A facile one-pot synthesis of 2-(prop-2-yn-1-ylidene)-2,3-dihydro-1,4-thiazepines
暂无分享,去创建一个
[1] E. Korkmaz,et al. Synthesis of 3-[(4-nitrophenyl)thio]-substituted 4-methylene-1-pyrrolines from N-propargylic β-enaminones. , 2020, The Journal of organic chemistry.
[2] Metin Zora,et al. A New Strategy for the Synthesis of 4‐Propargyl‐Substituted 1 H ‐Pyrroles from N ‐(5‐phenyl‐2,4‐pentadiynyl) β‐Enaminones , 2019, ChemistrySelect.
[3] Metin Zora,et al. One-Pot Synthesis of Spiro-2H-pyrroles from N-Propargylic β-Enaminones , 2019, Synlett.
[4] Nicolas K. Shinada,et al. Halogens in Protein-Ligand Binding Mechanism: A Structural Perspective. , 2019, Journal of medicinal chemistry.
[5] Metin Zora,et al. Synthesis of 1-Azaspiro[4.5]deca-1,3-dienes from N-Propargylic β-Enaminones in Basic Medium , 2019, Synthesis.
[6] Metin Zora,et al. A new strategy for the synthesis of pyridines from N-propargylic β-enaminothiones. , 2019, Organic & biomolecular chemistry.
[7] Metin Zora,et al. Synthesis of 1,4-Thiazepines. , 2018, The Journal of organic chemistry.
[8] Metin Zora,et al. One-pot synthesis of iodine-substituted 1,4-oxazepines , 2018 .
[9] Metin Zora,et al. Zinc Chloride Mediated Synthesis of 1,4‐Oxazepines from N‐Propargylic β‐Enaminones , 2017 .
[10] Qichun Zhang,et al. Base-catalyzed cascade synthesis of 2,3-dihydrofuro[2,3-b]pyridines and 2,3-dihydro-1H-pyrrolo[2,3-b]pyridines from N-propargylic β-enaminones. , 2017, Chemical communications.
[11] Metin Zora,et al. One-pot synthesis of 2-ferrocenyl-substituted pyridines , 2016 .
[12] L. Legnani,et al. Computational Mechanistic Study of Thionation of Carbonyl Compounds with Lawesson's Reagent. , 2016, The Journal of organic chemistry.
[13] M. Esrafili,et al. New page to access pyridine derivatives: synthesis from N-propargylamines , 2016 .
[14] J. Wang,et al. Recent advances in transition-metal-catalyzed synthesis of conjugated enynes. , 2016, Organic & biomolecular chemistry.
[15] Diansong Zhou,et al. Population pharmacokinetic modeling of quetiapine after administration of seroquel and seroquel XR formulations to Western and Chinese patients with schizophrenia, schizoaffective disorder, or bipolar disorder , 2015, Journal of clinical pharmacology.
[16] B. Sridhar,et al. Gold-Catalyzed Intramolecular Cyclization of N-Propargylic β-Enaminones for the Synthesis of 1,4-Oxazepine Derivatives. , 2015, The Journal of organic chemistry.
[17] Xiuling Cui,et al. Base-Promoted N-Pyridylation of Heteroarenes Using N-Propargyl Enaminones as Equivalents of Pyridine Scaffolds. , 2015, Organic letters.
[18] Metin Zora,et al. Facile synthesis of iodopyridines from N-propargylic β-enaminones via iodine-mediated electrophilic cyclization , 2015 .
[19] J. Sakayaroj,et al. γ-Butyrolactone, cytochalasin, cyclic carbonate, eutypinic acid, and phenalenone derivatives from the soil fungus Aspergillus sp. PSU-RSPG185. , 2014, Journal of natural products.
[20] Lucija Peterlin Mašič,et al. Bioactivation potential of thiophene-containing drugs. , 2014, Chemical research in toxicology.
[21] S. Karthikeyan,et al. An efficient l-proline catalyzed synthesis of pyrazolo[3,4-e][1,4]thiazepine derivatives and their in vitro cytotoxicity studies , 2014, Medicinal Chemistry Research.
[22] N. Mangina,et al. Gold-catalysed cyclisation of N-propargylic β-enaminones to form 3-methylene-1-pyrroline derivatives. , 2014, Organic & biomolecular chemistry.
[23] K. Sharma,et al. Synthesis and antimicrobial activity of 2,4-diaryl-2,3-dihydrobenzo[b][1,4]thiazepines , 2013, Research on Chemical Intermediates.
[24] Sunil Kumar,et al. Synthesis and biological evaluation of some new substituted benzoxazepine and benzothiazepine as antipsychotic as well as anticonvulsant agents , 2012 .
