methane and phenylnitrene

methane has been researched along with phenylnitrene in 16 studies

Research

Studies (16)

TimeframeStudies, this research(%)All Research%
pre-19900 (0.00)18.7374
1990's0 (0.00)18.2507
2000's1 (6.25)29.6817
2010's11 (68.75)24.3611
2020's4 (25.00)2.80

Authors

AuthorsStudies
Bednarek, P; George, L; Kvaskoff, D; Pankajakshan, S; Wentrup, C1
Bednarek, P; Kvaskoff, D; Wentrup, C1
de la Hoz, A; Fabbro, C; Fierro, JL; Herrero, MA; Meneghetti, M; Prato, M; Rubio, N; Vázquez, E1
Liu, L; Lu, B; Luo, Y; Wang, Y; Ye, L; Zhang, L1
Berry, JF1
Peng, L; Xia, Y1
Coldren, W; Eswaran, SV; Guru Row, TN; Hadad, CM; Kaur, D; Luk, HL; Platz, MS; Prabhakar, S; Raghunathan, P; Sridhar, L; Srinivas, PM1
Blakey, SB; Schafer, AG1
Arnold, FH1
Brustad, EM; Gober, JG1
Arnold, FH; Brandenberg, OF; Fasan, R1
Ang, EL; Wei, Y; Zhao, H1
Arnold, FH; Liu, Z1
Arnold, FH; Yang, Y1
Bera, S; Biswas, A; Samanta, R1
Maes, BUW; Mampuys, P; Orru, RVA; Roose, TR; Ruijter, E; Verdoorn, DS1

Reviews

10 review(s) available for methane and phenylnitrene

ArticleYear
Photoactivatable lipid probes for studying biomembranes by photoaffinity labeling.
    Chemical reviews, 2013, Oct-09, Volume: 113, Issue:10

    Topics: Biotin; Cell Membrane; Fluorescent Dyes; Free Radicals; Imines; Lipids; Membrane Proteins; Methane; Photoaffinity Labels; Sterols

2013
Ir-Catalyzed enantioselective group transfer reactions.
    Chemical Society reviews, 2015, Oct-07, Volume: 44, Issue:17

    Topics: Catalysis; Cyclopropanes; Imines; Iridium; Methane; Stereoisomerism

2015
The nature of chemical innovation: new enzymes by evolution.
    Quarterly reviews of biophysics, 2015, Volume: 48, Issue:4

    Topics: Bacteria; Biocatalysis; Catalysis; Cytochrome P-450 Enzyme System; Directed Molecular Evolution; Enzymes; Evolution, Molecular; Hydrogen Bonding; Imines; Methane; Protein Engineering

2015
Non-natural carbenoid and nitrenoid insertion reactions catalyzed by heme proteins.
    Current opinion in chemical biology, 2016, Volume: 35

    Topics: Alkenes; Aziridines; Catalysis; Hemeproteins; Imines; Methane

2016
Exploiting and engineering hemoproteins for abiological carbene and nitrene transfer reactions.
    Current opinion in biotechnology, 2017, Volume: 47

    Topics: Biocatalysis; Cyclopropanes; Hemeproteins; Imines; Methane; Protein Engineering

2017
Recent developments in the application of P450 based biocatalysts.
    Current opinion in chemical biology, 2018, Volume: 43

    Topics: Bacteria; Biocatalysis; Biological Products; Cytochrome P-450 Enzyme System; Imines; Methane; Plants; Protein Engineering; Substrate Specificity; Yeasts

2018
New-to-nature chemistry from old protein machinery: carbene and nitrene transferases.
    Current opinion in biotechnology, 2021, Volume: 69

    Topics: Hemeproteins; Imines; Methane; Transferases

2021
Navigating the Unnatural Reaction Space: Directed Evolution of Heme Proteins for Selective Carbene and Nitrene Transfer.
    Accounts of chemical research, 2021, 03-02, Volume: 54, Issue:5

    Topics: Cytochrome P-450 Enzyme System; Hemeproteins; Imines; Iron Compounds; Methane; Molecular Structure

2021
Straightforward Construction and Functionalizations of Nitrogen-Containing Heterocycles Through Migratory Insertion of Metal-Carbenes/Nitrenes.
    Chemical record (New York, N.Y.), 2021, Volume: 21, Issue:12

    Topics: Catalysis; Imines; Methane; Nitrogen; Transition Elements

2021
Transition metal-catalysed carbene- and nitrene transfer to carbon monoxide and isocyanides.
    Chemical Society reviews, 2022, Jul-18, Volume: 51, Issue:14

    Topics: Carbon Monoxide; Cyanides; Imines; Methane; Transition Elements

2022

Other Studies

6 other study(ies) available for methane and phenylnitrene

ArticleYear
Different behavior of nitrenes and carbenes on photolysis and thermolysis: formation of azirine, ylidic cumulene, and cyclic ketenimine and the rearrangement of 6-phenanthridylcarbene to 9-phenanthrylnitrene.
    The Journal of organic chemistry, 2005, Sep-30, Volume: 70, Issue:20

    Topics: Azirines; Electron Spin Resonance Spectroscopy; Ethylenes; Hot Temperature; Hydrocarbons; Imines; Ketones; Methane; Models, Molecular; Phenanthridines; Photolysis; Spectrophotometry; Thermodynamics

2005
2-Pyridylnitrene and 3-pyridazylcarbene and their relationship via ring-expansion, ring-opening, ring-contraction, and fragmentation.
    The Journal of organic chemistry, 2010, Mar-05, Volume: 75, Issue:5

    Topics: Cyclization; Imines; Magnetic Resonance Spectroscopy; Methane; Molecular Structure; Nitriles; Photolysis; Pyridazines; Spiro Compounds

2010
Ball-milling modification of single-walled carbon nanotubes: purification, cutting, and functionalization.
    Small (Weinheim an der Bergstrasse, Germany), 2011, Mar-07, Volume: 7, Issue:5

    Topics: Imines; Nanotechnology; Nanotubes, Carbon; Surface Properties

2011
Umpolung reactivity of indole through gold catalysis.
    Angewandte Chemie (International ed. in English), 2011, Aug-29, Volume: 50, Issue:36

    Topics: Alkynes; Catalysis; Gold; Imines; Indoles; Methane; Stereoisomerism

2011
The role of three-center/four-electron bonds in superelectrophilic dirhodium carbene and nitrene catalytic intermediates.
    Dalton transactions (Cambridge, England : 2003), 2012, Jan-21, Volume: 41, Issue:3

    Topics: Catalysis; Electrons; Hydrogen; Imines; Methane; Models, Theoretical; Molecular Structure; Rhodium

2012
Concomitant nitrene and carbene insertion accompanying ring expansion: spectroscopic, X-ray, and computational studies.
    The Journal of organic chemistry, 2014, Feb-07, Volume: 79, Issue:3

    Topics: Crystallography, X-Ray; Imines; Magnetic Resonance Spectroscopy; Methane; Quantum Theory

2014