benzoic acid has been researched along with nitrobenzene in 12 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 3 (25.00) | 18.7374 |
1990's | 2 (16.67) | 18.2507 |
2000's | 4 (33.33) | 29.6817 |
2010's | 3 (25.00) | 24.3611 |
2020's | 0 (0.00) | 2.80 |
Authors | Studies |
---|---|
Fujita, T; Nakajima, M; Nishioka, T | 1 |
Grieco, C; Hansch, C; Silipo, C; Vittoria, A | 1 |
Duffy, EM; Jorgensen, WL | 1 |
Caron, G; Ermondi, G | 1 |
Abellán Guillén, A; Cordeiro, MN; Garrido Escudero, A; Morales Helguera, A; Pérez-Garrido, A | 1 |
Alcorn, CJ; Leahy, D; Peters, TJ; Simpson, RJ | 1 |
Løkke, H | 1 |
Coban, T; Eke, BC; Iscan, M | 1 |
Shang, NC; Yu, YH | 1 |
Fang, J; Fu, Y; Shang, C | 1 |
Ding, J; Li, X; Ma, J; Wan, Y; Wang, Z; Xie, P; Yue, S | 1 |
Fijołek, L; Nawrocki, J | 1 |
12 other study(ies) available for benzoic acid and nitrobenzene
Article | Year |
---|---|
Hydrogen-bonding parameter and its significance in quantitative structure--activity studies.
Topics: Acetylcholinesterase; Anesthetics; Benzene Derivatives; Benzenesulfonates; Carbamates; Chemical Phenomena; Chemistry; Chemistry, Physical; Hydrogen Bonding; Models, Biological; Models, Chemical; Phenoxyacetates; Solubility; Structure-Activity Relationship | 1977 |
Quantitative structure-activity relationship of chymotrypsin-ligand interactions.
Topics: Acylation; Chymotrypsin; Hydrolysis; Kinetics; Ligands; Models, Biological; Models, Chemical; Protein Binding; Stereoisomerism; Structure-Activity Relationship | 1977 |
Prediction of drug solubility from Monte Carlo simulations.
Topics: Monte Carlo Method; Pharmaceutical Preparations; Solubility | 2000 |
Calculating virtual log P in the alkane/water system (log P(N)(alk)) and its derived parameters deltalog P(N)(oct-alk) and log D(pH)(alk).
Topics: 1-Octanol; Alkanes; Hydrogen-Ion Concentration; Least-Squares Analysis; Mathematics; Models, Chemical; Models, Molecular; Solvents; Water | 2005 |
Convenient QSAR model for predicting the complexation of structurally diverse compounds with beta-cyclodextrins.
Topics: beta-Cyclodextrins; Hydrophobic and Hydrophilic Interactions; Organic Chemicals; Quantitative Structure-Activity Relationship | 2009 |
In vitro studies of intestinal drug absorption. Determination of partition and distribution coefficients with brush border membrane vesicles.
Topics: Animals; Benzoates; Benzoic Acid; Chemical Phenomena; Chemistry, Physical; Fatty Acids, Nonesterified; Female; Hydrogen-Ion Concentration; In Vitro Techniques; Intestinal Absorption; Intestine, Small; Male; Microvilli; Models, Biological; Nitrobenzenes; Rats; Rats, Inbred Strains; Toluene | 1991 |
Sorption of selected organic pollutants in Danish soils.
Topics: 2,4-Dichlorophenoxyacetic Acid; Adsorption; Benzoates; Benzoic Acid; Denmark; Nitrobenzenes; Nitrophenols; Polychlorinated Biphenyls; Soil; Soil Pollutants; Temperature | 1984 |
Differential combined effect of cadmium and nickel on hepatic and renal glutathione S-transferases of the guinea pig.
Topics: Animals; Benzoates; Benzoic Acid; Cadmium; Dinitrochlorobenzene; Ethacrynic Acid; Glutathione Transferase; Guinea Pigs; Kidney; Liver; Male; Nickel; Nitrobenzenes; Nitrophenols; Organophosphorus Compounds; Substrate Specificity | 1994 |
Toxicity and color formation during ozonation of mono-substituted aromatic compounds.
Topics: Aniline Compounds; Benzoic Acid; Carcinogens; Hydrogen-Ion Concentration; Nitrobenzenes; Ozone; Phenol; Photobacterium; Toxicity Tests; Water Purification | 2002 |
The roles of reactive species in micropollutant degradation in the UV/free chlorine system.
Topics: Benzoic Acid; Bicarbonates; Chlorides; Chlorine; Hydroxyl Radical; Kinetics; Models, Chemical; Nitrobenzenes; Photolysis; Ultraviolet Rays; Water Pollutants, Chemical | 2014 |
Degradation of organic pollutants by Vacuum-Ultraviolet (VUV): Kinetic model and efficiency.
Topics: Benzhydryl Compounds; Benzoic Acid; Chlorine; Humic Substances; Hydroxyl Radical; Kinetics; Models, Theoretical; Nitrobenzenes; Oxidation-Reduction; Phenols; Phthalic Acids; Ultraviolet Rays; Vacuum; Water Pollutants, Chemical; Water Purification | 2018 |
Phosphate helps to recover from scavenging effect of chloride in self-enhanced ozonation.
Topics: Benzoic Acid; Chlorides; Hydrogen-Ion Concentration; Hydroxyl Radical; Nitrobenzenes; Ozone; Phosphates; Water Pollutants, Chemical; Water Purification | 2018 |