Show simple item record

dc.contributor.authorCavaliere, Sara*
dc.contributor.authorMacagnano, Antonella*
dc.contributor.authorDe Cesare, Fabrizio*
dc.date.accessioned2021-02-11T11:12:39Z
dc.date.available2021-02-11T11:12:39Z
dc.date.issued2020*
dc.date.submitted2020-06-09 16:38:57*
dc.identifier46076*
dc.identifier.urihttps://directory.doabooks.org/handle/20.500.12854/44811
dc.description.abstractDue to their unique size-dependent physicochemical properties, nanostructured thin films are used in a wide range of applications from smart coating and drug delivery to electrocatalysis and highly-sensitive sensors. Depending on the targeted application and the deposition technique, these materials have been designed and developed by tuning their atomic-molecular 2D- and/or 3D-aggregation, thickness, crystallinity, and porosity, having effects on their optical, mechanical, catalytic, and conductive properties. Several open questions remain about the impact of nanomaterial production and use on environment and health. Many efforts are currently being made not only to prevent nanotechnologies and nanomaterials from contributing to environmental pollution but also to design nanomaterials to support, control, and protect the environment. This Special Issue aims to cover the recent advances in designing nanostructured films focusing on environmental issues related to their fabrication processes (e.g., low power and low cost technologies, the use of environmentally friendly solvents), their precursors (e.g., waste-recycled, bio-based, biodegradable, and natural materials), their applications (e.g., controlled release of chemicals, mimicking of natural processes, and clean energy conversion and storage), and their use in monitoring environment pollution (e.g., sensors optically- or electrically-sensitive to pollutants)*
dc.languageEnglish*
dc.subjectT1-995*
dc.subject.classificationthema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issuesen_US
dc.subject.otherpolyhydroxibutyrate*
dc.subject.othergraphene oxide*
dc.subject.othernanostructured films*
dc.subject.otheriridescence*
dc.subject.othercarbon nanotube*
dc.subject.othercorrosion*
dc.subject.otherbiomaterial*
dc.subject.otherpowders*
dc.subject.otheradsorption energy*
dc.subject.otherUPD*
dc.subject.otherplasma irradiation*
dc.subject.othermetallic nanoparticles*
dc.subject.otherSTM*
dc.subject.othernanospiral*
dc.subject.otherPA-PVD*
dc.subject.otherlight trapping*
dc.subject.otherruthenium*
dc.subject.otheraqueous dispersion*
dc.subject.otherDFT*
dc.subject.othermonomer synthesis*
dc.subject.otherultrathin films*
dc.subject.othergalvanic displacement*
dc.subject.otherquantum confinement*
dc.subject.otherrod coating*
dc.subject.othernanocomposite conductive polymers*
dc.subject.othernanocrystalline cellulose*
dc.subject.otherphase transition performance*
dc.subject.otherLa2O3 passivation layer*
dc.subject.otherinterfacial energy*
dc.subject.otherlamination*
dc.subject.otherlysozyme*
dc.subject.othernanofibrous membranes*
dc.subject.otherH2TPP*
dc.subject.otherpoly(dimethylacrylamide)*
dc.subject.otheriron oxides*
dc.subject.otherwater filtration*
dc.subject.otherhybrid deposition system*
dc.subject.otherPt thin deposits*
dc.subject.otherreinforced*
dc.subject.otherwires*
dc.subject.otherself-assembly*
dc.subject.othercomposite gel*
dc.subject.otherelectron–phonon coupling*
dc.subject.otherbarrier material*
dc.subject.otherPAS device*
dc.subject.otherhydrogel*
dc.subject.othernanoscratch*
dc.subject.otherthin film*
dc.subject.otherpolymeric matrix*
dc.subject.otherSEM*
dc.subject.othersilver*
dc.subject.othersputtering*
