Isbn: 9783319125343 - metallic butterfly wing scales: superstructures with high surface-enhancement properties for optical applications (springerbriefs in materials) (12 resultados)

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    Condición: New. In English.

  • Idioma: Inglés

    Editorial: Springer, 2014

    3319125346 / 9783319125343

    Serie: Libro 22 de 68 - SpringerBriefs in Materials

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    Librería: Books Puddle, Woodside, NY, Estados Unidos de AmericaBooks Puddle

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    Paperback. Condición: Brand New. 2015 edition. 94 pages. 9.00x6.00x0.25 inches. In Stock.

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    Idioma: Inglés

    Editorial: Springer, 2014

    3319125346 / 9783319125343

    Serie: Libro 22 de 68 - SpringerBriefs in Materials

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    Librería: preigu, Osnabrück, Alemaniapreigu

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    Taschenbuch. Condición: Neu. Metallic Butterfly Wing Scales | Superstructures with High Surface-Enhancement Properties for Optical Applications | Jiajun Gu (u. a.) | Taschenbuch | SpringerBriefs in Materials | viii | Englisch | 2014 | Springer | EAN 9783319125343 | Verantwortliche Person für die EU: Springer Verlag GmbH, Tiergartenstr. 17, 69121 Heidelberg, juergen[dot]hartmann[at]springer[dot]com | Anbieter: preigu. …

  • Idioma: Inglés

    Editorial: Palgrave Macmillan, 2014

    3319125346 / 9783319125343

    Serie: Libro 22 de 68 - SpringerBriefs in Materials

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    Condición: Sehr gut. Zustand: Sehr gut | Sprache: Englisch | Produktart: Bücher | This book presents a method for replicating natural butterfly wing scales using a variety of metals for state-of-the-art applications requiring high surface-enhancement properties. During the past decade, three dimensional (3D) sub-micrometer structures have attracted considerable attention for optical applications. These 3D subwavelength metallic structures are, however, difficult to prepare. By contrast, the 3D superstructures of butterfly wing scales, with more than 175 000 morphologies, are efficiently engineered by nature. Natural butterfly wing scales feature 3D sub-micrometer structures that are superior to many human designs in terms of structural complexity, reproducibility, and cost. Such natural wealth offers a versatile chemical route via the replication of these structures into functional metals.A single versatile chemical route can be used to produce butterfly scales in seven different metals. These synthesized structures have the potential for catalytic (Au, Pt, Pd), thermal (Ag, Au, Cu), electrical (Au, Cu, Ag), magnetic (Co, Ni), and optical (Au, Ag, Cu) applications. Plasmon-active Au, Cu, Ag butterfly scales have exhibited excellent properties in surface-enhanced Raman scattering (SERS). The Au scales as SERS substrates have ten times the analyte detection sensitivity and are one-tenth the cost of their human-designed commercial counterparts (KlariteTM). Preliminary mechanisms of these surface-enhancement phenomena are also reviewed.…

  • Idioma: Inglés

    Editorial: Palgrave Macmillan, 2014

    3319125346 / 9783319125343

    Serie: Libro 22 de 68 - SpringerBriefs in Materials

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    Librería: Buchpark, Trebbin, AlemaniaBuchpark

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    Condición: Hervorragend. Zustand: Hervorragend | Sprache: Englisch | Produktart: Bücher | This book presents a method for replicating natural butterfly wing scales using a variety of metals for state-of-the-art applications requiring high surface-enhancement properties. During the past decade, three dimensional (3D) sub-micrometer structures have attracted considerable attention for optical applications. These 3D subwavelength metallic structures are, however, difficult to prepare. By contrast, the 3D superstructures of butterfly wing scales, with more than 175 000 morphologies, are efficiently engineered by nature. Natural butterfly wing scales feature 3D sub-micrometer structures that are superior to many human designs in terms of structural complexity, reproducibility, and cost. Such natural wealth offers a versatile chemical route via the replication of these structures into functional metals.A single versatile chemical route can be used to produce butterfly scales in seven different metals. These synthesized structures have the potential for catalytic (Au, Pt, Pd), thermal (Ag, Au, Cu), electrical (Au, Cu, Ag), magnetic (Co, Ni), and optical (Au, Ag, Cu) applications. Plasmon-active Au, Cu, Ag butterfly scales have exhibited excellent properties in surface-enhanced Raman scattering (SERS). The Au scales as SERS substrates have ten times the analyte detection sensitivity and are one-tenth the cost of their human-designed commercial counterparts (KlariteTM). Preliminary mechanisms of these surface-enhancement phenomena are also reviewed.…

  • Idioma: Inglés

    Editorial: Springer, 2014

    3319125346 / 9783319125343

    Serie: Libro 22 de 68 - SpringerBriefs in Materials

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    Librería: Brook Bookstore On Demand, Napoli, NA, ItaliaBrook Bookstore On Demand

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    Condición: new. Questo è un articolo print on demand.

