dx.doi.org/10.22034/AJGC/2020.1.6

Abstract
  Polyethylene glycol-bis (N-methylimidazolium) dihydroxide, [PEG(mim)2][OH]2, was prepared from the reaction of polyethylene glycol-bis (N-methylimidazolium) dibromide and sodium hydroxide ...  Read More
Preparation and characterization of polyethylene glycol-bis(N-methylimidazolium) dihydroxide as a basic phase-transfer catalyst and its application in Knoevenagel condensation under aqueous media
Preparation and characterization of polyethylene glycol-bis(N-methylimidazolium) dihydroxide as a basic phase-transfer catalyst and its application in Knoevenagel condensation under aqueous media

Fariba Poyafar; Mehdi Fallah-Mehrjardi; Sayed Hossein Banitaba

Volume 2, Issue 2 , April 2018, , Pages 96-106

http://dx.doi.org/10.22631/ajgc.2017.109665.1043

Abstract
  A basic phase-transfer catalyst ([PEG(mim)2][OH]2) was prepared from the reaction of polyethylene glycol-bis(N-methylimidazolium) dibromide and sodium hydroxide dissolved in water at ...  Read More
Synthesis of dihydropyridines and quinoxaline derivatives using 1-methyl-3-(2-(sulfooxy)ethyl)-1H-imidazol-3-ium chloride as a new, reusable and efficient Bronsted acidic ionic liquid catalyst
Synthesis of dihydropyridines and quinoxaline derivatives using 1-methyl-3-(2-(sulfooxy)ethyl)-1H-imidazol-3-ium chloride as a new, reusable and efficient Bronsted acidic ionic liquid catalyst

Sami Sajjadifar; Sarvin Mohammadi-Aghdam

Volume 1, Issue 1 , July 2017, , Pages 1-15

http://dx.doi.org/10.22631/ajgc.2017.46496

Abstract
  In this work, the efficiency, generality and applicability of new silica supported Brønsted acidic ionic liquid (BAIL) 1-methyl-3-(2-(sulfooxy)ethyl)-1H-imidazol-3-ium chloride ...  Read More