19564-08-0Relevant academic research and scientific papers
Fe3O4@zeolite-SO3H as a magnetically bifunctional and retrievable nanocatalyst for green synthesis of perimidines
Kalhor, Mehdi,Zarnegar, Zohre,Janghorban, Fatemeh,Mirshokraei, S. Ahmad
, p. 821 - 836 (2019/11/11)
In the current study, a new catalytic system based on Fe3O4 nanoparticles immobilized on zeolite-SO3H (Fe3O4@zeolite-SO3H) is introduced. In the first stage, zeolite@SO3H was syn
A novel catalyst-free mechanochemical protocol for the synthesis of 2,3-dihydro-1H-perimidines
Harry, Nissy Ann,Radhika, Sankaran,Neetha, Mohan,Anilkumar, Gopinathan
, p. 2037 - 2043 (2020/01/21)
A rapid, efficient, and green grinding assisted method for the synthesis of 2,3-dihydro-1H-perimidines has been developed. 1,8-Diaminonaphthalene and aldehydes were ground using mortar and pestle for 5 minutes affording the product in moderate to excellen
Fe3O4/SO3H@zeolite-Y as a novel multi-functional and magnetic nanocatalyst for clean and soft synthesis of imidazole and perimidine derivatives
Kalhor, Mehdi,Zarnegar, Zohre
, p. 19333 - 19346 (2019/07/05)
In this study, SO3H@zeolite-Y was synthesized by the reaction of chlorosulfonic acid with zeolite-NaY under solvent-free conditions, which was then supported by Fe3O4 nanoparticles to give SO3H@zeolite-Y (Fe3O4/SO3H@zeolite-Y) magnetic nanoparticles. Several techniques were used to evaluate the physical and chemical characterizations of the zeolitic nanostructures. Fe3O4-loaded sulfonated zeolite was applied as a novel multi-functional zeolite catalyst for the synthesis of imidazole and perimidine derivatives. This efficient methodology has some advantages such as good to excellent yield, high purity of products, reusability of nanocatalyst, simple reaction conditions, environmental friendliness and an economical chemical procedure from the viewpoint of green chemistry.
Synthesis of new TCH/Ni-based nanocomposite supported on SBA-15 and its catalytic application for preparation of benzimidazole and perimidine derivatives
Kalhor, Mehdi,Rezaee-Baroonaghi, Fahimeh,Dadras, Akbar,Zarnegar, Zohre
, (2019/03/21)
A stable nickel-decorated SBA-15 nanocomposite (Ni/TCH@SBA-15) was synthesized through surface modification of silica nanoparticles with 3-chloropropyltriethoxysilane (CPTES) and thiocarbohydrazide (TCH) followed by metal–ligand coordination with Ni (II). The structure of this organometallic nanocomposite was characterized by Fourier transform-infrared, field emission-scanning electron microscopy, EDAX, transmission electron microscopy, atomic absorption spectroscopy and N2 adsorption–desorption (Brunauer–Emmett–Teller) techniques. The catalytic performance of Ni/TCH@SBA-15 (NNTS-15) was determined for the synthesis of 2-aryl-substituted benzimidazoles and 2,3-dihydroperimidines. The excellent yields within shorter reaction times, simplicity of catalytic methods, non-toxicity and clean reactions, mild reaction conditions and easy work-up procedure are the important merits of these synthetic protocols. Moreover, the Ni (II) bonded to the SBA-15 surface was stable under the catalytic reaction conditions resulting in its efficient recycling and reuse.
Decoration of β-CD-ZrO on Fe3O4 magnetic nanoparticles as a magnetically, recoverable and reusable catalyst for the synthesis of 2,3-dihydro-1H-perimidines
Amrollahi, Mohammad Ali,Vahidnia, Fatemeh
, p. 7569 - 7581 (2018/09/12)
Abstract: This study focuses on covalent grafting of ZrO to β-CD to prepare an organic–inorganic hybrid material. The synthesised product was successfully linked on the surface of Fe3O4 magnetic nanoparticles and characterized by TGA
Cl-FeCl3 as an Efficient Lewis Acid Ionic Liquid for the Synthesis of Perimidine Derivatives
Bahrami, Kiumars,Saleh, Sepideh
, p. 852 - 856 (2016/05/09)
An effective synthesis of various biologically important 2,3-dihydroperimidines from reaction of aldehydes and naphthalene-1,8-diamine has been developed using [BTBA]Cl-FeCl3 as an efficient Lewis acid ionic liquid. This method is a very simple
Facile synthesis of substituted mono-, di-, tri- And tetra-2-aryl-2,3- dihydro1H-perimidines
Belmonte, Marta Martinez,Escudero-Adan, Eduardo C.,Benet-Buchholz, Jordi,Haak, Robert M.,Kleij, Arjan W.
experimental part, p. 4823 - 4831 (2010/10/03)
The efficient synthesis of a variety of substituted 2-aryl-2, 3dihydro-1H-perimidines using Zn-catalysis is reported. A series of 2,3-dihydroperimidines with various functional groups have been isolated in high yield by simple filtration from the reaction
Chain-ring-chain tautomerism in 2-aryl-substituted hexahydropyrimidines and 1H-2,3-dihydroperimidines. Does it appear?
Maloshitskaya, Olga,Sinkkonen, Jari,Ovcharenko, Vladimir V.,Zelenin, Kirill N.,Pihlaja, Kalevi
, p. 6913 - 6921 (2007/10/03)
A series of 2-aryl substituted hexahydropyrimidines and perimidines were synthesized from aromatic aldehydes and substituted 1,3-propanediamines or 1,8-naphthalenediamine. The 1H and 13C NMR spectra showed that 2-arylperimidines and
Reaction of Biologically Active &β-Nitrostyrenes with o-Phenylenediamine: A New Route to the Synthesis of 2-Substituted Benzimidazoles
Latif, N.,Mishriky, N.,Assad, F. M.,Meguid, S. Abdel
, p. 872 - 874 (2007/10/02)
β-Nitrostyrenes (1) react with o-phenylenediamine in ethanol to give exclusively 2-substituted benzimidazoles (2) regardless of the nature and position of substituents in the phenyl ring.The correspondnig 2,3-dihydroperimidines (4) are readily obtained by reacting 1,8-diaminonaphthalene with benzaldehydes.Possible routes for the formation of 2 have been discussed.The nitrostyrenes (1) have been found to be toxic to fresh water snails and phytopathogenic fungi in high dilutions.
