Page last updated: 2024-08-18

pyrroles and acetylene

pyrroles has been researched along with acetylene in 15 studies

Research

Studies (15)

TimeframeStudies, this research(%)All Research%
pre-19903 (20.00)18.7374
1990's0 (0.00)18.2507
2000's6 (40.00)29.6817
2010's5 (33.33)24.3611
2020's1 (6.67)2.80

Authors

AuthorsStudies
Crippen, GM; Ghose, AK1
Kumar, R; Lown, JW1
HOBL, R; REISCH, J; SCHULTE, KE1
ACHESON, RM1
Cohen, SM; Halper, SR1
Borisova, TN; Kulikova, LN; Soklakova, TA; Varlamov, AV; Voskressensky, LG1
Arefrad, H; Azizian, J; Karimi, AR; Mohammadi, AA; Mohammadizadeh, MR1
Sellès, P1
de Meijere, A; Larionov, OV1
Kamimura, A; Nakano, T1
Pingale, SS1
Huang, L; Jiang, H; Qi, C; Tang, X; Wu, W1
Golubev, PR; Kuznetsov, MA; Pankova, AS1
Cavaleiro, JA; Farinha, AS; Félix, V; Figueira, F; Marques, I; Sessler, J; Silva, AM; Tomé, AC; Tomé, JP1
Aydın, EB; Aydın, M; Sezgintürk, MK1

Reviews

1 review(s) available for pyrroles and acetylene

ArticleYear
REACTIONS OF ACETYLENECARBOXYLIC ACIDS AND THEIR ESTERS WITH NITROGEN-CONTAINING HETEROCYCLIC COMPOUNDS.
    Advances in heterocyclic chemistry, 1963, Volume: 11

    Topics: Acetylene; Acids; Acridines; Esters; Heterocyclic Compounds; Imidazoles; Indoles; Nitrogen; Pyridines; Pyrroles; Quinolines; Research

1963

Other Studies

14 other study(ies) available for pyrroles and acetylene

ArticleYear
Use of physicochemical parameters in distance geometry and related three-dimensional quantitative structure-activity relationships: a demonstration using Escherichia coli dihydrofolate reductase inhibitors.
    Journal of medicinal chemistry, 1985, Volume: 28, Issue:3

    Topics: Binding Sites; Escherichia coli; Folic Acid Antagonists; Models, Molecular; Protein Conformation; Structure-Activity Relationship

1985
Design and synthesis of bis 1-chloromethyl-5-hydroxy-1,2- dihydro-3H-benz[e]indole (seco-CBI)-pyrrole polyamide conjugates.
    Organic letters, 2002, May-30, Volume: 4, Issue:11

    Topics: Acetylene; Aldehydes; Animals; Antineoplastic Agents, Alkylating; Benzaldehydes; Drug Design; Drug Screening Assays, Antitumor; Humans; Indicators and Reagents; Indoles; Kinetics; Mice; Pyrroles; Tumor Cells, Cultured

2002
[On a study of acetylene-carboxylic acids. Part 13. 2-Pyrrolone formation from substituted 4-pentynamides].
    Archiv der Pharmazie und Berichte der Deutschen Pharmazeutischen Gesellschaft, 1960, Volume: 293/65

    Topics: Acetylene; Biochemical Phenomena; Carboxylic Acids; Pyrroles

1960
Synthesis, structure, and spectroscopy of phenylacetylenylene rods incorporating meso-substituted dipyrrin ligands.
    Chemistry (Weinheim an der Bergstrasse, Germany), 2003, Oct-06, Volume: 9, Issue:19

    Topics: Acetylene; Benzene Derivatives; Copper; Crystallography, X-Ray; Electrochemistry; Ferric Compounds; Ligands; Molecular Structure; Organometallic Compounds; Pyrroles; Spectrometry, Fluorescence; Spectrophotometry, Ultraviolet; Stereoisomerism