[25] Xu-dong Cao,et al. Design and diversity-oriented synthesis of novel 1,4-thiazepan-3-ones fused with bioactive heterocyclic skeletons and evaluation of their antioxidant and cytotoxic activities. , 2012, Bioorganic & medicinal chemistry letters.
[26] K. El-bayouki. Synthesis, reactions, and biological activity of 1,4-thiazepines and their fused aryl and heteroaryl derivatives: a review , 2011 .
[27] N. Garg,et al. Synthesis and evaluation of some new substituted benzothiazepine and benzoxazepine derivatives as anticonvulsant agents. , 2010, European journal of medicinal chemistry.
[28] Marcelo Zaldini Hernandes,et al. Halogen atoms in the modern medicinal chemistry: hints for the drug design. , 2010, Current drug targets.
[29] A. Saito,et al. Synthesis of pyrroles by gold(I)-catalyzed amino-claisen rearrangement of N-propargyl enaminone derivatives. , 2010, Organic letters.
[30] Yuan Li,et al. Synthesis and biological evaluation of a novel series of 1,5-benzothiazepine derivatives as potential antimicrobial agents. , 2009, European journal of medicinal chemistry.
[31] F. Piu,et al. Synthesis and evaluation of dibenzothiazepines: a novel class of selective cannabinoid-1 receptor inverse agonists. , 2009, Journal of medicinal chemistry.
[32] Anamik Shah,et al. 1,5-Benzothiazepine, a versatile pharmacophore: a review. , 2008, European journal of medicinal chemistry.
[33] G. Fabrizi,et al. N-propargylic beta-enaminones: common intermediates for the synthesis of polysubstituted pyrroles and pyridines. , 2008, Organic letters.
[34] O. Mert,et al. Use of Lawesson's reagent in organic syntheses. , 2007, Chemical reviews.
[35] J. Y. Kim,et al. Design, synthesis, and biological testing of thiosalicylamides as a novel class of calcium channel blockers. , 2005, Bioorganic & medicinal chemistry.
[36] E. Novellino,et al. Pyrrolo[1,5]benzoxa(thia)zepines as a new class of potent apoptotic agents. Biological studies and identification of an intracellular location of their drug target. , 2005, Journal of medicinal chemistry.
[37] G. Keating,et al. Quetiapine: a review of its use in acute mania and depression associated with bipolar disorder. , 2005, Drugs.
[38] O. Eradiri,et al. Pharmacokinetics of a Novel Diltiazem HCl Extended‐Release Tablet Formulation for Evening Administration , 2003, Journal of clinical pharmacology.
[39] S. Iverson,et al. Identification of a reactive metabolite of terbinafine: insights into terbinafine-induced hepatotoxicity. , 2001, Chemical research in toxicology.
[40] F. M. McLaren,et al. Behavioral approach to nondyskinetic dopamine antagonists: identification of seroquel. , 2001, Journal of medicinal chemistry.
[41] A. Levai,. Synthesis and Chemical Transformations of 1,5-Benzothiazepines , 2000 .
[42] S. Horinouchi,et al. Oxamflatin is a novel antitumor compound that inhibits mammalian histone deacetylase , 1999, Oncogene.
[43] N. Shear,et al. Terbinafine: an update. , 1997, Journal of the American Academy of Dermatology.
[44] M. Nahata,et al. Oral Terbinafine: A New Antifungal Agent , 1997, The Annals of pharmacotherapy.
[45] R. Gitto,et al. 5H-[1,2,4]Oxadiazolo[5,4-d][1,5]benzothiazepines as anticonvulsant agents in DBA/2 mice , 1995 .
[46] K. Goa,et al. Diltiazem. A reappraisal of its pharmacological properties and therapeutic use. , 1990, Drugs.
[47] Y. Inada,et al. (R)-3-[(S)-1-carboxy-5-(4-piperidyl)pentyl]amino-4-oxo-2,3,4,5- tetrahydro-1,5-benzothiazepine-5-acetic acid (CV-5975): a new potent and long-lasting inhibitor of angiotensin converting enzyme. , 1988, Japanese journal of pharmacology.
[48] M. Kori,et al. An improved synthesis of the new angiotensin converting enzyme inhibitor CV-5975 via a chemoenzymatic process. , 1987, Chemical & pharmaceutical bulletin.
[49] M. Kori,et al. Synthesis and angiotensin converting enzyme inhibitory activity of 1,5-benzothiazepine and 1,5-benzoxazepine derivatives. I. , 1986, Chemical & pharmaceutical bulletin.