Search results for "Localization function"

showing 10 items of 56 documents

A Density Functional Theory study on gold cyanide interactions: The fundamentals of ore cleaning

2010

We have employed Density Functional Theory calculations to study the adsorption of CN, CN− and KCN on Au(111) and Au(211) surfaces and compare the obtained results to CO. The adsorption of CN, CN−, and KCN are exothermic with respect to the gas-phase moieties, and the adsorption energy increases at steps. Our results show that the binding mechanism of CN− is different from that of CO. The projected LDOS indicates that the bond between the flat surface and CN shows very small overlap between metal and CN states. This overlap increases provided that extra charge is present or low-coordinated Au atoms are available. Charge transfer is analyzed via the Bader method and the Electron Localization…

ChemistryCyanideInorganic chemistrySurfaces and InterfacesCondensed Matter PhysicsElectron localization functionSurfaces Coatings and FilmsMetalchemistry.chemical_compoundElectron transferAdsorptionTransition metalCovalent bondvisual_artMaterials Chemistryvisual_art.visual_art_mediumPhysical chemistryDensity functional theorySurface Science
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Unveiling the Intramolecular Ionic Diels–Alder Reactions within Molecular Electron Density Theory

2021

The intramolecular ionic Diels–Alder (IIDA) reactions of two dieniminiums were studied within the Molecular Electron Density Theory (MEDT) at the ωB97XD/6-311G(d,p) computational level. Topological analysis of the electron localization function (ELF) of dieniminiums showed that their electronic structures can been seen as the sum of those of butadiene and ethaniminium. The superelectrophilic character of dieniminiums accounts for the high intramolecular global electron density transfer taking place from the diene framework to the iminium one at the transition state structures (TSs) of these IIDA reactions, which are classified as the forward electro density flux. The activation enthalpy ass…

Exergonic reaction010405 organic chemistryChemistryintramolecular ionic Diels–Alder reactionsmolecular electron density theorydieniminiumsIntermolecular forceIminiumIonic bondingGeneral Medicine010402 general chemistry01 natural sciencesElectron localization function0104 chemical sciencesGibbs free energyChemistryCrystallographysymbols.namesakeglobal electron density transferIntramolecular forcesuperelectrophilessymbolsSingle bondQD1-999Chemistry
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Understanding the mechanism of non-polar diels-alder reactions. A comparative elf analysis of concerted and stepwise diradical mechanisms

2010

The electron-reorganization along the concerted and stepwise pathways associated with the non-polar Diels-Alder reaction between cyclopentadiene (Cp, 1) and ethylene (2) has been studied using the topological analysis of the electron localization function (ELF) at the B3LYP/6-31G(d) level of theory. ELF results for the concerted mechanism stresses that the electron-reorganization demanded on the diene and ethylene reagents to reach two pseudo-diradical structures is responsible for the high activation energy. A comparative ELF analysis of some relevant points of the non-polar Diels-Alder reaction between Cp and styrene (10) suggests that these concerted mechanisms do not have a pericyclic e…

Pericyclic reactionEthyleneCyclopentadieneDieneDiradicalConcerted reactionStereochemistryOrganic Chemistryrespiratory systemBiochemistryElectron localization functionStyrenechemistry.chemical_compoundchemistryPhysical and Theoretical Chemistry
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Studies of Nature of Uncommon Bifurcated I–I···(I–M) Metal-Involving Noncovalent Interaction in Palladium(II) and Platinum(II) Isocyanide Cocrystals

2021

Two isostructural trans-[MI2(CNXyl)2]·I2 (M = Pd or Pt; CNXyl = 2,6-dimethylphenyl isocyanide) metallopolymeric cocrystals containing uncommon bifurcated iodine···(metal–iodide) contact were obtained. In addition to classical halogen bonding, single-crystal X-ray diffraction analysis revealed a rare type of metal-involved stabilizing contact in both cocrystals. The nature of the noncovalent contact was studied computationally (via DFT, electrostatic surface potential, electron localization function, quantum theory of atoms in molecules, and noncovalent interactions plot methods). Studies confirmed that the I···I halogen bond is the strongest noncovalent interaction in the systems, followed …

chemistry.chemical_classificationplatinaHalogen bondhalogeenit010405 organic chemistryChemistryIsocyanideAtoms in moleculeskompleksiyhdisteet010402 general chemistrypalladium01 natural sciencesCocrystalElectron localization function0104 chemical sciencesInorganic Chemistrychemistry.chemical_compoundCrystallographykemialliset sidoksetNucleophileNon-covalent interactionsPhysical and Theoretical ChemistryIsostructuralmetallit
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Carrier confinement in Ge/Si quantum dots grown with an intermediate ultrathin oxide layer

2012

We present computational results for strain effects on charge carrier confinement in Ge${}_{x}$Si${}_{1\ensuremath{-}x}$ quantum dots (QDs) grown on an oxidized Si surface. The strain and free carrier probability density distributions are obtained using the continuum elasticity theory and the effective-mass approximation implemented by a finite-element modeling scheme. Using realistic parameters and conditions for hemisphere and pyramid QDs, it is pointed out that an uncapped hemisphere dot deposited on the Si surface with an intermediate ultrathin oxide layer offers advantageous electron-hole separation distances with respect to a square-based pyramid grown directly on Si. The enhanced sep…

