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9783330652446 - Dalvinder Singh Grewal: Dye Coated Nano Structures For Solar Cell High Efficiency
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Dalvinder Singh Grewal

Dye Coated Nano Structures For Solar Cell High Efficiency (2017)

Lieferung erfolgt aus/von: Deutschland DE PB NW

ISBN: 9783330652446 bzw. 3330652446, in Deutsch, 104 Seiten, SPS, Taschenbuch, neu.

Lieferung aus: Deutschland, Versandkosten nach: Deutschland, Versandkostenfrei.
Von Händler/Antiquariat, Rhein-Team Lörrach, [3332481].
Neuware - The dye-sensitized solar cells (DSSCs) based on nano crystalline TiO2 exhibit high power conversion efficiency one of the most commonly substitutes for low cost solar-energy-conversion devices at high temperature. ZnO is another promising metal-oxide semiconductor that can be replace TiO2 because of its higher electronic mobility as compared to TiO2 and its energy level of conduction band is similar as in TiO2. Nanocrystalline particles of ZnO were prepared by sol gel method using mesoporous electrodes for dye-sensitized solar cells. The anatase phase of ZnO has been confirmed using XRD. Transmission Electron Microscopy (TEM) has been used to confirm the particle size of the ZnO nano particles. The coating of natural dyes extracted from spinach and marry gold has been done on ZnO nano particles. The Scanning Electron Microscope and EDX study reveals the morphology and elemental composition of the pure and natural dye coated ZnO nano particles. Tauc's plot confirmed decrease in band gap of ZnO nanoparticles with natural dye coating. Raman scattering spectra reveal active phonon modes for all of the synthesized samples. The natural dye coated nano particles are found to be better. -, 27.06.2017, Taschenbuch, Neuware, 220x150x6 mm, 171g, 104, Internationaler Versand, offene Rechnung (Vorkasse vorbehalten), PayPal, Banküberweisung.
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9783330652446 - Grewal, Dalvinder Singh / Chhabra, Yogesh: Dye Coated Nano Structures For Solar Cell High Efficiency
Symbolbild
Grewal, Dalvinder Singh / Chhabra, Yogesh

Dye Coated Nano Structures For Solar Cell High Efficiency

Lieferung erfolgt aus/von: Deutschland DE PB NW

ISBN: 9783330652446 bzw. 3330652446, in Deutsch, Taschenbuch, neu.

Lieferung aus: Deutschland, Versandkostenfrei.
Von Händler/Antiquariat, European-Media-Service Mannheim [1048135], Mannheim, Germany.
Publisher/Verlag: Scholar's Press | The dye-sensitized solar cells (DSSCs) based on nano crystalline TiO2 exhibit high power conversion efficiency one of the most commonly substitutes for low cost solar-energy-conversion devices at high temperature. ZnO is another promising metal-oxide semiconductor that can be replace TiO2 because of its higher electronic mobility as compared to TiO2 and its energy level of conduction band is similar as in TiO2. Nanocrystalline particles of ZnO were prepared by sol gel method using mesoporous electrodes for dye-sensitized solar cells. The anatase phase of ZnO has been confirmed using XRD. Transmission Electron Microscopy (TEM) has been used to confirm the particle size of the ZnO nano particles. The coating of natural dyes extracted from spinach and marry gold has been done on ZnO nano particles. The Scanning Electron Microscope and EDX study reveals the morphology and elemental composition of the pure and natural dye coated ZnO nano particles. Tauc's plot confirmed decrease in band gap of ZnO nanoparticles with natural dye coating. Raman scattering spectra reveal active phonon modes for all of the synthesized samples. The natural dye coated nano particles are found to be better. | Format: Paperback | Language/Sprache: english | 104 pp.
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9783330652446 - Grewal, Dalvinder Singh / Chhabra, Yogesh: Dye Coated Nano Structures For Solar Cell High Efficiency
Grewal, Dalvinder Singh / Chhabra, Yogesh

Dye Coated Nano Structures For Solar Cell High Efficiency (2017)

Lieferung erfolgt aus/von: Deutschland DE PB NW

ISBN: 9783330652446 bzw. 3330652446, in Deutsch, 104 Seiten, Scholar's Press, Taschenbuch, neu.

Lieferung aus: Deutschland, Versandkosten nach: Deutschland, Versandkostenfrei.
Von Händler/Antiquariat, Syndikat Buchdienst, [4235284].
The dye-sensitized solar cells (DSSCs) based on nano crystalline TiO2 exhibit high power conversion efficiency one of the most commonly substitutes for low cost solar-energy-conversion devices at high temperature. ZnO is another promising metal-oxide semiconductor that can be replace TiO2 because of its higher electronic mobility as compared to TiO2 and its energy level of conduction band is similar as in TiO2. Nanocrystalline particles of ZnO were prepared by sol gel method using mesoporous electrodes for dye-sensitized solar cells. The anatase phase of ZnO has been confirmed using XRD. Transmission Electron Microscopy (TEM) has been used to confirm the particle size of the ZnO nano particles. The coating of natural dyes extracted from spinach and marry gold has been done on ZnO nano particles. The Scanning Electron Microscope and EDX study reveals the morphology and elemental composition of the pure and natural dye coated ZnO nano particles. Tauc's plot confirmed decrease in band gap of ZnO nanoparticles with natural dye coating. Raman scattering spectra reveal active phonon modes for all of the synthesized samples. The natural dye coated nano particles are found to be better. 2017, Taschenbuch / Paperback, Neuware, H: 220mm, B: 150mm, 104, Internationaler Versand, Selbstabholung und Barzahlung, PayPal, offene Rechnung, Banküberweisung.
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9783330652446 - Dye Coated Nano Structures For Solar Cell High Efficiency als von Dalvinder Singh Grewal, Yogesh Chhabra

Dye Coated Nano Structures For Solar Cell High Efficiency als von Dalvinder Singh Grewal, Yogesh Chhabra

Lieferung erfolgt aus/von: Deutschland DE HC NW

ISBN: 9783330652446 bzw. 3330652446, in Deutsch, gebundenes Buch, neu.

59,90 + Versand: 7,50 = 67,40
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9783330652446 - Dalvinder Singh Grewal, Yogesh Chhabra: Dye Coated Nano Structures For Solar Cell High Efficiency
Dalvinder Singh Grewal, Yogesh Chhabra

Dye Coated Nano Structures For Solar Cell High Efficiency (2017)

Lieferung erfolgt aus/von: Deutschland EN PB NW

ISBN: 9783330652446 bzw. 3330652446, in Englisch, 104 Seiten, Scholars' Press, Taschenbuch, neu.

Lieferung aus: Deutschland, Versandfertig in 1 - 2 Werktagen, Versandkostenfrei.
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