Dicationic ionic liquid grafted with silica-coated nano-Fe3O4 as a novel and efficient catalyst for the preparation of uracil-containing heterocycles
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[1] Lei Shi,et al. Magneto-responsive thermal switch for remote-controlled locomotion and heat transfer based on magnetic nanofluid , 2020 .
[2] Olga Lanaridi,et al. Ionic liquid based microemulsions: A review , 2020, Journal of Molecular Liquids.
[3] A. Zare,et al. A novel organic–inorganic hybrid material: production, characterization and catalytic performance for the reaction of arylaldehydes, dimedone and 6-amino-1,3-dimethyluracil , 2020, New Journal of Chemistry.
[4] Y. Liu,et al. Effect of Na+ MMT-ionic liquid synergy on electroactive, mechanical, dielectric and energy storage properties of transparent PVDF-based nanocomposites , 2020 .
[5] V. Srivastava,et al. Starch functionalized magnetite nanoparticles: A green, biocatalyst for one-pot multicomponent synthesis of imidazopyrimidine derivatives in aqueous medium under ultrasound irradiation , 2020 .
[6] M. Zolfigol,et al. SBA-15/PrN(CH2PO3H2)2 as a novel and efficient mesoporous solid acid catalyst with phosphorous acid tags and its application on the synthesis of new pyrimido[4,5-b]quinolones and pyrido[2,3-d]pyrimidines via anomeric based oxidation , 2020 .
[7] C. Bergmann,et al. Lanthanum-doped spinel cobalt ferrite (CoFe2O4) nanoparticles for environmental applications , 2020 .
[8] I. Kyratzis,et al. Lithium‐Ion Battery Separators for Ionic‐Liquid Electrolytes: A Review , 2020, Advanced materials.
[9] K. Rad‐Moghadam,et al. Expedient synthesis of novel antibacterial hydrazono-4-thiazolidinones under catalysis of a natural-based binary ionic liquid , 2020, Molecular Diversity.
[10] Pan Lu,et al. One-step and template-free fabrication of hollow carbon-modified Fe3O4 for catalyzing solvent-free aerobic oxidation of benzyl alcohol , 2020, Journal of Porous Materials.
[11] H. Hamidian,et al. Urazolium diacetate as a new, efficient and reusable Brønsted acid ionic liquid for the synthesis of novel derivatives of thiazolidine-4-ones , 2019, RSC advances.
[12] A. Khalafi‐Nezhad,et al. DBU-functionalized MCM-41-coated nanosized hematite (DBU-F-MCM-41-CNSH): a new magnetically separable basic nanocatalyst for the diastereoselective one-pot four-component synthesis of 2-(N-carbamoylacetamide)-substituted 2,3-dihydrothiophenes , 2019, New Journal of Chemistry.
[13] A. Khalafi‐Nezhad,et al. DBU-functionalized MCM-41-coated nanosized hematite (DBU-F-MCM-41-CNSH): A new magnetically separable basic nanocatalyst for the synthesis of some nucleoside-containing heterocycles , 2019 .
[14] A. Zare,et al. Efficient and highly selective production of 10,11-dihydrochromeno[4,3-b]chromene-6,8(7H,9H)-diones using a mesoporous silica-based nanocatalyst , 2019, Research on Chemical Intermediates.
[15] A. Detsi,et al. Synthesis of novel multi-OH functionalized ionic liquid and its application as dual catalyst-solvent for the one-pot synthesis 4H-pyrans , 2019, Journal of Molecular Liquids.
[16] Samuel R. Mendes,et al. One-pot multicomponent synthesis of 1,2,3,4-tetrasubstituted pyrroles catalyzed by [NMPH]CH3SO3 , 2019, Tetrahedron Letters.
[17] A. Zare,et al. N,N,N′,N′-Tetramethylethylene-diaminium-N,N′-disulfonic acid trifluoroacetate and pyridinium-N-sulfonic acid hydrogen sulfate as highly effective dual-functional catalysts for the preparation of N,N′-alkylidene bisamides , 2019, Zeitschrift für Naturforschung B.
[18] Bindhya K Purushothaman,et al. Magnetic assisted curcumin drug delivery using folate receptor targeted hybrid casein-calcium ferrite nanocarrier , 2019, Journal of Drug Delivery Science and Technology.
