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Zinc Oxide Nanocrystalline Thin Films: Dye sensitized Solar Cells - Chemical Synthesis of Zinc Oxide: Solar Cells
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Zinc Oxide Nanocrystalline Thin Films: Dye sensitized Solar Cells - Chemical Synthesis of Zinc Oxide: Solar Cells - Taschenbuch

2012, ISBN: 9783659116568

[ED: Taschenbuch / Paperback], [PU: LAP Lambert Academic Publishing], Zinc oxide (ZnO) is a iconic semiconductor oxide due to its wide direct band gap of 3.3 eV and large exciton binding energy of 60 meV at room temperature, high electron mobility (155 cm2.V-1.S-1), ZnO is recognized as a promising optoelectronic material in the blue-ultraviolet (UV) region and an excellent candidate for a dye-sensitized oxide semiconductor solar cell and field emitter. By controlling the reaction conditions during heterogeneous deposition of ZnO from aqueous solutions, tunable nanostructures have been readily fabricated. The potential application of nanomaterials depends on the shape of nanostructure, and controlled morphology can modulate the properties of nanomaterials. Hierarchical ZnO nanostructures reported here might provide a good candidate for solar cells, gas sensor and field emission applications. In the book we have reported synthesis of 0D, 1D, 2D, 3D and multidimensional ZnO nanostructures like nanoparticles, nanorods, nanoneedles, nanotowers, nanoflowers, nanosyringes, bottle brush, cake and cactus-like by aqueous chemical route at relatively low temperature and cost. The synthesized nanostructures have been used for dye and quantum dot sensitized sola, [SC: 3.00], Neuware, gewerbliches Angebot, H: 220mm, B: 150mm, T: 7mm, [GW: 208g]

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Zinc Oxide Nanocrystalline Thin Films: Dye sensitized Solar Cells - Chemical Synthesis of Zinc Oxide: Solar Cells
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Zinc Oxide Nanocrystalline Thin Films: Dye sensitized Solar Cells - Chemical Synthesis of Zinc Oxide: Solar Cells - Taschenbuch

2012, ISBN: 9783659116568

[ED: Taschenbuch / Paperback], [PU: LAP Lambert Academic Publishing], Zinc oxide (ZnO) is a iconic semiconductor oxide due to its wide direct band gap of 3.3 eV and large exciton binding energy of 60 meV at room temperature, high electron mobility (155 cm2.V-1.S-1), ZnO is recognized as a promising optoelectronic material in the blue-ultraviolet (UV) region and an excellent candidate for a dye-sensitized oxide semiconductor solar cell and field emitter. By controlling the reaction conditions during heterogeneous deposition of ZnO from aqueous solutions, tunable nanostructures have been readily fabricated. The potential application of nanomaterials depends on the shape of nanostructure, and controlled morphology can modulate the properties of nanomaterials. Hierarchical ZnO nanostructures reported here might provide a good candidate for solar cells, gas sensor and field emission applications. In the book we have reported synthesis of 0D, 1D, 2D, 3D and multidimensional ZnO nanostructures like nanoparticles, nanorods, nanoneedles, nanotowers, nanoflowers, nanosyringes, bottle brush, cake and cactus-like by aqueous chemical route at relatively low temperature and cost. The synthesized nanostructures have been used for dye and quantum dot sensitized sola, [SC: 0.00], Neuware, gewerbliches Angebot, H: 220mm, B: 150mm, T: 7mm, [GW: 208g]

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Zinc Oxide Nanocrystalline Thin Films: Dye sensitized Solar Cells - Rajendra C. Pawar
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Rajendra C. Pawar:
Zinc Oxide Nanocrystalline Thin Films: Dye sensitized Solar Cells - Taschenbuch

ISBN: 9783659116568

[ED: Taschenbuch], [PU: LAP Lambert Academic Publishing], Neuware - Zinc oxide (ZnO) is a iconic semiconductor oxide due to its wide direct band gap of 3.3 eV and large exciton binding energy of 60 meV at room temperature, high electron mobility (155 cm2.V-1.S-1), ZnO is recognized as a promising optoelectronic material in the blue-ultraviolet (UV) region and an excellent candidate for a dye-sensitized oxide semiconductor solar cell and field emitter. By controlling the reaction conditions during heterogeneous deposition of ZnO from aqueous solutions, tunable nanostructures have been readily fabricated. The potential application of nanomaterials depends on the shape of nanostructure, and controlled morphology can modulate the properties of nanomaterials. Hierarchical ZnO nanostructures reported here might provide a good candidate for solar cells, gas sensor and field emission applications. In the book we have reported synthesis of 0D, 1D, 2D, 3D and multidimensional ZnO nanostructures like nanoparticles, nanorods, nanoneedles, nanotowers, nanoflowers, nanosyringes, bottle brush, cake and cactus-like by aqueous chemical route at relatively low temperature and cost. The synthesized nanostructures have been used for dye and quantum dot sensitized sola, [SC: 0.00], Neuware, gewerbliches Angebot, 220x150x9 mm, [GW: 231g]

