107455-62-9Relevant academic research and scientific papers
Unexpected multicomponent reaction of 2/4-methoxyarylaldehydes with arylhydroxylamines and maleic anhydride: a novel synthesis of unsymmetrical diarylamines
Sridharan,Karthikeyan,Muthusubramanian
, p. 4221 - 4223 (2006)
Unsymmetrical diarylamines have been synthesized by a novel, unexpected multicomponent reaction between methoxyarylaldehydes, N-arylhydroxylamine and maleic anhydride. A possible mechanism for the formation of the product is proposed. The reaction was also carried out under microwave irradiation.
Immobilization of nickel ions onto the magnetic nanocomposite based on cross-linked melamine groups: Effective heterogeneous catalyst for N-Arylation of Arylboronic acids
Pourjavadi, Ali,Keshavarzi, Nahid,Moghaddam, Firouz Matloubi,Hosseini, Seyed Hassan
, (2018)
A new magnetic heterogeneous catalyst was synthesized by immobilization of nickel ions onto a cross-linked polymeric nanocomposite composed of cyanuric chloride, ethylenediamine and functionalized magnetic nanoparticles. The resulting nitrogen rich support was capable of adsorbing large amounts of nickel ions (1.20 mmol g?1). The synthesized catalyst was characterized using AAS, TEM, FT-IR, EDX, TGA, SEM, BET and XRD techniques. The performance of the prepared catalyst was investigated in the C-N coupling of arylamines with aryl boronic acids. The reaction was carried out under a mild condition and good to moderate to good yields of products was obtained using only 5.0 mol% of the catalyst. The catalyst was easily recovered and reused for at least 7 times without any significant loss of its activity.
A highly active palladium catalyst system for the arylation of anilines
Sadighi, Joseph P.,Harris, Michele C.,Buchwald, Stephen L.
, p. 5327 - 5330 (1998)
The chelating ligand bis[2-(diphenylphosphino)phenyl] ether (DPEphos), in combination with palladium acetate, forms a highly active catalyst system for the coupling of anilines with aryl bromides. The bisphosphine is easily prepared in large quantity and
A diaminochlorophosphine for palladium-catalyzed arylations of amines and ketones
Ackermann, Lutz,Spatz, Julia H.,Gschrei, Christian J.,Born, Robert,Althammer, Andreas
, p. 7627 - 7630 (2006)
(Chemical Equation Presented) Sterically hindered substituents on a secondary chlorophosphine 1 prevent formation of a diaminooxophosphine, and thereby allow for highly efficient arylation reactions of amines and α-C-H acidic ketones with (hetero)aryl chlorides.
The First Rapid Palladium-Catalyzed Aminations of (Azahetero)aryl Chlorides under Temperature-Controlled Microwave Heating
Maes, Bert U. W.,Loones, Kristof T. J.,Lemière, Guy L. F.,Dommisse, Roger A.
, p. 1822 - 1825 (2003)
Fast palladium-catalyzed animations of activated and unactivated azaheteroaryl chlorides as well as unactivated aryl chlorides have been achieved using temperature-controlled microwave heating. Good yields (75-91%) were obtained in a reaction time of only 10 minutes.
The solid copper-mediated C-N cross-coupling of phenylboronic acids under continuous flow conditions
Bao, Jennifer,Tranmer, Geoffrey K.
, p. 654 - 657 (2016)
We have developed two general methods for the C-N cross-coupling of phenylboronic acids with amines using solid copper flow reactors, in combination with an oxidant. We have developed one method for a C-N arylation reaction which employs a solid copper coil reactor, in combination with tert-butyl peroxybenzoate, to give products in moderate isolated yields. We have also developed a general method for the C-N cross coupling of phenylboronic acids using a column packed with solid copper powder, in combination with acetic acid and TEMPO, to give products in isolated yields in excess of 75+%. We have also applied our general copper powder method to generate a library of products which highlights the utility of solid copper flow reactors for C-N cross coupling reactions, generating 16 examples in good yields. Mechanistic implications and future directions are also discussed.