[19] M. Qomi,et al. Aspartic-acid-loaded starch-functionalized Mn–Fe–Ca ferrite magnetic nanoparticles as novel green heterogeneous nanomagnetic catalyst for solvent-free synthesis of dihydropyrimidine derivatives as potent antibacterial agents , 2019, Research on Chemical Intermediates.
[20] A. Zare,et al. Synthesis, characterization and application of nano-N,N,N′,N′-tetramethyl-N-(silica-n-propyl)-N′-sulfo-ethane-1,2-diaminium chloride as a highly efficient catalyst for the preparation of N,N′-alkylidene bisamides , 2019, Research on Chemical Intermediates.
[21] Lin Tang,et al. Core-shell nanomaterials: Applications in energy storage and conversion. , 2019, Advances in colloid and interface science.
[22] A. Ezabadi,et al. A caffeine-based ionic liquid as a novel and eco-friendly catalyst for the synthesis of 1,8-dioxo-octahydroxanthenes under solvent-free conditions , 2019, Research on Chemical Intermediates.
[23] K. D. Safa,et al. Synthesis and application of novel 1,2,3-triazolylferrocene-containing ionic liquid supported on Fe3 O4 nanocatalyst in the synthesis of new pyran-substituted Betti bases , 2019, Applied Organometallic Chemistry.
[24] R. Mohammadi,et al. Novel ferrocene substituted benzimidazolium based ionic liquid immobilized on magnetite as an efficient nano-catalyst for the synthesis of pyran derivatives , 2019, Journal of Molecular Liquids.
[25] M. H. Beyzavi,et al. Nano-2-(dimethylamino)-N-(silica-n-propyl)-N,N-dimethylethanaminium chloride as a novel basic catalyst for the efficient synthesis of pyrido[2,3-d:6,5-d′]dipyrimidines , 2019, New Journal of Chemistry.
[26] H. Naeimi,et al. Molecular Ionic Liquid Supported on Mesoporous Silica Nanoparticles-Imprinted Iron Metal: A Recyclable Heterogeneous Catalyst for One-Pot, Three-Component Synthesis of a Library of Benzodiazepines. , 2019, Current organic synthesis.
[27] A. Zare,et al. Highly effectual synthesis of 4,6-diarylpyrimidin-2(1H)-ones using N,N,N′,N′-tetramethylethylenediaminium-N,N′-disulfonic acid hydrogen sulfate as a dual-functional catalyst , 2018, Zeitschrift für Naturforschung B.
[28] A. Khalafi‐Nezhad,et al. Silica-bonded DABCO hydrogen sulfate ((SB-DABCO)HSO4): a new dual-interphase catalyst for the diversity-oriented pseudo-five-component synthesis of bis(pyrazolyl)methanes and novel 4-[bis(pyrazolyl)methane]phenylmethylene-bis(indole)s , 2018, Journal of the Iranian Chemical Society.
[29] F. Shirini,et al. Preparation and characterization of [H2-DABCO][ClO4]2 as a new member of DABCO-based ionic liquids for the synthesis of pyrimido[4,5-b]-quinoline and pyrimido[4,5-d]pyrimidine derivatives , 2018, Journal of Molecular Structure.
[30] A. Banaei,et al. A novel dicationic ionic liquid as a highly effectual and dual-functional catalyst for the synthesis of 3-methyl-4-arylmethylene-isoxazole-5(4H)-ones , 2018, Research on Chemical Intermediates.
[31] Alula Yohannes,et al. Ionic Liquid-Like Pharmaceutical Ingredients and Applications of Ionic Liquids in Medicinal Chemistry: Development, Status and Prospects. , 2018, Current medicinal chemistry.
[32] Xiaoming Ma,et al. Covalently anchored tertiary amine functionalized ionic liquid on silica coated nano-Fe3O4 as a novel, efficient and magnetically recoverable catalyst for the unsymmetrical Hantzsch reaction and Knoevenagel condensation , 2017 .
[33] M. Zolfigol,et al. Synthesis of the first nanomagnetic particles with semicarbazide-based acidic ionic liquid tag: an efficient catalyst for the synthesis of 3,3′-(arylmethylene)bis(4-hydroxycoumarin) and 1-carbamato-alkyl-2-naphthol derivatives under mild and green conditions , 2016 .
