Search results for "Fuller"

showing 10 items of 203 documents

DLPNO-CCSD(T) scaled methods for the accurate treatment of large supramolecular complexes

2017

In this work, we present scaled variants of the DLPNO-CCSD(T) method, dubbed as (LS)DLPNO-CCSD(T) and (NS)DLPNO-CCSD(T), to obtain accurate interaction energies in supramolecular complexes governed by noncovalent interactions. The novel scaled schemes are based on the linear combination of the DLPNO-CCSD(T) correlation energies calculated with the standard (LoosePNO and NormalPNO) and modified (Loose2PNO and Normal2PNO) DLPNO-CCSD(T) accuracy levels. The scaled DLPNO-CCSD(T) variants provide nearly TightPNO accuracy, which is essential for the quantification of weak noncovalent interactions, with a noticeable saving in computational cost. Importantly, the accuracy of the proposed schemes is…

chemistry.chemical_classificationFullerene010304 chemical physicsDispersion forcesNoncovalent interactionsSupramolecular chemistryGeneral Chemistry010402 general chemistry01 natural sciencesLondon dispersion force0104 chemical sciencesComputational MathematicsCrystallographychemistryComputational chemistryAb initio quantum chemistry methods0103 physical sciencesNon-covalent interactionsDLPNO-CCSD(T) scaled methodsDonor–acceptor supramolecular complexesAb initio calculationsQuímica FísicaLinear combination
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Mimicking photosynthesis: covalent [60]fullerene-based donor–acceptor ensembles

2004

Abstract Within the context of exploring photophysical properties of [60]fullerene-based donor–acceptor ensembles, we highlight in this contribution an approach towards the synthesis of a novel series of donor-bridge-acceptor, C 60 –wire– ex TTF , ensembles that incorporate p -phenylenevinylene oligomers, in which the conjugation length has been systematically increased, as bridges that connect π-extended tetrathiafulvalenes (exTTF) (electron donor) with [60]fullerene (electron acceptor). This molecular design allows probing the effects of distance and rate, at which electron transfer processes occur, as well as the molecular-wire behavior of the oligo-PPV fragments.

chemistry.chemical_classificationFullereneChemistryMechanical EngineeringMetals and AlloysContext (language use)Electron donorSettore CHIM/06 - Chimica OrganicaElectron acceptorCondensed Matter PhysicsPhotochemistryPhotoinduced electron transferElectronic Optical and Magnetic MaterialsMolecular wireElectron transferchemistry.chemical_compoundFullerene derivativesMechanics of MaterialsMaterials ChemistryTetrathiafulvaleneSynthetic Metals
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DFT study of the interaction free energy of p–p complexes of fullerenes with buckybowls and viologen dimers

2011

We present a theoretical investigation, by means of DFT protocols, of the complexation thermodynamics of (i) complexes of C70 and C60 fullerenes with bowl-shaped hexabenzocoronene derivatives and (ii) complexes of C60 with viologen dimers. The recent functionals of the M06 family, accounting for p-p interactions to a good level of approximation, have been used to calculate the interaction free energies. For the former complexes, the good agreement between the calculated results and the experimental data confirms the reliability of the protocol used. On these grounds, we then checked the stability of a series of complexes of C60 with some viologen dimers, 1BPnBP1 (n = 6-9), where two N-methy…

chemistry.chemical_classificationFullereneChemistryfullereneCationic polymerizationViologenGeneral ChemistryDFTCatalysisviologen dimerschemistry.chemical_compoundbuckybowlHexabenzocoroneneChain (algebraic topology)Computational chemistryMaterials ChemistrymedicineFree energiesMolecular tweezersAlkylmedicine.drugSettore CHIM/02 - Chimica Fisica
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Cyclodextrin-[60]fullerene conjugates: synthesis, characterization, and electrochemical behavior

2006

Three different functionalized β-cyclodextrins (β-CDs) bearing the C60 moiety linked covalently have been prepared in good yields by reaction between the parent β-CD and [60]fullerene via 1,3-dipolar cycloaddition. These compounds have been fully spectroscopically characterized and their electrochemical behavior has been investigated. Surprisingly, the electrochemical properties of the C60 cage remain unaltered even after chemical functionalization, making these systems very appealing as supramolecular hosts for electron-transfer processes.

chemistry.chemical_classificationFullereneCyclodextrinOrganic ChemistrySupramolecular chemistrySettore CHIM/06 - Chimica OrganicaElectrochemistrycyclodextrin fullereneBiochemistryCombinatorial chemistryCycloadditionchemistryCovalent bondDrug Discovery13-Dipolar cycloadditionOrganic chemistryMoiety
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Design, synthesis and photovoltaic properties of [60]fullerene based molecular materials