2003
Cleavage of some annulated tetrahydropyridines under the action of dimethyl acetylene dicarboxylate in protic solvents. New practical route to substituted pyrroles and indoles.
    Molecular diversity, 2003, Volume: 6, Issue:3-4

    Topics: Acetylene; Alcohols; Carboxylic Acids; Dioxanes; Indoles; Molecular Structure; Piperidines; Pyridines; Pyrroles; Solvents

2003
A novel one-pot, four component synthesis of some densely functionalized pyrroles.
    Molecular diversity, 2003, Volume: 6, Issue:3-4

    Topics: Acetates; Acetylene; Carboxylic Acids; Molecular Structure; Ninhydrin; Organophosphorus Compounds; Phosphoranes; Pyrroles; Thiocyanates

2003
Synthesis and biological evaluation of himanimide C and unnatural analogues.
    Organic letters, 2005, Feb-17, Volume: 7, Issue:4

    Topics: Acetylene; Alkynes; Basidiomycota; Boronic Acids; Cyclization; Hydroxylamine; Models, Molecular; Molecular Conformation; Pyrroles; Structure-Activity Relationship

2005
Versatile direct synthesis of oligosubstituted pyrroles by cycloaddition of alpha-metalated isocyanides to acetylenes.
    Angewandte Chemie (International ed. in English), 2005, Sep-05, Volume: 44, Issue:35

    Topics: Acetylene; Cyanides; Cyclization; Molecular Structure; Pyrroles; Temperature

2005
Use of the Diels-Alder adduct of pyrrole in organic synthesis. Formal racemic synthesis of Tamiflu.
    The Journal of organic chemistry, 2010, May-07, Volume: 75, Issue:9

    Topics: Acetylene; Antiviral Agents; Molecular Structure; Oseltamivir; Pyrroles; Stereoisomerism; Structure-Activity Relationship

2010
Molecular electrostatic potential for exploring π-conjugation: a density-functional investigation.
    Physical chemistry chemical physics : PCCP, 2011, Sep-07, Volume: 13, Issue:33

    Topics: Acetylene; Benzene; Ethylenes; Furans; Pyrroles; Quantum Theory; Static Electricity; Thiophenes

2011
An efficient synthesis of polysubstituted pyrroles via copper-catalyzed coupling of oxime acetates with dialkyl acetylenedicarboxylates under aerobic conditions.
    Chemical communications (Cambridge, England), 2013, Oct-25, Volume: 49, Issue:83

    Topics: Acetates; Acetylene; Carboxylic Acids; Catalysis; Copper; Isoquinolines; Oximes; Pyrroles

2013
Regioselective Transition-Metal-Free Synthesis of 2-(Trimethylsilylmethylene)pyrrol-3-ones by Thermal Cyclization of Acetylenic Enamines.
    The Journal of organic chemistry, 2015, May-01, Volume: 80, Issue:9

    Topics: Acetylene; Amines; Cyclization; Molecular Structure; Pyrroles; Stereoisomerism; Temperature; Trimethylsilyl Compounds

2015
Unprecedented Double aza-Michael Addition within a Sapphyrin Core.
    Chemistry (Weinheim an der Bergstrasse, Germany), 2016, Sep-26, Volume: 22, Issue:40

    Topics: Acetylene; Alkynes; Cycloaddition Reaction; Magnetic Resonance Spectroscopy; Models, Molecular; Porphyrins; Pyrroles

2016
A novel electrochemical immunosensor based on acetylene black/epoxy-substituted-polypyrrole polymer composite for the highly sensitive and selective detection of interleukin 6.
    Talanta, 2021, Jan-15, Volume: 222

    Topics: Acetylene; Antibodies, Immobilized; Biosensing Techniques; Electrochemical Techniques; Electrodes; Humans; Immunoassay; Interleukin-6; Polymers; Pyrroles; Reproducibility of Results

2021