Search results for "HYBRIDS"

showing 6 items of 46 documents

IMPROVED STABILITY OF GRAPHENE OXIDE-SILICA NANOHYBRIDS AND RELATED POLYMER-BASED NANOCOMPOSITES

2014

Although its promising properties make the graphene oxide (GO) very interesting as filler for polymer matrices, some problems related to its thermal stability in the region which ranges from 80 to 200 °C, are crucial for the possibility to melt process GO together with practically all the polymers [1,2]. Moreover, above 100 °C GO lamellae were found to become stacked. In this work, two different ways to preserve the GO structure and ensure its dispersion within different polymer matrices have been investigated and schematized in Fig. 1. Exfoliation plays a key-role in the achievement of good mechanical properties since it preserves the GO from both stacking phenomena. The capability of sili…

graphene oxide nanosilica nanohybrids thermal treatment melt processing.
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Facile and novel synthesis of Graphene oxide/Silica nanohybrids with tunable properties

2013

graphene oxide silica nanohybrids PL
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Novedades sobre taxonomía y nomenclatura de híbridos vasculares españoles

1990

The nomenclature of some Iberian hybrids is revised and several new combinations are proposed: <i>Centaurea X subdecurrens</i> var. segobricensis, C.</i> X <i>subdecurrens</i> notbosubsp. <i>albuferae, Cistus</i> X <i>hybridus</i> nothosubsp. <i>grandiflorus</i> var. <i>secallianus. C.</i> X <i>ledon</i> var. <i>recognitus, C. </i>X <i>nigricans</i> var. <i>longifolius, C.</i> X <i>nigricans</i> nothosubsp. <i>grosii</i> and <i>Onopordum</i> X <i>humile</i> var. <i>turolensis</i>. Besides, a new nothosubspec…

hybridsbiologyOnopordumZoologyPlant Sciencebiology.organism_classificationlcsh:QK1-989taxonomylcsh:Biology (General)Centaurealcsh:BotanyBotánicaCistusBotanySideritisnomenclatureTaxonomy (biology)lcsh:QH301-705.5NomenclatureIberian PeninsulaHybridCollectanea Botanica
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An Updated Review on the Synthesis and Antibacterial Activity of Molecular Hybrids and Conjugates Bearing Imidazole Moiety

2020

The rapid growth of serious infections caused by antibiotic resistant bacteria, especially the nosocomial ESKAPE pathogens, has been acknowledged by Governments and scientists and is one of the world’s major health problems. Various strategies have been and are currently investigated and developed to reduce and/or delay the bacterial resistance. One of these strategies regards the design and development of antimicrobial hybrids and conjugates. This unprecedented critical review, in which our continuing interest in the synthesis and evaluation of the bioactivity of imidazole derivatives is testified, aims to summarise and comment on the results obtained from the end of the 1900s until Februa…

imidazoles molecular hybrids molecular conjugates antibacterials antibiotic resistance synthesis bioactivity antibioticsantibiotic resistancesynthesismedicine.drug_classAntibioticsPharmaceutical ScienceReviewMicrobial Sensitivity Tests010402 general chemistry01 natural sciencesantibioticsAnalytical Chemistrylcsh:QD241-441chemistry.chemical_compoundAntibiotic resistancelcsh:Organic chemistryDrug DiscoveryDrug Resistance BacterialmedicineImidazoleMoietyPhysical and Theoretical Chemistryantibacterialsmolecular conjugatesBacteria010405 organic chemistrymolecular hybridsOrganic ChemistryImidazolesSettore CHIM/06 - Chimica OrganicaBacterial InfectionsAntimicrobialCombinatorial chemistrySettore CHIM/08 - Chimica Farmaceutica0104 chemical sciencesAnti-Bacterial AgentschemistryChemistry (miscellaneous)bioactivityMolecular MedicineAntibacterial activityLinkerConjugateMolecules
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Ultrafast Interface Charge Separation in Carbon Nanodot-Nanotube Hybrids

2021

Carbon dots are an emerging family of zero-dimensional nanocarbons behaving as tunable light harvesters and photoactivated charge donors. Coupling them to carbon nanotubes, which are well-known electron acceptors with excellent charge transport capabilities, is very promising for several applications. Here, we first devised a route to achieve the stable electrostatic binding of carbon dots to multi- or single-walled carbon nanotubes, as confirmed by several experimental observations. The photoluminescence of carbon dots is strongly quenched when they contact either semiconductive or conductive nanotubes, indicating a strong electronic coupling to both. Theoretical simulations predict a favo…

pump probe spectroscopyNanotubeMaterials scienceCarbon nanotubeschemistry.chemical_elementCarbon nanotubeCarbon nanodotsPhotoinduced electron transferlaw.inventionCondensed Matter::Materials ScienceElectron transferlawUltrafast laser spectroscopyGeneral Materials Sciencecarbon nanodotsNATURAL sciences & mathematicsCarbon nanohybridschemistry.chemical_classificationcarbon nanotubesbusiness.industryElectron acceptorCondensed Matter::Mesoscopic Systems and Quantum Hall EffectPump probe spectroscopyUltrafast electron transferultrafast electron transferchemistrycarbon nanohybridsOptoelectronicsddc:500NanodotbusinessCarbonResearch Article
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Models and methods for space and space-time interactions in complex point processes with applications on earthquakes

spatial covariatespatial point processeearthquakes; hybrids of Gibbs point processes; spatial covariates; spatial point processes; hypothesis testing; local indicators of spatio-temporal association; permutation-based tests; second-order product density function; log-Gaussian Cox process; spatial anisotropy; spatio-temporal point process; clustering detectionlog-Gaussian Cox proceearthquakehybrids of Gibbs point processehypothesis testinglocal indicators of spatio-temporal associationpermutation-based testspatial anisotropysecond-order product density functionspatio-temporal point proceSettore SECS-S/01 - Statisticaclustering detection
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