Cu(I)–N-heterocyclic carbene-catalyzed base free C–N bond formation of arylboronic acids with amines and azoles
Zhang, Maoyuan,Xu, Zengbing,Shi, Dabin
, (2020/12/25)
A new N-heterocyclic carbene (NHC) precursor of imidazolium chloride and its corresponding Cu(I)–NHC complex 1 was synthesized. The complex 1 was found to be a highly effective catalyst for Chan-Evans-Lam coupling of arylboronic acid with amines and azoles (including imidazole, pyrazole and triazole), without addition of base at room temperature. Various substituents on three substrates can be tolerated, giving the desired coupling products in good to excellent yields (62–94%). The method is practical and offers an alternative to the corresponding copper-catalyzed Chan-Evans-Lam process for the construction of C–N bonds.
Synthesis and characterization of new square planar heteroleptic cationic complexes [Ni(ii) β-oxodithioester-dppe]+; Their use as a catalyst for Chan-Lam coupling
Kumari, Kavita,Kumar, Saurabh,Singh, Krishna Nand,Drew, Michael G. B.,Singh, Nanhai
, p. 12143 - 12153 (2020/07/30)
Novel heteroleptic [Ni(ii) β-oxodithioester-dppe]+PF6- complexes (β-oxodithioester = methyl-3-hydroxy-3-benzyl-2-propenedithioate L1 1, methyl-3-hydroxy-3-(p-methoxyphenyl)-2-propenedithioate L2 2, methyl-3-hydroxy-3-(naphthyl)-2-propenedithioate L3 3, methyl-3-hydroxy-3-(p-chlorophenyl)-2-propenedithioate L4 4, methyl-3-hydroxy-3-(p-bromophenyl)-2-propenedithioate L5 5 and methyl-3-hydroxy-3-(p-cyanophenyl)-2-propenedithioate L6 6) have been synthesized and characterized by elemental (C, H, N) analysis, ESI-MS, IR, UV-visible, 1H, 13C{1H}, 31P{1H} and 19F{1H} NMR spectroscopy. The distorted square planar structures of the isomorphous cationic complexes 2, 3, 4 and 5 have been determined by X-ray crystallography. The catalytic activities of 1-6 were investigated for the Chan-Lam coupling reaction involving arylboronic acids and amines to afford N-arylated products in good to excellent yields under mild conditions with 1 mol% catalyst loading. This catalytic protocol offers significant functional group tolerance, and is endowed with a broad substrate scope. This journal is
Well-Designed N-Heterocyclic Carbene Ligands for Palladium-Catalyzed Denitrative C-N Coupling of Nitroarenes with Amines
Chen, Kai,Chen, Wanzhi,Chen, Wei,Liu, Miaochang,Wu, Huayue
, p. 8110 - 8115 (2019/08/26)
The C-N bond formation is one of the fundamental reactions in organic chemistry, because of the widespread presence of amine moieties in pharmaceuticals and biologically active compounds. Palladium-catalyzed C-N coupling of haloarenes represents one of the most efficient approaches to aromatic amines. Nitroarenes are ideal alternative electrophilic coupling partners, since they are inexpensive and readily available. The denitration and cross-coupling using nitroarenes as the electrophilic partners is challenging, because of the low reactivity of the Ar-NO2 bond toward oxidative addition. We report here the C-N coupling of nitroarenes and amines using palladium/5-(2,4,6-triisopropylphenyl)imidazolylidene[1,5-a]pyridines as the catalyst. The ligands are readily available from commercial chemicals. The reaction shows broad substrate scope and functional group tolerance. The method is applicable to both aromatic and aliphatic amines, and many secondary and tertiary aromatic amines bearing various functional groups were obtained in high yields.
Method for catalyzing nitro-arene and amine compound to be synthesized into aromatic amine compounds through palladium/imidazolium salt
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Paragraph 0051-0055, (2019/10/01)
The invention discloses a method for catalyzing nitro-arene and an amine compound to be synthesized into aromatic amine through palladium/imidazolium salt. The method comprises the steps that in an organic solvent, the palladium/imidazolium salt is taken as a catalyst, the nitro-arene and the amine compound are subjected to a coupling reaction under the function of alkali, and then the aromatic amine compounds are obtained through aftertreatment. The method is simple in ligand synthesis, storage is facilitated, the price is low, the use quantity of ligands is low, the yield of the product is high, and the substrates have high applicability and are suitable for preparing diarylamine and N-alkylated arylamine. The method can be used for synthesizing a series of aromatic amine compounds, andthe aromatic amine compounds have high application value in the fields of pesticides, medicines, materials and the like.
