Matches in SemOpenAlex for { <https://semopenalex.org/work/W2052002928> ?p ?o ?g. }
- W2052002928 endingPage "269" @default.
- W2052002928 startingPage "259" @default.
- W2052002928 abstract "Structural, electronic and dielectric properties of free standing ultrathin nanowires of noble metals (Cu, Ag, Au and Pt) in linear, dimer, ladder and zigzag topologies have been studied by using ab initio density functional theory. Among the studied topologies of all the noble metals, ladder topology has been found most stable while the dimer topology was least stable. The ballistic conductance of all the studied wires except Pt wires, has been found to be topology dependent. The dielectric properties of the studied nanowires have been found to be significantly different from their bulk counterparts. A prominent peak structure in imaginary part of dielectric function (ϵ2), which reveals interband transitions in electronic band structure, has been found between 0.5 and 2.0 eV for linear, dimer topologies of Cu and Au wires along with all the topologies of Pt wires. The reflectance edge of different topologies of all the nanowires except ladder topology of Pt, has been found in infrared region, therefore, shows perfect reflectivity in the infrared region and makes them non-absorbing transparent conductors to the visible region. The ultrathin transparent conductors may find many useful applications in the optoelectronic devices." @default.
- W2052002928 created "2016-06-24" @default.
- W2052002928 creator A5029353019 @default.
- W2052002928 creator A5053123070 @default.
- W2052002928 creator A5077263025 @default.
- W2052002928 date "2012-09-01" @default.
- W2052002928 modified "2023-09-30" @default.
- W2052002928 title "Ab initio study of structural, electronic and dielectric properties of free standing ultrathin nanowires of noble metals" @default.
- W2052002928 cites W1629365489 @default.
- W2052002928 cites W1647346761 @default.
- W2052002928 cites W1944448582 @default.
- W2052002928 cites W1969613334 @default.
- W2052002928 cites W1970047818 @default.
- W2052002928 cites W1973397546 @default.
- W2052002928 cites W1974236714 @default.
- W2052002928 cites W1977595307 @default.
- W2052002928 cites W1977966396 @default.
- W2052002928 cites W1979465550 @default.
- W2052002928 cites W1987416224 @default.
- W2052002928 cites W1994007060 @default.
- W2052002928 cites W1995191957 @default.
- W2052002928 cites W2000388074 @default.
- W2052002928 cites W2007302623 @default.
- W2052002928 cites W2007515676 @default.
- W2052002928 cites W2007526875 @default.
- W2052002928 cites W2009005883 @default.
- W2052002928 cites W2009082914 @default.
- W2052002928 cites W2010222038 @default.
- W2052002928 cites W2015252370 @default.
- W2052002928 cites W2015367452 @default.
- W2052002928 cites W2015914886 @default.
- W2052002928 cites W2016168218 @default.
- W2052002928 cites W2024512423 @default.
- W2052002928 cites W2027361466 @default.
- W2052002928 cites W2033545387 @default.
- W2052002928 cites W2037857465 @default.
- W2052002928 cites W2045596260 @default.
- W2052002928 cites W2059740283 @default.
- W2052002928 cites W2063700075 @default.
- W2052002928 cites W2063819694 @default.
- W2052002928 cites W2064240847 @default.
- W2052002928 cites W2065478760 @default.
- W2052002928 cites W2065646771 @default.
- W2052002928 cites W2074398802 @default.
- W2052002928 cites W2075385768 @default.
- W2052002928 cites W2076972285 @default.
- W2052002928 cites W2082812831 @default.
- W2052002928 cites W2082986330 @default.
- W2052002928 cites W2084885028 @default.
- W2052002928 cites W2091166549 @default.
- W2052002928 cites W2103213945 @default.
- W2052002928 cites W2110808694 @default.
- W2052002928 cites W2128604042 @default.
- W2052002928 cites W2130773209 @default.
- W2052002928 cites W2163202592 @default.
- W2052002928 cites W2165570339 @default.
- W2052002928 cites W2963583432 @default.
- W2052002928 cites W3104001197 @default.
- W2052002928 cites W1982181466 @default.
- W2052002928 doi "https://doi.org/10.1016/j.physe.2012.09.032" @default.
- W2052002928 hasPublicationYear "2012" @default.
- W2052002928 type Work @default.
- W2052002928 sameAs 2052002928 @default.
- W2052002928 citedByCount "25" @default.
- W2052002928 countsByYear W20520029282013 @default.
- W2052002928 countsByYear W20520029282014 @default.
- W2052002928 countsByYear W20520029282015 @default.
- W2052002928 countsByYear W20520029282016 @default.
- W2052002928 countsByYear W20520029282017 @default.
- W2052002928 countsByYear W20520029282018 @default.
- W2052002928 countsByYear W20520029282019 @default.
- W2052002928 countsByYear W20520029282020 @default.
- W2052002928 countsByYear W20520029282022 @default.
- W2052002928 countsByYear W20520029282023 @default.
- W2052002928 crossrefType "journal-article" @default.
- W2052002928 hasAuthorship W2052002928A5029353019 @default.
- W2052002928 hasAuthorship W2052002928A5053123070 @default.
- W2052002928 hasAuthorship W2052002928A5077263025 @default.
- W2052002928 hasConcept C114614502 @default.
- W2052002928 hasConcept C120665830 @default.
- W2052002928 hasConcept C121332964 @default.
- W2052002928 hasConcept C133386390 @default.
- W2052002928 hasConcept C147597530 @default.
- W2052002928 hasConcept C152365726 @default.
- W2052002928 hasConcept C158355884 @default.
- W2052002928 hasConcept C171250308 @default.
- W2052002928 hasConcept C184720557 @default.
- W2052002928 hasConcept C185592680 @default.
- W2052002928 hasConcept C191897082 @default.
- W2052002928 hasConcept C192271897 @default.
- W2052002928 hasConcept C192562407 @default.
- W2052002928 hasConcept C2524010 @default.
- W2052002928 hasConcept C26873012 @default.
- W2052002928 hasConcept C2775871042 @default.
- W2052002928 hasConcept C2781442258 @default.
- W2052002928 hasConcept C33923547 @default.
- W2052002928 hasConcept C49040817 @default.
- W2052002928 hasConcept C544153396 @default.