dc.subject.otheroptical transmittance*
dc.subject.otherwound dressing*
dc.subject.otheragarose*
dc.subject.otherXPEEM*
dc.subject.otherCERAMIS®*
dc.subject.otherhighly oriented pyrolytic graphite*
dc.subject.otherFeO*
dc.subject.otherRaman scattering*
dc.subject.othermodel system*
dc.subject.otherXPS*
dc.subject.otherphotocatalysis*
dc.subject.otherphotovoltaics*
dc.subject.otheratomic layer deposition*
dc.subject.otherchirality*
dc.subject.otherstructural characterization*
dc.subject.otherpolystyrene*
dc.subject.othernanofiber*
dc.subject.other2D growth*
dc.subject.othernanostructure*
dc.subject.otherbiomedical*
dc.subject.otherVOCs selectivity*
dc.subject.othersilicon thin film*
dc.subject.otherelectrodeposition*
dc.subject.otherelectrocatalysis*
dc.subject.otherSLRR*
dc.subject.otherchemosensor*
dc.subject.otherCaxCoO2*
dc.subject.otherspin coating*
dc.subject.othernanocomposites*
dc.subject.otherAl2O3*
dc.subject.othermetal-organic framework*
dc.subject.othernanocoating of SiOx*
dc.subject.otherplatinum*
dc.subject.othersymmetry*
dc.subject.otherPECVD*
dc.subject.otherthermal analysis*
dc.subject.otherfirst-principles calculation*
dc.subject.otherelectrical properties*
dc.subject.otherbiomimetic solvent sensors*
dc.subject.othermodulation structure*
dc.subject.othernanofibers*
dc.subject.othermercury vapors adsorbing layer*
dc.subject.otherhydrogenated amorphous carbon films*
dc.subject.otherphase transformation*
dc.subject.otherbirefringence*
dc.subject.othernanostructured back reflectors*
dc.subject.othermesoporous*
dc.subject.othersilk sericin*
dc.subject.otherpolymer nanoparticles*
dc.subject.otherLEEM*
dc.subject.otherSorpTest*
dc.subject.otherInAlN*
dc.subject.othermetamaterial*
dc.subject.othermicroparticle deposition*
dc.subject.otherCdTe*
dc.subject.otherhomogeneity*
dc.subject.otherluminous transmittance*
dc.subject.otherLDH*
dc.subject.otherhybrid material*
dc.subject.otherscaffolds*
dc.subject.otherMgO*
dc.subject.otherpolystyrene sphere assisted lithography*
dc.subject.otherGe surface engineering*
dc.subject.otherepitaxial growth*
dc.subject.otherAuNPs*
dc.subject.otherKr physisorption*
dc.subject.otherplasma deposition*
dc.subject.otherReB2/TaN multilayers*
dc.subject.othervanadium dioxide*
dc.subject.otherFIB*
dc.subject.othermask*
dc.subject.otherself-catalysed*
dc.subject.othermesoporous graphene*
dc.subject.othercoating*
dc.subject.otherpost-treatment*
dc.subject.otherMg alloy*
dc.subject.otherphotonic nanostructures*
dc.subject.otherink*
dc.subject.otherdeposition*
dc.subject.otherMueller matrix*
dc.subject.otherelectrospinning deposition*
dc.subject.otherpolar semiconductors*
dc.subject.otherzinc oxide*
dc.subject.otherthin films*
dc.subject.otherFe3O4*
dc.subject.otherTiO2NPs*
dc.subject.othermechanical flexibility*
dc.subject.otherhazardous organic solvents*
dc.subject.otherpermeation*
dc.subject.otherinterfacial model*
dc.subject.othermicroscopy*
dc.subject.otherLEED*
dc.subject.otherelectrical conductivity*
dc.subject.otherPVD*
dc.titleDesign and Development of Nanostructured Thin Films*
dc.typebook
oapen.identifier.doi10.3390/books978-3-03928-739-0*
oapen.relation.isPublishedBy46cabcaa-dd94-4bfe-87b4-55023c1b36d0*
oapen.relation.isbn9783039287390*
oapen.relation.isbn9783039287383*
oapen.pages386*
oapen.edition1st*


Files in this item

FilesSizeFormatView

There are no files associated with this item.

This item appears in the following Collection(s)

Show simple item record

https://creativecommons.org/licenses/by-nc-nd/4.0/
Except where otherwise noted, this item's license is described as https://creativecommons.org/licenses/by-nc-nd/4.0/