One-pot green synthesis and cytotoxicity of new α-aminophosphonates
暂无分享,去创建一个
N. B. Reddy | C. S. Reddy | G. Sravya | K. M. K. Reddy | K. Peddanna | S. Sadik | Zyryanov Grigory V | Nagaripati Saichaithanya
[1] Da‐Zhen Xu,et al. A Simple and Green Procedure for the One-Pot Synthesis of α-Aminophosphonates with Quaternary Ammonium Salts as Efficient and Recyclable Reaction Media , 2015 .
[2] H. Lv,et al. A Novel Asymmetric Synthesis of (+)-Deoxytylophorinine , 2015, Synthesis.
[3] P. V. G. Reddy,et al. Phosphomolybdic acid promoted Kabachnik–Fields reaction: an efficient one-pot synthesis of α-aminophosphonates from 2-cyclopropylpyrimidine-4-carbaldehyde , 2014 .
[4] N. B. Reddy,et al. The Synthesis and Bioactivity of Dimethyl (2,3- Dihydrobenzo[b][1,4]Dioxin-6-Yl)(Aryl Amino)Methylphosphonates , 2014 .
[5] M. S. Khan,et al. Diversity-oriented synthesis of α-aminophosphonates: a new class of potential anticancer agents. , 2013, European journal of medicinal chemistry.
[6] N. B. Reddy,et al. Synthesis and Bioassay of Ethyl-2- (2-((Diethoxyphosphoryl) (Aryl) Methylamino)Thiazol-4-Yl)-2-(Methoxyimino)Acetates , 2013 .
[7] G. Keglevich,et al. The Kabachnik–Fields Reaction: Mechanism and Synthetic Use , 2012, Molecules.
[8] Naomi Ueno,et al. Novel acid-type cyclooxygenase-2 inhibitors: Design, synthesis, and structure-activity relationship for anti-inflammatory drug. , 2012, European journal of medicinal chemistry.
[9] Limin Wang,et al. A facile synthesis of α-aminophosphonates catalyzed by ytterbium perfluorooctanoate under solvent-free conditions , 2011 .
[10] Zhan‐Hui Zhang,et al. NbCl5: an efficient catalyst for one‐pot synthesis of α‐aminophosphonates under solvent‐free conditions , 2011 .
[11] Jin-Ning Dang,et al. Silica Sulfuric Acid as a Recyclable Catalyst for a One-Pot Synthesis of α-Aminophosphonates in Solvent-Free Conditions , 2009 .
[12] Feng Xu,et al. PPh3-catalysed One-Pot Three-Component Syntheses of α-aminophosphonates under Solvent-Free Conditions , 2009 .
[13] G. Keglevich,et al. Eco-Friendly Accomplishment of the Extended Kabachnik – Fields Reaction; a Solvent- and Catalyst-Free Microwave-Assisted Synthesis of α- Aminophosphonates and α-Aminophosphine Oxides , 2008 .
[14] A. Heydari,et al. Organocatalytic synthesis of a-hydroxy and a-aminophosphonates , 2008 .
[15] P. Wadgaonkar,et al. Sulfamic acid: An efficient and cost-effective solid acid catalyst for the synthesis of α-aminophosphonates at ambient temperature , 2008 .
[16] B. Kaboudin,et al. Calcium Chloride as an Efficient Lewis Base Catalyst for the One-pot Synthesis of α-Aminophosphonic Esters , 2008 .
[17] B. Kaboudin,et al. β-Cyclodextrin as an efficient catalyst for the one-pot synthesis of 1-aminophosphonic esters in water , 2007 .
[18] D. O'Hagan,et al. Fluorine in medicinal chemistry: A review of anti-cancer agents , 2006 .
[19] A. Chakraborty,et al. In(OTf)3 catalysed simple one-pot synthesis of α-amino phosphonates , 2004 .
[20] P. Wieczorek,et al. Herbicidal activity of phosphonic, phosphinic, and phosphonous acid analogues of phenylglycine and phenylalanine , 1995, Journal of Plant Growth Regulation.
[21] Fan Xu,et al. One‐Pot Synthesis of α‐Amino Phosphonates Using Samarium Diiodide as a Catalyst Precursor , 2003 .
[22] S. Chandrasekhar,et al. Three component coupling catalyzed by TaCl5–SiO2: synthesis of α-amino phosphonates , 2001 .
[23] B. Ranu,et al. General Procedure for the Synthesis of α-Amino Phosphonates from Aldehydes and Ketones Using Indium(III) Chloride as a Catalyst , 1999 .
[24] R. Steketee,et al. Malaria treatment and prevention in pregnancy: indications for use and adverse events associated with use of chloroquine or mefloquine. , 1996, The American journal of tropical medicine and hygiene.
[25] D. Wong,et al. Prozac (fluoxetine, Lilly 110140), the first selective serotonin uptake inhibitor and an antidepressant drug: twenty years since its first publication. , 1995, Life sciences.
[26] B. Stowasser,et al. New hybrid transition state analog inhibitors of HIV protease with peripheric C2-symmetry , 1992 .
[27] S. Laschat,et al. Carbohydrates as Chiral Templates: Stereoselective Synthesis of (R)- and (S)-α-Aminophosphonic Acid Derivatives , 1992 .
[28] L. Maier,et al. ORGANIC PHOSPHORUS COMPOUNDS 96.1 RESOLUTION OF 1-AMINO-2-(4-FLUOROPHENYL)ETHYLPHOSPHONIC ACID AS WELL AS SOME DI- AND TRIPEPTIDES , 1991 .
[29] L. Maier. ORGANIC PHOSPHORUS COMPOUNDS 881 SULFONIC- AND SULFINIC ACID ANALOGUES OF GLYPHOSATE , 1990 .
[30] C. Hassall,et al. Synthesis and structure-activity relationships of antibacterial phosphonopeptides incorporating (1-aminoethyl)phosphonic acid and (aminomethyl)phosphonic acid. , 1986, Journal of medicinal chemistry.