hydroxylamine has been researched along with methane in 11 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 2 (18.18) | 18.7374 |
1990's | 1 (9.09) | 18.2507 |
2000's | 3 (27.27) | 29.6817 |
2010's | 3 (27.27) | 24.3611 |
2020's | 2 (18.18) | 2.80 |
Authors | Studies |
---|---|
Broquet, P; Louisot, P; Serres-Guillaumond, M | 1 |
DiSpirito, AA; Duncan, C; Zahn, JA | 1 |
Ayscough, AP; Beckett, RP; Bragg, RA; Clements, JM; Davies, SJ; Doel, S; Grew, C; Launchbury, SB; Perkins, GM; Pratt, LM; Smith, HK; Spavold, ZM; Thomas, SW; Todd, RS; Whittaker, M | 1 |
NATARAJAN, AT; UPADHYA, MD | 1 |
Borden, WT; Carpenter, BK; Hrovat, DA; Isborn, C; Mayer, JM | 1 |
Breznak, JA; Gandhi, H; Li, F; Ostrom, NE; Ostrom, PH; Pitt, AJ; Sutka, RL | 1 |
Campbell, MA; Klotz, MG; Kozlowski, JA; Nyerges, G; Poret-Peterson, AT; Stein, LY | 1 |
Zhang, H; Zheng, J | 1 |
Boudet, C; Doris, E; Geertsen, V; Gravel, E; Jawale, DV; Li, H; Namboothiri, IN; Shah, N | 1 |
Akbarzadeh, P; Kolvari, E; Koukabi, N | 1 |
Chahal, MK; Hill, JP; Hong, D; Ishihara, S; Kataura, H; Koga, K; Kon, Y; Labuta, J; Miyamura, H; Nakanishi, T; Payne, DT; Sumita, M; Tanaka, T; Yamauchi, Y | 1 |
11 other study(ies) available for hydroxylamine and methane
Article | Year |
---|---|
Involvement of some amino acid residues in the enzymatic activity of solubilized cerebral fucosyltransferase.
Topics: Animals; Arginine; Binding Sites; Brain; Butanones; Diacetyl; Diethyl Pyrocarbonate; Formates; Fucosyltransferases; Hexosyltransferases; Histidine; Hydroxylamine; Hydroxylamines; Kinetics; Methane; Sheep; Tetranitromethane; Tyrosine | 1984 |
Oxidation of hydroxylamine by cytochrome P-460 of the obligate methylotroph Methylococcus capsulatus Bath.
Topics: Amino Acid Sequence; Amino Acids; Ammonia; Cytochromes; Electron Spin Resonance Spectroscopy; Electron Transport; Heme; Hydroxylamine; Hydroxylamines; Isoelectric Point; Metals; Methane; Methylococcaceae; Molecular Sequence Data; Molecular Weight; Nitrites; Spectrophotometry | 1994 |
Structure-activity relationships of the peptide deformylase inhibitor BB-3497: modification of the methylene spacer and the P1' side chain.
Topics: Amidohydrolases; Anti-Bacterial Agents; Enzyme Inhibitors; Hydrocarbons; Hydroxamic Acids; Hydroxylamine; Inhibitory Concentration 50; Metals; Methane; Microbial Sensitivity Tests; Molecular Mimicry; Oligopeptides; Structure-Activity Relationship | 2003 |
LOCALIZED CHROMOSOME BREAKAGE INDUCED BY ETHYL-METHANE-SULFONATE AND HYDROXYLAMINE IN VICIA FABA.
Topics: Alkylating Agents; Chromosome Breakage; Chromosomes; Ethyl Methanesulfonate; Hydroxylamine; Hydroxylamines; Methane; Mutation; Pharmacology; Plants; Research; Sulfonic Acids; Vicia faba | 1964 |
Factors controlling the barriers to degenerate hydrogen atom transfers.
Topics: Ammonia; Hydrofluoric Acid; Hydrogen; Hydrogen Peroxide; Hydroxylamine; Kinetics; Methane; Models, Molecular; Thermodynamics; Water | 2005 |
Distinguishing nitrous oxide production from nitrification and denitrification on the basis of isotopomer abundances.
Topics: Ammonia; Bacteria; Hydroxylamine; Methane; Methylococcus capsulatus; Nitrates; Nitrites; Nitrogen Isotopes; Nitrosomonas europaea; Nitrous Oxide; Oxidation-Reduction; Pseudomonas | 2006 |
Model of the molecular basis for hydroxylamine oxidation and nitrous oxide production in methanotrophic bacteria.
Topics: Ammonia; Autotrophic Processes; Bacteria; Bacterial Proteins; Gene Expression Regulation, Bacterial; Hydroxylamine; Methane; Methylococcaceae; Molecular Sequence Data; Nitrous Oxide; Oxidation-Reduction | 2011 |
Sensitive detection of hydroxylamine at a simple baicalin carbon nanotubes modified electrode.
Topics: Catalysis; Electrochemistry; Electrodes; Flavonoids; Hydroxylamine; Limit of Detection; Nanotubes, Carbon; Water; Water Pollutants, Chemical | 2012 |
Selective conversion of nitroarenes using a carbon nanotube-ruthenium nanohybrid.
Topics: Aniline Compounds; Hydroxylamine; Models, Molecular; Nanotubes, Carbon; Ruthenium | 2015 |
Anchoring of triethanolamine-Cu(II) complex on magnetic carbon nanotube as a promising recyclable catalyst for the synthesis of 5-substituted 1H-tetrazoles from aldehydes.
Topics: Aldehydes; Catalysis; Copper; Ethanolamines; Ferrosoferric Oxide; Hydroxylamine; Magnetic Phenomena; Nanocomposites; Nanotubes, Carbon; Sodium Azide; Tetrazoles | 2020 |
Selective Detection of Toxic C1 Chemicals Using a Hydroxylamine-Based Chemiresistive Sensor Array.
Topics: Aldehydes; Formaldehyde; Hydroxylamine; Hydroxylamines; Nanotubes, Carbon | 2023 |