Search results for "Chemical nomenclature"

showing 7 items of 7 documents

Definition of the chalcogen bond (IUPAC Recommendations 2019)

2019

Abstract This recommendation proposes a definition for the term “chalcogen bond”; it is recommended the term is used to designate the specific subset of inter- and intramolecular interactions formed by chalcogen atoms wherein the Group 16 element is the electrophilic site.

chalcogen bond; IUPAC Organic and Biomolecular Chemistry Division; IUPAC Physical and Biophysical Chemistry Division; nomenclature; noncovalent interactions; self-assembly; supramolecular chemistryGeneral Chemical EngineeringChemical nomenclature010402 general chemistrynoncovalent interaction01 natural sciencessupramolecular chemistrykemialliset sidoksetnoncovalent interactionsChalcogenGroup (periodic table)supramolekulaarinen kemiaNon-covalent interactionsIUPAC Organic and Biomolecular Chemistry DivisionIUPAC Physical and Biophysical Chemistry Divisionchalcogen bondchemistry.chemical_classification010405 organic chemistryChemistryBondSolid State & Structural Chemistry Unitself-assemblyGeneral Chemistry0104 chemical sciencesTerm (time)ChemistryCrystallographyIntramolecular forcenimikkeistötnomenclaturePure and Applied Chemistry
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Critical Evaluation of the Chemical Properties of the Transactinoid Elements (IUPAC Technical Report)

2003

Polymer scienceChemistryChemical nomenclatureTechnical reportGeneral MedicineChemInform
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Glossary of terms used in photocatalysis and radiation catalysis (IUPAC Recommendations 2011)

2011

This glossary of terms covers phenomena considered under the very wide terms photocatalysis and radiation catalysis. A clear distinction is made between phenomena related to either photochemistry and photocatalysis or radiation chemistry and radiation catalysis. The term “radiation” is used here as embracing electromagnetic radiation of all wavelengths, but in general excluding fast-moving particles. Consistent definitions are given of terms in the areas mentioned above, as well as definitions of the most important parameters used for the quantitative description of the phenomena. Terms related to the up-scaling of photocatalytic processes for industrial applications have been included. Thi…

RadiationGlossaryIUPAC organic and biomolecular chemistry divisionPhotochemistryChemistryGeneral Chemical EngineeringChemistry (all)Chemical nomenclatureGeneral ChemistryCatalysiTerminologyTheoretical physicsPhotocatalysiRadiocatalysiPhotocatalysisRadiative transferPhysical chemistryChemical Engineering (all)Settore CHIM/07 - Fondamenti Chimici Delle TecnologieGlossaryIUPAC physical and biophysical chemistry divisionPure and Applied Chemistry
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Electroanalytical chemistry for the analysis of solids: Characterization and classification (IUPAC Technical Report)

2012

Solid state electroanalytical chemistry (SSEAC) deals with studies of the processes, materials, and methods specifically aimed to obtain analytical information (quantitative elemental composition, phase composition, structure information, and reactivity) on solid materials by means of electrochemical methods. The electrochemical characterization of solids is not only crucial for electrochemical applications of materials (e.g., in batteries, fuel cells, corrosion protection, electrochemical machining, etc.) but it lends itself also for providing analytical information on the structure and chemical and mineralogical composition of solid materials of all kinds such as metals and alloys, variou…

Conductive polymerChemistryGeneral Chemical EngineeringPhase compositionChemical nomenclatureProcess analytical chemistryOrganic chemistryNanotechnologyGeneral ChemistryElectrochemical machiningElectrochemistryCorrosionCharacterization (materials science)Pure and Applied Chemistry
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Definition of the halogen bond (IUPAC Recommendations 2013)

2013

This recommendation proposes a definition for the term “halogen bond”, which designates a specific subset of the inter- and intramolecular interactions involving a halogen atom in a molecular entity.

Halogen bondComputational chemistryChemistryGeneral Chemical EngineeringIntramolecular forceChemical nomenclatureSupramolecular chemistryAtom (order theory)Organic chemistryGeneral ChemistryMolecular entityPure and Applied Chemistry
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Liquid intrusion and alternative methods for the characterization of macroporous materials (IUPAC Technical Report)

2011

This document deals with the characterization of porous materials having pore widths in the macropore range of 50 nm to 500 μm. In recent years, the development of advanced adsorbents and catalysts (e.g., monoliths having hierarchical pore networks) has brought about a renewed interest in macropore structures. Mercury intrusion–extrusion porosimetry is a well-established method, which is at present the most widely used for determining the macropore size distribution. However, because of the reservations raised by the use of mercury, it is now evident that the principles involved in the application of mercury porosimetry require reappraisal and that alternative methods are worth being listed…

IntrusionMacroporeChemical engineeringCapillary condensationChemistryGeneral Chemical EngineeringChemical nomenclaturechemistry.chemical_elementGeneral ChemistryPorosimetryWettingPorous mediumMercury (element)Pure and Applied Chemistry
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On the measurement of consistent long-term retention factor values in micellar liquid chromatography

2007

Abstract In the field of the quantitative structure–retention and retention–activity relationships (QRAR and QSRR) is crucial to obtain consistent retention factors (k). For this purpose, two unbiased approaches to estimate k are used: (i) the IUPAC approach (based on the extra-column time correction) and (ii) the ‘2-references’ approach (based on the k estimation respect to two prefixed reference k values). Three reference chemicals were selected attending to their retention time, chemical stability and non-ionic character. Consistent retention factor values for these references were estimated for C18 chromatographic columns and Brij35 solutions as mobile phases after statistical analysis.…

ChromatographyChemistryLong term retentionChemical nomenclatureThermodynamicsBiochemistryAnalytical ChemistryColumn chromatographyMicellar liquid chromatographyEnvironmental ChemistryStatistical analysisPhase analysisRetention timeSpectroscopyAnalytica Chimica Acta
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