Search results for "Aniline"

showing 10 items of 259 documents

Bioconcentration, metabolism and toxicity of substituted anilines in the zebrafish (Brachydanio rerio).

1991

The LC50 (96 h) values and the bioconcentration factors (BCF) for nine anilines (aniline; 2-, 3-, 4-chloroaniline; 2-, 3-, 4-nitroaniline; 2,4- and 3,4-dichloroaniline) in the zebrafish (Brachydanio rerio) were determined. Biotransformation products of anilines in the zebrafish were analyzed by HPLC. The aim of the investigations was to find relationships between accumulation/elimination/metabolism and toxicity on the one hand and between chemical structure and biotransformation on the other. We found a good correlation of log BCF and of log Pow with log LC50. This concurs with the assumption that the internal dose determines the toxicological effect. All anilines investigated, with the exc…

Environmental EngineeringAniline CompoundsStereochemistryBioconcentrationBiologyPollutionchemistry.chemical_compoundKineticsStructure-Activity RelationshipAnilinechemistryBiotransformationAcetylationToxicityEnvironmental ChemistryToxicokineticsStructure–activity relationshipAnimalsWaste Management and DisposalAcetanilideBiotransformationChromatography High Pressure LiquidZebrafishThe Science of the total environment
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Protecting emergency workers and armed forces from volatile toxic compounds: Applicability of reversible conductive polymer-based sensors in barrier …

2019

International audience; Barrier materials have wide applicability in both professional (military, medical, industrial) and non-professional(leisure and sports) fields. This paper focuses on the preparation of real conductive polymer (CP) sensors, for thestudy of the permeation of volatile toxic compounds through barrier materials. Use of such a CP sensor can helpimprove the quality of barrier materials used in protective clothing. Several types of platforms have beenmanufactured or purchased for use as comb sensors with different electrode dimensions, and a suitable methodof applying the detection layer of conductive polymers (polyaniline and poly-pyrrole) has been developed. Prepared senso…

Environmental EngineeringMaterials science010504 meteorology & atmospheric sciencesReversible conductive polymer-based sensorSubstrate (electronics)Air Pollutants Occupational010501 environmental sciencesConductivity01 natural sciencesSurface filmchemistry.chemical_compoundQCM sensor platformOccupational ExposurePolyanilineEnvironmental ChemistryVolatile toxic compoundsWaste Management and Disposal0105 earth and related environmental sciencesConductive polymerPermeationPollutionMilitary PersonnelchemistryChemical engineeringElectrode[SDE]Environmental SciencesEmergency Service HospitalLayer (electronics)Military textile barrier materialPermeation cellEnvironmental Monitoring
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Phytoremediation of polyaromatic hydrocarbons, anilines and phenols

2002

International audience; Phytoremediation technologies based on the combined action of plants and the microbial communities that they support within the rhizosphere hold promise in the remediation of land and waterways contaminated with hydrocarbons but they have not yet been adopted in large-scale remediation strategies. In this review plant and microbial degradative capacities, viewed as a continuum, have been dissected in order to identify where bottle-necks and limitations exist. Phenols, anilines and polyaromatic hydrocarbons (PAHs) were selected as the target classes of molecule for consideration, in part because of their common patterns of distribution, but also because of the urgent …

Environmental remediationHealth Toxicology and Mutagenesis[SDE.MCG]Environmental Sciences/Global Changesreviewphytoremediation[SDV.SA.SDS]Life Sciences [q-bio]/Agricultural sciences/Soil studyNutrientPhenolsBotanyremediationSoil PollutantsEnvironmental ChemistryphenolanilinePolycyclic Aromatic HydrocarbonsPollutantRhizosphereAniline CompoundsChemistryGeneral MedicinePAHPlantsBiodegradationPollutionPhytoremediationenzymeBiodegradation Environmental[SDV.MP]Life Sciences [q-bio]/Microbiology and ParasitologyTranspiration streamSoil Pollutants
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Über die Stabilität Von Copolymeren aus 1,3,5-Trioxan mit verschiedenen Lactonen

1976

Der thermische Abbau von Copolymeren aus 1,3,5-Trioxan und den Lactonen β-Propiolacton (3-Propanolid), Pivalolacton (2,2-Dimethyl-3-propanolid) und e-Caprolacton (6-Hexanolid) wurde untersucht. Der langsame und vollstandige Abbau der Copolymeren wird zuruckgefuhrt auf 1 eine statistische acidolytische Kettenspaltung durch Carboxyl-Endgruppen, 2 die Abspaltung von Acrylsaure an den sauren Endgruppen, 3 die statistische Kettenspaltung durch Pyrolyse von Esterbindungen vor allem in Sequenzen aus mehreren β-Propiolactonbausteinen. Die Teilreaktionen (1) und (2) konnen durch Zusatz von Butandiol-Diglycidylather-(1,4-Bis(2,3-epoxypropoxy)butan) oder N-(2-Naphthyl)anilin oder von Epoxiden stark ve…

Ethylene oxideChain scissionPolymers and PlasticsChemistrychemistry.chemical_compoundReaction rate constantAnilineColloid and Surface ChemistryButanediolPolymer chemistryCopolymerMaterials ChemistryOrganic chemistryPhysical and Theoretical ChemistryAcrylic acidColloid and Polymer Science
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2-(N,N-Diethylaminomethyl)-6,7-trihydroquinolinyl-8-ylideneamine-Ni(ii) chlorides: application in ethylene dimerization and trimerization