Materials scienceQuantum dotOrder (ring theory)Charge carrierCharge (physics)HeterojunctionContinuum (set theory)ElectronCondensed Matter PhysicsMolecular physicsElectron localization functionElectronic Optical and Magnetic MaterialsPhysical Review B
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Nature of the ring-closure process along the rearrangement of octa-1,3,5,7-tetraene to cycloocta-1,3,5-triene from the perspective of the electron lo…

2011

We analyze the behavior of the energy profile of the ring-closure process for the transformation of (3Z,5Z)-octa-1,3,5,7-tetraene 5 to (1Z,3Z,5Z)-cycloocta-1,3,5-triene 6 through a combination of electron localization function (ELF) and catastrophe theory (CT). From this analysis, concepts such as bond breaking/forming processes, formation/annihilation of lone pairs, and other electron pair rearrangements arise naturally through the reaction progress simply in terms of the different ways of pairing up the electrons. A relationship between the topology and the nature of the bond breaking/forming processes along this rearrangement is reported. The different domains of structural stability of …

Electron paireducation.field_of_studyElectron localization functionRing-closure processElectrocyclic reactionsChemistryStereochemistryCatastrophe theoryPopulationGeneral ChemistryCyclooctatrieneElectron localization functionLewis structureComputational Mathematicssymbols.namesakeCrystallographyEnergy profileChemical bondsymbolsSingle bondChemical bondOctatetraeneeducationLone pairJournal of Computational Chemistry
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An Understanding of the Electrophilic/Nucleophilic Behavior of Electro-Deficient 2,3-Disubstituted 1,3-Butadienes in Polar Diels−Alder Reactions. A D…

2008

The electrophilic/nucleophilic behavior of dimethyl 2,3-dimethylenesuccinate 1, an electron-deficient 2,3-disubstituted 1,3-butadiene, in polar Diels-Alder reactions has been studied using DFT methods at the B3LYP/6-31G(d) level of theory. The electronic nature of bonding of the transition structures involved in the cycloaddition reactions of the diene 1 toward the nucleophilically activated dienophile 6 and the strong electrophilically activated dienophile 7 has been carefully examined within the natural bond orbital (NBO) and the topological analysis of the electron localization function (ELF) frameworks. Additionally, a study of the global electrophilicity pattern of the reagents at the …

chemistry.chemical_compoundDieneNucleophileChemistryComputational chemistryElectrophileDensity functional theoryPhysical and Theoretical ChemistryGround stateCycloadditionElectron localization functionNatural bond orbitalThe Journal of Physical Chemistry A
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Better understanding of the ring-cleavage process of cyanocyclopropyl anionic derivatives. A theoretical study based on the electron localization fun…

2005

[reaction: see text] Theoretical calculations at the B3LYP/6-31+G(d), MP2/6-31+G(d), and G3(MP2) levels have been carried out to understand the alternative reaction pathways (the cyclopropyl ring cleavage (RC) and the retrocycloaddition reaction (rCA)) of a constrained tricyanocyclopropyl anionic derivative. The more energetically favorable path is found to be the RC process, a formally "forbidden" rearrangement (Leiviers, M.; Tam, I.; Groves, K.; Leung, D.; Xie, Y.; Breslow, R. Org. Lett. 2003, 5, 19, 3407) yielding an allylic anion system via a concerted transition structure, in agreement with experimental outcomes. rCA is more energetically favorable along a two-stage mechanism, via an i…

chemistry.chemical_compoundIsodesmic reactionAllylic rearrangementNitrileComputational chemistryChemistryOrganic ChemistryPotential energy surfaceCleavage (embryo)Ring (chemistry)Topology (chemistry)Electron localization functionThe Journal of organic chemistry
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A molecular electron density theory study of the Lewis acid–catalyzed decomposition reaction of nitroethyl benzoate using aluminum derivatives

2019

Electron densityChemistryAluminiumOrganic ChemistryPolymer chemistrychemistry.chemical_elementLewis acids and basesPhysical and Theoretical ChemistryChemical decompositionElectron localization functionCatalysisLewis acid catalysisJournal of Physical Organic Chemistry
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Towards an Understanding of the Polar Diels–Alder Reactions of Nitrosoalkenes with Enamines: A Theoretical Study

2006

The polar Diels–Alder reactions of nitrosoalkenes with enamines have been studied using DFT methods at the B3LYP/6-31G* level of theory. These Diels–Alder reactions are characterized by a nucleophilic attack of the enamine at the conjugated position of the nitrosoalkene with concomitant ring-closure. The reactions present a total regioselectivity and a large endo selectivity. The analysis, based on the global electrophilicity of the reagents in the ground state, the natural bond orbital (NBO), and the topological analysis of the electron localization function (ELF) in the endo transition state (TS) and “halfway” along the IRC between the TS and cycloadduct, correctly explain the polar natur…

Reaction mechanismStereochemistryOrganic ChemistryRegioselectivityCycloadditionElectron localization functionEnaminechemistry.chemical_compoundNucleophilechemistryComputational chemistryElectrophilePhysical and Theoretical ChemistryNatural bond orbitalEuropean Journal of Organic Chemistry
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