About: Structure-Performance Studies on Metal Oxide Single Crystal and Thin-film Surfaces: Model Catalyst     Goto   Sponge   NotDistinct   Permalink

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Description
  • The science and technology objective of this project is to use a common platform of knowledge, and advanced experimental and theoretical approaches from surface science and heterogeneous catalysis to systematically explore and define relationships between nanoscale structure and reactivity. Selected functional metal (i.e. Ce, Sn, Ti, ...) oxide surfaces, both clean and decorated with metallic nanostructures (e.g. Au, Cu, Pd, ...), and related systems will be investigated. For the oxides, both single crystals and highly oriented ultra thin-films will be employed. Theoretical modelling will include Monte Carlo calculations of crystal growth, and first-principles calculations of the electronic structure of clusters and of their interaction with the oxide substrates.Primarily, the project will deliver fundamental nanoscale data on the structure and reactivity of model nanostructured catalyst/sensor systems. The proposed project will provide insight into the structure and reactivity of model metal/oxide (en)
  • Systematický výzkum vztahů mezi nanometrovými kovovými strukturami deponovanými na funkčních oxidech kovů a jejich reaktivitou doplněný teoretickými výpočty elektronové struktury.
Title
  • Structure-Performance Studies on Metal Oxide Single Crystal and Thin-film Surfaces: Model Catalyst (en)
  • Studium struktury a vlastností monokrystalických povrchů oxidu kovů a tenkých vrstev: modelové katalyzátory.
skos:notation
  • ME08056
http://linked.open...avai/cep/aktivita
http://linked.open...kovaStatniPodpora
http://linked.open...ep/celkoveNaklady
http://linked.open...datumDodatniDoRIV
http://linked.open...i/cep/druhSouteze
http://linked.open...ep/duvernostUdaju
http://linked.open.../cep/fazeProjektu
http://linked.open...ai/cep/hlavniObor
http://linked.open...hodnoceniProjektu
http://linked.open...vai/cep/kategorie
http://linked.open.../cep/klicovaSlova
  • surface science; model catalyst; nanoscale structure reactivity; CeO2; SnO2; surface alloys; metal substrate interaction (en)
http://linked.open...ep/partnetrHlavni
http://linked.open...inujicichPrijemcu
http://linked.open...cep/pocetPrijemcu
http://linked.open...ocetSpoluPrijemcu
http://linked.open.../pocetVysledkuRIV
http://linked.open...enychVysledkuVRIV
http://linked.open...lneniVMinulemRoce
http://linked.open.../prideleniPodpory
http://linked.open...iciPoslednihoRoku
http://linked.open...atUdajeProjZameru
http://linked.open.../vavai/cep/soutez
http://linked.open...usZobrazovaneFaze
http://linked.open...ai/cep/typPojektu
http://linked.open...ep/ukonceniReseni
http://linked.open.../cep/vedlejsiObor
http://linked.open...ep/zahajeniReseni
http://linked.open...jektu+dodavatelem
  • V rámci projektu byly vyvinuty postupy přípravy vrstev CeO2 magnetronovým naprašováním, publikované ve 3 publikacích. Práce byly rovněž zaměřeny na přípravu vrstev WO3 (2 publikace) a na interakci Pt s CeO2 a CeO2(111) se substraty Cu(111) (2 publikace) a s C (1 publikace). (cs)
  • A method of magnetron sputtering deposition of ceria film was developed. The results were published in 3 papers. New methods of preparation of porous WO3 oxide films was described in 2 papers. DFT study of interaction of ceria with Cu(111) was published in 2 papers . We also investigated interaction of plasma with carbon supported ceria films (1 paper). (en)
http://linked.open...tniCyklusProjektu
http://linked.open.../cep/klicoveSlovo
  • surface science
  • CeO2
  • SnO2
  • model catalyst
  • nanoscale structure reactivity
  • surface alloys
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