Synthesis of Schiff Bases from Substitute Aromatic Aldehydes and 2-(4-aminophenyl)acetonitrile Catalysed by 3,5-difluoroarylboronic Acid
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[1] Nan Zhang,et al. Syntheses, crystal structures and anticancer activities of three novel transition metal complexes with Schiff base derived from 2-acetylpyridine and l-tryptophan , 2012 .
[2] M. Drew,et al. Synthesis, crystal structure, and catecholase activity of three trinuclear heterometallic NiII2-MnII complexes derived from a salen-type Schiff base ligand , 2012 .
[3] K. Lammertsma,et al. Neutral palladium(II) complexes with P,N Schiff-base ligands : synthesis, characterization and application as Suzuki-Miyaura coupling catalysts , 2012 .
[4] Hong Liang,et al. Antioxidant activities and transition metal ion chelating studies of some hydroxyl Schiff base derivatives , 2012, Medicinal Chemistry Research.
[5] Zhiqian Guo,et al. Ultrathin platinum nanowire catalysts for direct C-N coupling of carbonyls with aromatic nitro compounds under 1 bar of hydrogen. , 2011, Chemistry.
[6] M. Hosseini‐Sarvari. Nano-tube TiO2 as a new catalyst for eco-friendly synthesis of imines in sunlight , 2011 .
[7] D. L. Bryce,et al. Postsynthetic modification of an imine-based microporous organic network , 2011 .
[8] R. I. Kureshy,et al. Heterogeneous chiral copper complexes of amino alcohol for asymmetric nitroaldol reaction. , 2010, The Journal of organic chemistry.
[9] H. W. Scheeren,et al. Synthesis of cucurbitine derivatives: facile straightforward approach to methyl 3-amino-4-aryl-1-methylpyrrolydine-3-carboxylates , 2009 .
[10] H. Sharghi,et al. Facile and efficient method for preparation of schiff bases catalyzed by P2O5/SiO2 under free solvent conditions , 2008 .
[11] M. Gopalakrishnan,et al. New environmentally-friendly solvent-free synthesis of imines using calcium oxide under microwave irradiation , 2007 .
[12] N. Demirel,et al. Synthesis of novel chiral Schiff-base ligands and their application in asymmetric nitro aldol (Henry) reaction , 2007 .
[13] H. A. Stefani,et al. Eco-friendly synthesis of imines by ultrasound irradiation , 2007 .
[14] Kwok‐yin Wong,et al. Synthetic and mechanistic studies of indium-mediated allylation of imines in ionic liquids. , 2007, The Journal of organic chemistry.
[15] H. Naeimi,et al. Mild and convenient one pot synthesis of Schiff bases in the presence of P2O5/Al2O3 as new catalyst under solvent-free conditions , 2006 .
[16] K. Ahn,et al. Synthesis of sterically controlled chiral β-amino alcohols and their application to the catalytic asymmetric sulfoxidation of sulfides , 2005 .
[17] B. Cho,et al. Direct and indirect reductive amination of aldehydes and ketones with solid acid-activated sodium borohydride under solvent-free conditions , 2005 .
[18] M. Gopalakrishnan,et al. Silica Gel Supported Sodium Hydrogen Sulfate as an Efficient and Reusable Heterogeneous Catalyst for the Synthesis of Imines in Solvent-free Conditions under Microwave Irradiation , 2005 .
[19] A. Chakraborti,et al. Magnesium perchlorate as an efficient catalyst for the synthesis of imines and phenylhydrazones , 2004 .
[20] V. C. Soares,et al. Molecular sieves in ionic liquids as an efficient and recyclable medium for the synthesis of imines , 2004 .
[21] W. Durfee,et al. Synthesis of a quinone-functionalized macrocyclic ligand and the intense fluorescence of its zinc complex. , 2004, Chemical communications.
[22] Anna C. Peatt,et al. Gallium metal mediated allylation of carbonyl compounds and imines under solvent-free conditions , 2004 .
[23] Rajender S. Varma,et al. Microwave-Assisted Facile Synthesis of Imines and Enamines using Envirocat EPZGR as a Catalyst , 1997 .
[24] R. Varma,et al. Clay catalyzed synthesis of imines and enamines under solvent-free conditions using microwave irradiation , 1997 .