Matches in SemOpenAlex for { <https://semopenalex.org/work/W2325547368> ?p ?o ?g. }
- W2325547368 endingPage "4598" @default.
- W2325547368 startingPage "4587" @default.
- W2325547368 abstract "Metal-semiconductor hybrid heteronanostructures may exhibit not only a combination of properties from the disparate components but also further enhanced property tunability and new synergistic properties that arise from the interactions between the metal and semiconductor components. Here we demonstrate that the Au–Cu2O hybrid core–shell nanoparticles not only combine the optical signatures of Cu2O nanoshells and the plasmonic properties of Au nanoparticles but exhibit further enhanced and expanded plasmonic tunability as well due to the dielectric properties of the Cu2O shells surrounding the Au cores. We have developed a robust wet chemistry approach through which we can fine-control several important geometrical parameters of the Au–Cu2O core–shell nanoparticles, such as Cu2O shell thickness, size of the Au core, and the spacing between the core and shell, to systematically and selectively fine-tune the synergistic light absorption and scattering properties of the particles over a broad spectral range across the visible and near-infrared regions. We have further performed Mie scattering theory calculations to theoretically interpret the correlation between the geometrical parameters and optical characteristics of the Au–Cu2O hybrid nanoparticles. Such optical tunability achieved through the fine-control over core and shell geometries is believed to be important to the optimization of the overall performance of hybrid heteronanostructure-based materials and/or devices for photonic, electronic, and optoelectronic applications." @default.
- W2325547368 created "2016-06-24" @default.
- W2325547368 creator A5032307099 @default.
- W2325547368 creator A5066716873 @default.
- W2325547368 creator A5067078048 @default.
- W2325547368 date "2011-09-27" @default.
- W2325547368 modified "2023-10-14" @default.
- W2325547368 title "Au–Cu<sub>2</sub>O Core–Shell Nanoparticles: A Hybrid Metal-Semiconductor Heteronanostructure with Geometrically Tunable Optical Properties" @default.
- W2325547368 cites W1512034926 @default.
- W2325547368 cites W1527653791 @default.
- W2325547368 cites W160245924 @default.
- W2325547368 cites W1666787282 @default.
- W2325547368 cites W1964270747 @default.
- W2325547368 cites W1964517246 @default.
- W2325547368 cites W1965711626 @default.
- W2325547368 cites W1972801029 @default.
- W2325547368 cites W1973271578 @default.
- W2325547368 cites W1980495221 @default.
- W2325547368 cites W1986466091 @default.
- W2325547368 cites W1989565352 @default.
- W2325547368 cites W1992099331 @default.
- W2325547368 cites W1995734581 @default.
- W2325547368 cites W2001576176 @default.
- W2325547368 cites W2004414463 @default.
- W2325547368 cites W2005857458 @default.
- W2325547368 cites W2006635432 @default.
- W2325547368 cites W2006942752 @default.
- W2325547368 cites W2009359545 @default.
- W2325547368 cites W2011679767 @default.
- W2325547368 cites W2013331738 @default.
- W2325547368 cites W2013765336 @default.
- W2325547368 cites W2017660706 @default.
- W2325547368 cites W2021311872 @default.
- W2325547368 cites W2026474708 @default.
- W2325547368 cites W2027122265 @default.
- W2325547368 cites W2029575459 @default.
- W2325547368 cites W2032553220 @default.
- W2325547368 cites W2032679587 @default.
- W2325547368 cites W2033208470 @default.
- W2325547368 cites W2033336615 @default.
- W2325547368 cites W2040697573 @default.
- W2325547368 cites W2040958578 @default.
- W2325547368 cites W2041033082 @default.
- W2325547368 cites W2041288274 @default.
- W2325547368 cites W2042319161 @default.
- W2325547368 cites W2042959110 @default.
- W2325547368 cites W2043789526 @default.
- W2325547368 cites W2045197777 @default.
- W2325547368 cites W2046350457 @default.
- W2325547368 cites W2046678194 @default.
- W2325547368 cites W2059416068 @default.
- W2325547368 cites W2061218166 @default.
- W2325547368 cites W2063688779 @default.
- W2325547368 cites W2067050542 @default.
- W2325547368 cites W2068513062 @default.
- W2325547368 cites W2069015247 @default.
- W2325547368 cites W2075243055 @default.
- W2325547368 cites W2076582133 @default.
- W2325547368 cites W2077228161 @default.
- W2325547368 cites W2077946532 @default.
- W2325547368 cites W2078093237 @default.
- W2325547368 cites W2078833116 @default.
- W2325547368 cites W2080184457 @default.
- W2325547368 cites W2083926174 @default.
- W2325547368 cites W2087551243 @default.
- W2325547368 cites W2091279318 @default.
- W2325547368 cites W2093324019 @default.
- W2325547368 cites W2099651741 @default.
- W2325547368 cites W2109102281 @default.
- W2325547368 cites W2117285213 @default.
- W2325547368 cites W2121830147 @default.
- W2325547368 cites W2132667015 @default.
- W2325547368 cites W2135308128 @default.
- W2325547368 cites W2139371071 @default.
- W2325547368 cites W2143618447 @default.
- W2325547368 cites W2145502200 @default.
- W2325547368 cites W2167002304 @default.
- W2325547368 cites W2317123354 @default.
- W2325547368 cites W2317620751 @default.
- W2325547368 cites W2324822704 @default.
- W2325547368 cites W2328150247 @default.
- W2325547368 cites W2329058435 @default.
- W2325547368 doi "https://doi.org/10.1021/cm202078t" @default.
- W2325547368 hasPublicationYear "2011" @default.
- W2325547368 type Work @default.
- W2325547368 sameAs 2325547368 @default.
- W2325547368 citedByCount "265" @default.
- W2325547368 countsByYear W23255473682012 @default.
- W2325547368 countsByYear W23255473682013 @default.
- W2325547368 countsByYear W23255473682014 @default.
- W2325547368 countsByYear W23255473682015 @default.
- W2325547368 countsByYear W23255473682016 @default.
- W2325547368 countsByYear W23255473682017 @default.
- W2325547368 countsByYear W23255473682018 @default.
- W2325547368 countsByYear W23255473682019 @default.
- W2325547368 countsByYear W23255473682020 @default.
- W2325547368 countsByYear W23255473682021 @default.
- W2325547368 countsByYear W23255473682022 @default.