cyclopropane has been researched along with methane in 25 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 2 (8.00) | 18.7374 |
1990's | 1 (4.00) | 18.2507 |
2000's | 9 (36.00) | 29.6817 |
2010's | 12 (48.00) | 24.3611 |
2020's | 1 (4.00) | 2.80 |
Authors | Studies |
---|---|
Liepinsh, E; Marion, D; Otting, G; Sodano, P; Tassin, S; Vovelle, F | 1 |
HEILBRONN, E | 1 |
FEATHERSTONE, RM; MUEHLBAECHER, C | 1 |
Yang, X | 1 |
Chan, FY; Che, CM; Lai, TS; Ma, DL; So, PK; Wong, KY | 1 |
Haley, MM; Herges, R; Shirtcliff, LD | 1 |
Fang, R; Ke, Z; Phillips, DL; Shen, Y; Zhao, C | 1 |
Arisawa, M; Nakagawa, M; Nishida, A; Takahashi, K; Terada, Y | 1 |
Cárdenas, DJ; Castedo, L; García-Fandiño, R; Granja, JR; Gulías, M; Mascareñas, JL | 1 |
Che, CM; Choi, MK; Deng, QH; So, MH; Yu, WY; Zhou, CY | 1 |
Du, D; Li, L; Wang, Z | 1 |
Komeyama, K; Miyagi, M; Saigo, N; Takaki, K | 1 |
Cid, MM; Lahoz, IR; López, CS; Navarro-Vázquez, A | 1 |
Li, EY; Marzari, N; Poilvert, N | 1 |
Chi, YR; Fang, X; Lv, H; Mo, J | 1 |
Wang, J; Ye, F; Zhang, Y; Zhou, L | 1 |
Biswas, A; De Sarkar, S; Studer, A; Tebben, L | 1 |
DeAngelis, A; Dmitrenko, O; Fox, JM | 1 |
Alford, JS; Davies, HM | 1 |
Arnold, FH; Brustad, EM; Coelho, PS; Kannan, A | 1 |
Narayan, AR; Sherman, DH | 1 |
Baranowska-Łączkowska, A; Łączkowski, KZ | 1 |
Ji, K; Wang, Z; Zhang, L; Zheng, Z | 1 |
Arnold, FH; Brandenberg, OF; Fasan, R | 1 |
Luu-Nguyen, QH; Ranjan, A; Sloane, JL; Wender, PA | 1 |
2 review(s) available for cyclopropane and methane
Article | Year |
---|---|
Multiple channel dynamics in the O(1D) reaction with alkanes.
Topics: Alkanes; Cyclopropanes; Ethane; Kinetics; Methane; Oxygen | 2006 |
Exploiting and engineering hemoproteins for abiological carbene and nitrene transfer reactions.
Topics: Biocatalysis; Cyclopropanes; Hemeproteins; Imines; Methane; Protein Engineering | 2017 |
23 other study(ies) available for cyclopropane and methane
Article | Year |
---|---|
Solvation study of the non-specific lipid transfer protein from wheat by intermolecular NOEs with water and small organic molecules.
Topics: Acetonitriles; Antigens, Plant; Benzene; Binding Sites; Carrier Proteins; Cyclohexanes; Cyclopropanes; Dioxanes; Ethane; Gases; Ligands; Methane; Models, Molecular; Nuclear Magnetic Resonance, Biomolecular; Plant Proteins; Solvents; Triticum; Water | 1999 |
In vitro reactivation and "ageing" of Tabuninhibited blood cholinesterases; studies with N-methyl-pyridinium-2-aldoxime methane sulphonate and N,N'-trimethylene bis (pyridinium-4-aldoxime) dibromide.
Topics: Cholinesterases; Cyclopropanes; In Vitro Techniques; Methane; Organophosphate Poisoning; Oximes; Phosphorus; Poisons; Pyridinium Compounds | 1963 |
DISCUSSION OF THE HYDRATE THEORIES OF ANESTHESIA.
Topics: Anesthesia; Anesthetics; Argon; Biochemical Phenomena; Biochemistry; Chloroform; Cyclopropanes; Ethyl Chloride; Ethylenes; Fluorides; Helium; Humans; Krypton; Methane; Methyl Chloride; Neon; Nitrous Oxide; Pharmacology; Xenon | 1963 |
Alkene cyclopropanation catalyzed by Halterman iron porphyrin: participation of organic bases as axial ligands.
Topics: Alkenes; Catalysis; Cyclopropanes; Diazonium Compounds; Hydrocarbons; Imidazoles; Iron; Kinetics; Ligands; Metalloporphyrins; Methane; Molecular Structure; Pyridines; Ruthenium Compounds; Stereoisomerism | 2006 |
CuCl-induced formation and migration of isoindazolyl carbenoids.
Topics: Azo Compounds; Computers; Copper; Cyclization; Cyclopropanes; Diynes; Hydrocarbons; Indazoles; Isomerism; Methane; Models, Molecular; Molecular Structure | 2007 |
Concurrent cyclopropanation by carbenes and carbanions? A density functional theory study on the reaction pathways.
Topics: Cyclopropanes; Halogens; Hydrocarbons; Methane; Models, Molecular; Molecular Conformation | 2007 |
Non-metathesis reactions of ruthenium carbene catalysts and their application to the synthesis of nitrogen-containing heterocycles.
