Search results for "Green chemistry"

showing 10 items of 159 documents

Front Cover: Iron-Catalyzed C−O Bond Activation: Opportunity for Sustainable Catalysis (ChemSusChem 20/2017)

2017

Green chemistryGeneral EnergyFront coverChemistryGeneral Chemical EngineeringBondIron catalyzedPolymer chemistryEnvironmental ChemistryGeneral Materials ScienceCatalysisChemSusChem
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Imidazolium and Potassium Hydrogen Carbonate Salts as Ecofriendly Organocatalysts for Oxazolidinone Synthesis

2016

International audience; Although oxazolidinones are valuable intermediate compounds for industrial applications, no synthetic method is suitable for their production on a large scale owing to the use of reagents/catalysts that are hazardous or toxic to human health or ecotoxic for the environment. In this manuscript, we describe new and efficient catalysts, that is, the nontoxic hydrogen carbonate anion in combination with a potassium or diisobutylimidazolium ([iBu(2)IM]) countercation, for the conversion of -amino alcohols into cyclic oxazolidinones in high yields of 69 to 90%. Depending on the catalytic conditions, both catalysts could be easily recovered from the crude reaction products …

Green chemistryHydrogenPotassiumchemistry.chemical_elementHomogeneous catalysisantibacterial agentsHeterocyclesamino-alcohols010402 general chemistry01 natural sciences[ CHIM ] Chemical SciencescatalystsCatalysisefficientchemistry.chemical_compounddioxide[ CHIM.ORGA ] Chemical Sciences/Organic chemistryOrganic chemistry[CHIM]Chemical SciencesSustainable chemistryPhysical and Theoretical ChemistryComputingMilieux_MISCELLANEOUS010405 organic chemistry[CHIM.ORGA]Chemical Sciences/Organic chemistryOrganocatalysisOrganic Chemistry[CHIM.CATA]Chemical Sciences/CatalysisHomogeneous catalysis0104 chemical scienceschemistryCyclizationOrganocatalysisReagentderivativesCarbonateacid
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Progress in palladium-based catalytic systems for the sustainable synthesis of annulated heterocycles: a focus on indole backbones

2012

BIOVERT+LDJ; A survey highlighting the most recent palladium catalytic systems produced and their performances for progress in direct synthesis of indole backbones by heterocarbocyclization of reactive substrates is provided. The discussion is developed in relation with the principles of sustainable chemistry concerning atom and mass economy. In this respect, the general convergent character of the syntheses is of particular interest (one-pot, domino, cascade or tandem reactions), and the substrates accessibility and reactivity, together with the final waste production, are also important. This critical review clearly indicates that the development of ligand chemistry, mainly phosphines and…

Green chemistryIndole testIndolesPhosphines010405 organic chemistryLigandchemistry.chemical_elementChemistry Techniques Synthetic[CHIM.CATA]Chemical Sciences/CatalysisGeneral ChemistryLigands010402 general chemistry[SDE.ES]Environmental Sciences/Environmental and Society01 natural sciencesCatalysis0104 chemical sciencesCatalysischemistryWaste productionAlkynesOrganic chemistryReactivity (chemistry)MethanePalladiumPalladiumChemical Society Reviews
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Cover Picture: Metal‐ and Reagent‐Free Highly Selective Anodic Cross‐Coupling Reaction of Phenols (Angew. Chem. Int. Ed. 20/2014)

2014

Green chemistryInorganic chemistryINTGeneral ChemistryCatalysisCoupling reactionAnodeMetalchemistry.chemical_compoundchemistryvisual_artReagentvisual_art.visual_art_mediumOxidative coupling of methanePhenolsAngewandte Chemie International Edition
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Iron-Catalyzed C−O Bond Activation: Opportunity for Sustainable Catalysis

2017

Oxygen-based electrophiles have emerged as some of the most valuable cross-coupling partners in organic synthesis due to several major strategic and environmental benefits, such as abundance and potential to avoid toxic halide waste. In this context, iron-catalyzed C-O activation/cross-coupling holds particular promise to achieve sustainable catalytic protocols due to its natural abundance, inherent low toxicity, and excellent economic and ecological profile. Recently, tremendous progress has been achieved in the development of new methods for functional-group-tolerant iron-catalyzed cross-coupling reactions by selective C-O cleavage. These methods establish highly attractive alternatives t…

Green chemistryIronGeneral Chemical EngineeringNanotechnologyContext (language use)010402 general chemistry01 natural sciencesCatalysisCatalysischemistry.chemical_compoundEnvironmental ChemistryGeneral Materials ScienceOrganic ChemicalsLow toxicity010405 organic chemistryIron catalyzedGreen Chemistry TechnologyCombinatorial chemistryCarbon0104 chemical sciencesOxygenGeneral EnergychemistrySustainabilityElectrophileOrganic synthesisChemSusChem
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Expanding the Variety of Zirconium‐based Inorganic Building Units for Metal–Organic Frameworks