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Zinc Oxide Nanocrystalline Thin Films: Dye sensitized Solar Cells - Rajendra C. Pawar
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Rajendra C. Pawar:
Zinc Oxide Nanocrystalline Thin Films: Dye sensitized Solar Cells - neues Buch

ISBN: 9783659116568

ID: 9d106c97435ef8242a038b6750363117

Zinc oxide (ZnO) is a iconic semiconductor oxide due to its wide direct band gap of 3.3 eV and large exciton binding energy of 60 meV at room temperature, high electron mobility (155 cm2.V-1.S-1), ZnO is recognized as a promising optoelectronic material in the blue-ultraviolet (UV) region and an excellent candidate for a dye-sensitized oxide semiconductor solar cell and field emitter. By controlling the reaction conditions during heterogeneous deposition of ZnO from aqueous solutions, tunable nanostructures have been readily fabricated. The potential application of nanomaterials depends on the shape of nanostructure, and controlled morphology can modulate the properties of nanomaterials. Hierarchical ZnO nanostructures reported here might provide a good candidate for solar cells, gas sensor and field emission applications. In the book we have reported synthesis of 0D, 1D, 2D, 3D and multidimensional ZnO nanostructures like nanoparticles, nanorods, nanoneedles, nanotowers, nanoflowers, nanosyringes, bottle brush, cake and cactus-like by aqueous chemical route at relatively low temperature and cost. The synthesized nanostructures have been used for dye and quantum dot sensitized sola Bücher / Naturwissenschaften, Medizin, Informatik & Technik / Technik

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Zinc Oxide Nanocrystalline Thin Films: Dye sensitized Solar Cells
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Zinc Oxide Nanocrystalline Thin Films: Dye sensitized Solar Cells - neues Buch

ISBN: 9783659116568

ID: fde6c4ec9d13d8ffeb1771270d15e2eb

Zinc oxide (ZnO) is a iconic semiconductor oxide due to its wide direct band gap of 3.3 eV and large exciton binding energy of 60 meV at room temperature, high electron mobility (155 cm2.V-1.S-1), ZnO is recognized as a promising optoelectronic material in the blue-ultraviolet (UV) region and an excellent candidate for a dye-sensitized oxide semiconductor solar cell and field emitter. By controlling the reaction conditions during heterogeneous deposition of ZnO from aqueous solutions, tunable nanostructures have been readily fabricated. The potential application of nanomaterials depends on the shape of nanostructure, and controlled morphology can modulate the properties of nanomaterials. Hierarchical ZnO nanostructures reported here might provide a good candidate for solar cells, gas sensor and field emission applications. In the book we have reported synthesis of 0D, 1D, 2D, 3D and multidimensional ZnO nanostructures like nanoparticles, nanorods, nanoneedles, nanotowers, nanoflowers, nanosyringes, bottle brush, cake and cactus-like by aqueous chemical route at relatively low temperature and cost. The synthesized nanostructures have been used for dye and quantum dot sensitized sola Bücher / Naturwissenschaften, Medizin, Informatik & Technik / Technik

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Details zum Buch
Zinc Oxide Nanocrystalline Thin Films: Dye sensitized Solar Cells
Autor:

Pawar, Rajendra C. / Patil, Pramod S.

Titel:

Zinc Oxide Nanocrystalline Thin Films: Dye sensitized Solar Cells

ISBN-Nummer:

3659116564

Detailangaben zum Buch - Zinc Oxide Nanocrystalline Thin Films: Dye sensitized Solar Cells


EAN (ISBN-13): 9783659116568
ISBN (ISBN-10): 3659116564
Gebundene Ausgabe
Taschenbuch
Erscheinungsjahr: 2012
Herausgeber: LAP Lambert Academic Publishing

Buch in der Datenbank seit 18.01.2008 06:31:08
Buch zuletzt gefunden am 13.11.2016 11:21:34
ISBN/EAN: 3659116564

ISBN - alternative Schreibweisen:
3-659-11656-4, 978-3-659-11656-8

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