Topics: Alkenes; Catalysis; Cyclization; Cyclopropanes; Free Radicals; Heterocyclic Compounds; Hydrocarbons; Hydrogenation; Indoles; Isomerism; Methane; Molecular Structure; Nitrogen; Ruthenium Compounds; Silanes | 2007 |
Palladium-catalysed [3+2] cycloaddition of alk-5-ynylidenecyclopropanes to alkynes: a mechanistic DFT study.
Topics: Alkynes; Catalysis; Cyclization; Cyclopropanes; Electrons; Methane; Methylation; Models, Molecular; Molecular Structure; Palladium; Thermodynamics | 2008 |
A non-cross-linked soluble polystyrene-supported ruthenium catalyst for carbenoid transfer reactions.
Topics: Alkenes; Catalysis; Cross-Linking Reagents; Cyclopropanes; Metal Nanoparticles; Methane; Microscopy, Electron, Transmission; Molecular Structure; Polystyrenes; Ruthenium; Solubility; Spectrum Analysis | 2008 |
N-heterocyclic carbene-catalyzed domino ring-opening/redox amidation/cyclization reactions of formylcyclopropane 1,1-diesters: direct construction of a 6-5-6 tricyclic hydropyrido[1,2-a]indole skeleton.
Topics: Amides; Catalysis; Cyclization; Cyclopropanes; Heterocyclic Compounds, 3-Ring; Indoles; Methane; Oxidation-Reduction | 2009 |
Intramolecular alkynylcyclopropanation of olefins catalyzed by Bi(OTf)3: stereoselective synthesis of 1-alkynyl-3-azabicyclo[3.1.0]hexanes.
Topics: Alkenes; Bismuth; Bridged Bicyclo Compounds, Heterocyclic; Catalysis; Crystallography, X-Ray; Cyclopropanes; Hexanes; Methane; Molecular Conformation; Stereoisomerism; Sulfhydryl Compounds | 2009 |
Experimental and computational exploration of indolizinyl carbene generation. A route to biindolizines.
Topics: Cyclization; Cyclopropanes; Indolizines; Methane; Models, Molecular; Molecular Conformation; Pyridines; Quantum Theory; Temperature | 2011 |
Switchable conductance in functionalized carbon nanotubes via reversible sidewall bond cleavage.
Topics: Benzoquinones; Cyclopropanes; Electrons; Fullerenes; Hydrolysis; Ketones; Models, Chemical; Nanotechnology; Nanotubes, Carbon; Oxidation-Reduction; Oxygen; Quantum Theory; Quinones; Thermodynamics | 2011 |
Formal Diels-Alder reactions of chalcones and formylcyclopropanes catalyzed by chiral N-heterocyclic carbenes.
Topics: Catalysis; Chalcones; Cyclohexanes; Cyclopropanes; Heterocyclic Compounds; Methane; Molecular Structure; Stereoisomerism | 2011 |
Cyclopropylmethyl palladium species from carbene migratory insertion: new routes to 1,3-butadienes.
Topics: Butadienes; Catalysis; Cyclopropanes; Iodobenzenes; Methane; Methylation; Molecular Structure; Palladium | 2012 |
Enantioselective cyclopropanation of enals by oxidative N-heterocyclic carbene catalysis.
Topics: Aldehydes; Catalysis; Cyclopropanes; Methane; Oxidation-Reduction; Stereoisomerism; Sulfur | 2012 |
Rh-catalyzed intermolecular reactions of cyclic α-diazocarbonyl compounds with selectivity over tertiary C-H bond migration.
Topics: Azo Compounds; Catalysis; Computer Simulation; Cyclopropanes; Hydrogen; Methane; Molecular Conformation; Rhodium; Stereoisomerism | 2012 |
Expanding the scope of donor/acceptor carbenes to N-phthalimido donor groups: diastereoselective synthesis of 1-cyclopropane α-amino acids.
Topics: Alkenes; Amino Acids; Catalysis; Cyclopropanes; Methane; Phthalimides; Stereoisomerism; Triazoles | 2012 |
Olefin cyclopropanation via carbene transfer catalyzed by engineered cytochrome P450 enzymes.
Topics: Alkenes; Bacillus megaterium; Catalysis; Cyclopropanes; Cytochrome P-450 Enzyme System; Methane; Models, Chemical; Protein Engineering; Stereoisomerism | 2013 |
Chemistry. Re-engineering nature's catalysts.
Topics: Alkenes; Cyclopropanes; Cytochrome P-450 Enzyme System; Methane | 2013 |
The ORP basis set designed for optical rotation calculations.
Topics: Bicyclic Monoterpenes; Bridged Bicyclo Compounds; Cyclopropanes; Epoxy Compounds; Halogenation; Methane; Methylation; Models, Chemical; Monoterpenes; Norbornanes; Optical Rotation; Quantum Theory | 2013 |
Enantioselective oxidative gold catalysis enabled by a designed chiral P,N-bidentate ligand.
Topics: Catalysis; Crystallography, X-Ray; Cyclopropanes; Gold; Ligands; Methane; Molecular Conformation; Nitrogen; Oxidation-Reduction; Phosphorus; Piperidines; Stereoisomerism | 2015 |
Trimethylene Methane Dianion Equivalent for the Asymmetric Consecutive Allylation of Aldehydes: Applications to Prins-Driven Macrocyclizations for the Synthesis of Bryostatin 1 and Analogues.
Topics: Aldehydes; Bryostatins; Methane | 2022 |