2005

Abstract The possibility to use new organic semiconductor materials, in place of silicon wafers, in the fabrication of photovoltaic devices on substrates offer the prospect of lower manufacturing costs, particularly for large area applications. Thus, one of the most promising areas in fullerene research involves its potential application, mixed with conjugated polymers, in mimicking photosynthesis and in the related solar energy conversion. The tendency to phase segregation in blends of C60 derivatives and conjugated polymers has to be optimized to improve both charge photogeneration and transport in photovoltaic devices. In order to optimize device performances, a great deal of work has be…

chemistry.chemical_classificationFullereneFabricationMaterials scienceOrganic solar cellPhotovoltaic systemphotovoltaic devicesBioengineeringNanotechnologyPolymerSettore CHIM/06 - Chimica OrganicaConjugated systemBiomaterialsOrganic semiconductorchemistryMechanics of Materialsfullerene derivativesWafer
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Understanding the affinity of bis-exTTF macrocyclic receptors towards fullerene recognition

2019

A new series of fullerene receptors based on exTTF macrocycles with alkyl ether chains of increasing length is reported. The novel macrocyclic receptors are able to favourably interact with fullerene C60 through a synergistic combination of π–π, CH⋯π and n⋯π noncovalent interactions. We identify that the highest affinity towards C60 recognition is achieved for the host with the tightest fit; that is, the smallest receptor with a cavity large enough to host the buckyball inside (log Ka = 5.2 in chlorobenzene at 298 K). However, besides this expected observation, theoretical calculations evidence that the most stable self-assembling configuration corresponds for all the receptors to an outsid…

chemistry.chemical_classificationFullereneGeneral Physics and Astronomy02 engineering and technologySynergistic combination010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences3. Good health0104 chemical sciencesAlkyl etherchemistry.chemical_compoundCrystallographychemistryChlorobenzeneNon-covalent interactionsPhysical and Theoretical Chemistry0210 nano-technologyReceptorPhysical Chemistry Chemical Physics
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Fullerene-Containing Polymers: An Overview

2009

chemistry.chemical_classificationFullereneMaterials sciencePolymer sciencechemistryFullerene Polymers MacromoleculesPolymerSettore CHIM/06 - Chimica OrganicaMacromolecule
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Synthesis of a Fullerene Derivative of Benzo[18]crown-6 byDiels-Alder Reaction: Complexation Ability, Amphiphilic Properties, and X-Ray Crystal Struc…

1993

A fullerene derivative 1 of benzo[18]crown-6 was obtained by Diels-Alder addition of fullerene[60](C60) to the ortho-quinodimethane prepared in situ from 4,5-bis(bromomethyl)benzo[18]crown-6 (3) with Bu4NI in toluene. Extraction experiments show that the complexation of K+ ions strongly increases the solubility of 1 in protic solvents like MeOH. Using Langmuir-Blodgett techniques, monolayers of the highly amphiphilic fullerene-derived crown ether 1 and its K+ ion complex were prepared. An X-ray crystal structure was obtained from a benzene clathrate of comparison compound 2, synthesized by Diels-Alder reaction of C60 with the ortho-quinodimethane derived from 1,2-bis(bromomethyl)-4,5-dimeth…

chemistry.chemical_classificationFullereneOrganic Chemistry18-Crown-6Crystal structureBiochemistryTolueneCatalysisInclusion compoundInorganic Chemistrychemistry.chemical_compoundBuckminsterfullerenechemistryDrug DiscoveryPolymer chemistryOrganic chemistryPhysical and Theoretical ChemistryCrown etherDerivative (chemistry)Helvetica Chimica Acta
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Electronic communication through pi-conjugated wires in covalently linked porphyrin/C60 ensembles

2005

Novel photo- and electroactive triads, in which pi-conjugated p-phenylenevinylene oligomers (oPPVs) of different length are connected to a photoexcited-state electron donor (i.e., zinc tetraphenylporphyrin) and an electron acceptor (i.e., C(60)), were designed, synthesized, and tested as electron-transfer model systems. A detailed physicochemical investigation, concentrating mainly on long-range charge separation and charge recombination and kinetics, revealed small attenuation factors beta of 0.03+/-0.005 A(-1). Energy matching between the HOMO levels of C(60) and oPPVs emerged as a key parameter for supporting molecular-wire-like behavior: It favors rapid and efficient electron or hole in…

chemistry.chemical_classificationFullereneOrganic ChemistryElectron donorGeneral ChemistrySettore CHIM/06 - Chimica OrganicaElectron acceptorConjugated systemPhotochemistryPorphyrinCatalysisElectron transferMolecular wirechemistry.chemical_compoundchemistryCovalent bondFullerene derivatives
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Solution-processed bi-layer polythiophene–fullerene organic solar cells

2013

An ionic polymer based on a polythiophene backbone with appended imidazolium moieties was successfully implemented as a donor material in fully solution-processed efficient bi-layer solar cells prepared by the low impact meniscus coating technique. High fill factors and device reproducibility were obtained, even for ultrathin polymer layers, indicating excellent film formation properties and good compatibility with solution processing techniques. The possibility of smooth counter ion exchange, allowing solubility modification and efficiency tuning, enables exploration of new functionalities and other device architectures.

chemistry.chemical_classificationMaterials scienceFullereneOrganic solar cellGeneral Chemical EngineeringIonic bondingNanotechnologyGeneral ChemistryPolymerengineering.materialchemistry.chemical_compoundchemistryCoatingengineeringPolythiopheneSolubilityCounterionRSC Advances
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