2019

Two new zirconium-based metal-organic frameworks with the composition [Zr6 O4 (OH)4 (OAc)6 (BDC)3 ] (CAU-26) and [Zr5 O4 (OH)4 (OAc)4 (BDC)2 ] (CAU-27) are reported, which were synthesized from acetic acid, a rarely utilized but green and sustainable solvent (BDC2- : 1,4-benzenedicarboxylate). Structure determination aided by automated electron diffraction tomography revealed that CAU-26 is composed of layers of well-known {Zr6 O8 } clusters interconnected by terephthalate ions. In contrast CAU-27 exhibits a three-dimensional structure with a so far unknown type of one-dimensional inorganic building unit (IBU), which can be rationalized as condensed polyhedron-sharing chains of {Zr6 O8 } cl…

Green chemistryMaterials scienceChemistry MultidisciplinaryCATALYZED BORYLATIONchemistry.chemical_element010402 general chemistryHIGHLY EFFICIENTBorylation01 natural sciencesTOXICITYCatalysisCatalysisAUTOMATED DIFFRACTION TOMOGRAPHYPolymer chemistryMoleculeZR-MOFGreen ChemistryZirconiumScience & TechnologySTABILITY010405 organic chemistryDirect C-H borylationGeneral ChemistryGeneral MedicineElectron DiffractionORGANOSILICA0104 chemical sciencesSolventChemistrychemistryPhysical SciencesARENESMetal-organic frameworkChemical stabilityZirconiumCLUSTERSMetal-organic FrameworksGREEN SYNTHESISAngewandte Chemie
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Photocatalytic Processes in Membrane Reactors

2010

Conversion and degradation processes of various substrates in various types of matrices using both artificial and solar light are today very attractive by considering the scarcity and the expensiveness of the conventional energy sources. Coupling of membrane with light has shown to be very powerful and promising hybrid process, especially because a synergistic effect has been often observed. Some examples of reactions carried out to produce useful chemicals or to degrade noxious species in the framework of the green chemistry approach are reported. Fundamentals of heterogeneous photocatalysis, in general, and photocatalytic reactions in membrane reactors, in particular, are treated with a f…

Green chemistryMaterials scienceMembrane reactorbusiness.industrySolar energyMembraneChemical engineeringScientific methodPhotocatalysisDegradation (geology)Settore CHIM/07 - Fondamenti Chimici Delle TecnologieEnergy sourcebusinessPhotocatalysis membrane
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Green Design of Novel Starch-Based Packaging Materials Sustaining Human and Environmental Health

2021

A critical overview of current approaches to the development of starch-containing packaging, integrating the principles of green chemistry (GC), green technology (GT) and green nanotechnology (GN) with those of green packaging (GP) to produce materials important for both us and the planet is given. First, as a relationship between GP and GC, the benefits of natural bioactive compounds are analyzed and the state-of-the-art is updated in terms of the starch packaging incorporating green chemicals that normally help us to maintain health, are environmentally friendly and are obtained via GC. Newer approaches are identified, such as the incorporation of vitamins or minerals into films and coati…

Green chemistryMaterials sciencePolymers and PlasticsGreen nanotechnologyStarchResearch areasnanopackagingNanotechnologyReview02 engineering and technologycold plasmalcsh:QD241-441chemistry.chemical_compound0404 agricultural biotechnologygreen technologylcsh:Organic chemistrySustainable designMetal nanoparticlesbioactivegreen packaginggreen chemistrystarchhealth04 agricultural and veterinary sciencesGeneral Chemistry021001 nanoscience & nanotechnology040401 food scienceEnvironmentally friendlyUVchemistrybioinspirationBioinspiration0210 nano-technologyPolymers
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Use of green alternative solvents in dispersive liquid‐liquid microextraction: A review

2021

Dispersive liquid-liquid microextraction is one of the most widely used microextraction techniques currently in the Analytical Chemistry field, mainly due to its simplicity and rapidity. The operational mode of this approach has been constantly changing since its introduction, adapting to new trends and applications. Most of these changes are related to the nature of the solvent employed for the microextraction. From the classical halogenated solvents (e.g., chloroform or dichloromethane), different alternatives have been proposed in order to obtain safer and non-pollutants microextraction applications. In this sense, low density solvents, such as alkanols, switchable hydrophobicity solvent…

Green chemistryMaterials scienceSupramolecular chemistryFiltration and SeparationAnalytical ChemistryDeep eutectic solventSolventchemistry.chemical_compoundchemistryChemical engineeringIonic liquidLow densityLiquid liquidDichloromethaneJournal of Separation Science
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Frontispiece: Metal‐Free Electrochemical Synthesis of Sulfonamides Directly from (Hetero)arenes, SO 2 , and Amines

2021

Green chemistryMetal freeChemistryGeneral ChemistryElectrochemistryCombinatorial chemistryCatalysisAngewandte Chemie International Edition
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