[34] M. Zolfigol,et al. The first urea‐based ionic liquid‐stabilized magnetic nanoparticles: an efficient catalyst for the synthesis of bis(indolyl)methanes and pyrano[2,3‐d]pyrimidinone derivatives , 2016 .
[35] F. Shirini,et al. 1,3-Disulfonic acid imidazolium hydrogen sulfate: a reusable and efficient ionic liquid for the one-pot multi-component synthesis of pyrimido[4,5-b]quinoline derivatives , 2015 .
[36] J. Abolhasani,et al. Fe3O4 nano-particles supported on cellulose as an efficient catalyst for the synthesis of pyrimido[4,5-b]quinolines in water , 2015, Monatshefte für Chemie - Chemical Monthly.
[37] F. Nemati,et al. Nano-Fe3O4 encapsulated-silica particles bearing sulfonic acid groups as a magnetically separable catalyst for green and efficient synthesis of functionalized pyrimido[4,5-b]quinolines and indeno fused pyrido[2,3-d]pyrimidines in water , 2013 .
[38] J. Khurana,et al. Aqua mediated indium(III) chloride catalyzed synthesis of fused pyrimidines and pyrazoles , 2012 .
[39] M. Singh,et al. An efficient one-pot three-component synthesis of functionalized pyrimido[4,5-b]quinolines and indeno fused pyrido[2,3-d]pyrimidines in water , 2012 .
[40] Jun Luo,et al. A magnetic nanoparticle supported dual acidic ionic liquid: a “quasi-homogeneous” catalyst for the one-pot synthesis of benzoxanthenes , 2012 .
[41] S. Alqasoumi,et al. Novel quinolines and pyrimido[4,5-b]quinolines bearing biologically active sulfonamide moiety as a new class of antitumor agents. , 2010, European journal of medicinal chemistry.
[42] H. Hafez,et al. New acyclic nucleosides analogues as potential analgesic, anti-inflammatory, anti-oxidant and anti-microbial derived from pyrimido[4,5-b]quinolines. , 2009, European journal of medicinal chemistry.
[43] D. Smee,et al. A heterocyclic molecule with significant activity against dengue virus. , 2009, Bioorganic & medicinal chemistry letters.
[44] C. Theoduloz,et al. Studies on quinones. Part 44: Novel angucyclinone N-heterocyclic analogues endowed with antitumoral activity. , 2008, Bioorganic & medicinal chemistry.
[45] Rupesh Kumar,et al. Photocyclisations of some 3‐alkoxy‐2‐thienylchromones , 2008 .
[46] A. Drabczyńska,et al. Phenylethyl-substituted pyrimido[2,1-f]purinediones and related compounds: structure-activity relationships as adenosine A(1) and A(2A) receptor ligands. , 2007, Bioorganic & medicinal chemistry.
[47] Jianhua Hu,et al. Investigation of formation of silica-coated magnetite nanoparticles via sol–gel approach , 2005 .
[48] C. Tzeng,et al. Synthesis and Cytotoxicity Evaluation of Certainα-Methylidene-γ-butyrolactones Bearing Coumarin, Flavone, Xanthone, Carbazole, and Dibenzofuran Moieties , 2000 .
[49] Yang,et al. Magnetite Nanoparticles Prepared by Precipitation from Partially Reduced Ferric Chloride Aqueous Solutions. , 1999, Journal of colloid and interface science.
[50] S. Queener,et al. Synthesis and antifolate activity of 2,4-diamino-5,6,7,8-tetrahydropyrido[4,3-d]pyrimidine analogues of trimetrexate and piritrexim , 1995 .
[51] V. Badiger,et al. Synthesis and antimicrobial and anti-inflammatory activities of substituted 2-mercapto-3-(N-aryl)pyrimido[5,4-c]cinnolin-4-(3H)-ones. , 1992, Journal of pharmaceutical sciences.
[52] P. F. Moore,et al. Development of ethyl 3,4-dihydro-4-oxopyrimido[4,5-b]quinoline-2-carboxylate, a new prototype with oral antiallergy activity. , 1979, Journal of medicinal chemistry.