  • Idioma: Inglés

    Editorial: Springer, 2014

    3319125346 / 9783319125343

    Serie: Libro 22 de 68 - SpringerBriefs in Materials

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    Librería: Majestic Books, Hounslow, Reino UnidoMajestic Books

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    Editorial: Springer, 2014

    3319125346 / 9783319125343

    Serie: Libro 22 de 68 - SpringerBriefs in Materials

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  • Idioma: Inglés

    Editorial: Palgrave Macmillan, 2014

    3319125346 / 9783319125343

    Serie: Libro 22 de 68 - SpringerBriefs in Materials

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    Taschenbuch. Condición: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - This book presents a method for replicating natural butterfly wing scales using a variety of metals for state-of-the-art applications requiring high surface-enhancement properties. During the past decade, three dimensional (3D) sub-micrometer structures have attracted considerable attention for optical applications. These 3D subwavelength metallic structures are, however, difficult to prepare. By contrast, the 3D superstructures of butterfly wing scales, with more than 175 000 morphologies, are efficiently engineered by nature. Natural butterfly wing scales feature 3D sub-micrometer structures that are superior to many human designs in terms of structural complexity, reproducibility, and cost. Such natural wealth offers a versatile chemical route via the replication of these structures into functional metals.A single versatile chemical route can be used to produce butterfly scales in seven different metals. These synthesized structures have the potential for catalytic (Au, Pt, Pd), thermal (Ag, Au, Cu), electrical (Au, Cu, Ag), magnetic (Co, Ni), and optical (Au, Ag, Cu) applications. Plasmon-active Au, Cu, Ag butterfly scales have exhibited excellent properties in surface-enhanced Raman scattering (SERS). The Au scales as SERS substrates have ten times the analyte detection sensitivity and are one-tenth the cost of their human-designed commercial counterparts (KlariteTM). Preliminary mechanisms of these surface-enhancement phenomena are also reviewed. …

  • Idioma: Inglés

    Editorial: Springer International Publishing, 2014

    3319125346 / 9783319125343

    Serie: Libro 22 de 68 - SpringerBriefs in Materials

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    Condición: New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. Presents a versatile method for replicating butterfly superstructures in seven metals (Ag, Au, Co, Cu, Ni, Pd, Pt) with photonic, magnetic, electronic, thermal, and catalytic applicationsReveals the superiority of Au replicas with butterfly supers.…

  • Idioma: Inglés

    Editorial: Palgrave Macmillan, Springer Dez 2014, 2014

    3319125346 / 9783319125343

    Serie: Libro 22 de 68 - SpringerBriefs in Materials

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    Taschenbuch. Condición: Neu. This item is printed on demand - Print on Demand Titel. Neuware -This book presents a method for replicating natural butterfly wing scales using a variety of metals for state-of-the-art applications requiring high surface-enhancement properties. During the past decade, three dimensional (3D) sub-micrometer structures have attracted considerable attention for optical applications. These 3D subwavelength metallic structures are, however, difficult to prepare. By contrast, the 3D superstructures of butterfly wing scales, with more than 175 000 morphologies, are efficiently engineered by nature. Natural butterfly wing scales feature 3D sub-micrometer structures that are superior to many human designs in terms of structural complexity, reproducibility, and cost. Such natural wealth offers a versatile chemical route via the replication of these structures into functional metals.A single versatile chemical route can be used to produce butterfly scales in seven different metals. These synthesized structures have the potential for catalytic (Au, Pt, Pd), thermal (Ag, Au, Cu), electrical (Au, Cu, Ag), magnetic (Co, Ni), and optical (Au, Ag, Cu) applications. Plasmon-active Au, Cu, Ag butterfly scales have exhibited excellent properties in surface-enhanced Raman scattering (SERS). The Au scales as SERS substrates have ten times the analyte detection sensitivity and are one-tenth the cost of their human-designed commercial counterparts (KlariteTM). Preliminary mechanisms of these surface-enhancement phenomena are also reviewed.Springer-Verlag GmbH, Tiergartenstr. 17, 69121 Heidelberg 104 pp. Englisch. …