2020

A series of Ni(II) complexes with the general formula [2-((NEt2)Me)-8-{N(Ar)}C9H8N]NiCl2, where Ar = 2,6-Me2C6H3 in Ni1, 2,6-Et2C6H3 in Ni2, 2,6-i-Pr2C6H3 in Ni3, 2,4,6-Me3C6H2 in Ni4, 2,6-Et2-4-MeC6H2 in Ni5, and 2,4,6-t-Bu3C6H2 in Ni6, has been prepared using a one-pot reaction of 2-(N,N-diethylaminomethyl)-6,7-dihydroquinolin-8(5H)-one with the corresponding aniline and nickel dichloride hexahydrate. The resultant complexes were characterized using elemental analysis and FT-IR spectroscopy, while the mononuclear Ni1 and Ni3 were also the subject of single-crystal X-ray diffraction study. On activation with MMAO, the complexes Ni1–Ni6 displayed good activity in ethylene oligomerization, f…

EthyleneNickel metallographyInduction periodAliphatic compoundsGeneral ChemistryBinary alloysMedicinal chemistryChlorine compoundsCatalysisCatalysisCatalyst selectivityAnilineEthylenechemistry.chemical_compoundAnilinechemistryElemental analysisCatalyst activityMaterials ChemistrySingle crystalsThermal stabilitySelectivitySpectroscopyDimerizationNew Journal of Chemistry
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Functional hydrogels containing polyaniline nanoparticles through e-beam irradiation

2009

Functional hydrogels polyaniline nanoparticles e-beam irradiation
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Synthesis, and Molecular Structure Investigations of a New s-Triazine Derivatives Incorporating Pyrazole/Piperidine/Aniline Moieties

2021

In this work, we synthesized two new s-triazine incorporates pyrazole/piperidine/aniline moieties. Molecular structure investigations in the light of X-ray crystallography combined with Hirshfeld and DFT calculations were presented. Intermolecular interactions controlling the molecular packing of 4-(3,5-dimethyl-1H-pyrazol-1-yl)-N-phenyl-6-(piperidin-1-yl)-1,3,5-triazin-2-amine; 5a and N-(4-bromophenyl)-4-(3,5-dimethyl-1H-pyrazol-1-yl)-6-(piperidin-1-yl)-1,3,5-triazin-2-amine; 5b were analyzed using Hirshfeld calculations. The most dominant interactions are the H...H, N...H and H...C contacts in both compounds. The N...H and H...C interactions in 5a and the N...H, Br...H and H...H interacti…

General Chemical EngineeringPyrazoleInorganic Chemistrychemistry.chemical_compoundsymbols.namesakeAnilines-triazinehydrazino-s-triazineComputational chemistry<i>s</i>-triazine; pyrazole; hydrazino-<i>s</i>-triazine; Hirshfeld calculationsMoleculeHirshfeld calculationsGeneral Materials Scienceheterosykliset yhdisteetDebyeTriazinekemiallinen synteesiCrystallography<i>s</i>-triazineChemical shiftIntermolecular forceCondensed Matter Physicspyrazolechemistryhydrazino-<i>s</i>-triazineQD901-999symbolsPiperidineCrystals
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How amino and nitro substituents affect the aromaticity of benzene ring

2020

Abstract The effect of strongly electron-accepting and electron-donating substituents on the aromaticity of the benzene ring has been revealed based on experimental and computational data. It has been documented that the nitro group affects the π-electron structure of the ring in its benzene derivative ca. 2.8 times weaker than the amino group. However, their joint effects in the meta and para nitroaniline, compared to nitrobenzene, results in a decrease of the delocalization in the ring by a factor ca. 4.0 and 6.5, respectively.

General Physics and AstronomyAromaticity02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnologyPara-nitroanilineRing (chemistry)01 natural sciencesMedicinal chemistry0104 chemical sciencesNitrobenzenechemistry.chemical_compoundDelocalized electronchemistryBenzene derivativesNitroPhysical and Theoretical Chemistry0210 nano-technologyBenzeneChemical Physics Letters
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Electrochemical Amination of Less-Activated Alkylated Arenes Using Boron-Doped Diamond Anodes

2016

The anodic C–H amination of aromatic compounds is a powerful and versatile method for the synthesis of aniline derivatives. By using boron-doped diamond (BDD) anodes, a method initially described by Yoshida et al. for electron-rich arenes was expanded to less-activated aromatic systems e.g., simple alkylated benzene derivatives. Anodes based on sp3 carbon seem to be the key for the electrochemical amination reaction. The corresponding primary anilines are obtained in good yields. Despite the cationic intermediates of the electrolytic reaction tert-butyl moieties are tolerated.

Green chemistry010405 organic chemistryChemistryOrganic ChemistryCationic polymerizationDiamondchemistry.chemical_elementengineering.materialAlkylation010402 general chemistryElectrochemistry01 natural sciencesCombinatorial chemistry0104 chemical scienceschemistry.chemical_compoundAnilineengineeringOrganic chemistryPhysical and Theoretical ChemistryCarbonAminationEuropean Journal of Organic Chemistry
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Straightforward Electrochemical Sulfonylation of Arenes and Aniline Derivatives using Sodium Sulfinates

2019

Green chemistry540 Chemistry and allied scienceschemistry.chemical_compoundAnilineChemistry540 ChemieSodiumElectrochemistrychemistry.chemical_elementOrganic chemistryElectrochemistryCatalysisChemElectroChem
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