Search results for " cucurbituril"

showing 3 items of 3 documents

Materiali ibridi a base di nanotubi di allosite per la rimozione d’inquinanti

2017

L’allosite (HNT) è un interessante materiale argilloso allumino-silicato naturale, non tossico e biocompatibile, con la caratteristica forma tubolare cava dotata di parziale carica positiva interna e negativa esterna.Combinando le peculiarità di un composto organico con le proprietà di un materiale inorganico, è possibile ottenere sistemi ibridi organici–inorganici con interessanti proprietà e vasti campi di applicazione. Sono un esempio delle “nanospugne” capaci di adsorbire efficacemente potenziali inquinanti. In questo contesto sono stati preparati, dei materiali ibridi “spugna” costituiti da unità ciclodestriniche e allosite e ancora un sistema ibrido HNT-Cucurbit[8]uril. Il primo possi…

Allosite ciclodestrine cucurbituril nanospugne materiali ibridi rimozione di inquinantiSettore CHIM/06 - Chimica OrganicaSettore CHIM/02 - Chimica Fisica
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Nanocomposite based on Multi-Macrocyclic Receptors and Halloysite for Volatile Organic Compounds Capture

2015

Volatile organic compounds (VOCs) are chemicals released to the atmosphere by natural and anthropogenic sources. VOCs are hazardous air pollutants and promote formation of photochemical smog. Variety of chemicals released from pharmaceutical industry includes priority pollutants like benzene, toluene, and dichloromethane. The aim of this work was at designing, preparing and characterizing from the physico-chemical view-point a pseudo nano-sponge with low environmental impact for pollutant removal. As adsorbent material, a nanocomposite based on nanoclay and cucurbiturils, which are biocompatible materials, were investigated. Clay minerals (e.g. montmorillonite and kaolin) are important comp…

Settore CHIM/06 - Chimica Organicahalloysite cucurbiturilSettore CHIM/02 - Chimica Fisica
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Binding abilities of new cyclodextrin-cucurbituril supramolecular hosts

2015

Various combined techniques (UV–vis spectrophotometry, isothermal titration calorimetry, thermogravimetry, ESI-MS mass spectrometry, polarimetry and 1H NMR spectroscopy) were used in order to study the interaction between a new combined supramolecular host, namely a bow-tie-structured cyclodextrin–cucurbituril association solely held by non-covalent interactions, and a suitably selected guest, namely the N-(p-nitrophenyl)-1,8-diaminooctane hydrochloride. In particular, the use of different techniques highlighted the peculiar features of the possible host–guest supramolecular interactions under different concentration conditions.

chemistry.chemical_classificationcucubiturilCyclodextrinsmedicine.diagnostic_testCyclodextrinHydrochloridecucurbiturilsSupramolecular chemistryIsothermal titration calorimetryGeneral ChemistrySettore CHIM/06 - Chimica OrganicaMass spectrometrycucurbiturilThermogravimetryCrystallographychemistry.chemical_compoundcyclodextrinchemistryComputational chemistryCucurbiturilSpectrophotometrymedicinecucurbiturils; Cyclodextrins; supramolecular co-polymerssupramolecular co-polymerscyclodextrins; cucurbiturils; supramolecular co-polymers
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