Silicon Nanocrystals Embedded in Silicon Carbide for Tandem Solar Cell Applications.
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9783839609101 - Manuel Schnabel: Silicon Nanocrystals Embedded in Silicon Carbide for Tandem Solar Cell Applications. (Paperback)
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Manuel Schnabel

Silicon Nanocrystals Embedded in Silicon Carbide for Tandem Solar Cell Applications. (Paperback) (2015)

Lieferung erfolgt aus/von: Vereinigtes Königreich Großbritannien und Nordirland ~EN PB NW

ISBN: 9783839609101 bzw. 3839609100, vermutlich in Englisch, Fraunhofer Verlag, N/A, Taschenbuch, neu.

151,50 + Versand: 4,51 = 156,01
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Von Händler/Antiquariat, The Book Depository EURO [60485773], London, United Kingdom.
Language: English. Brand new Book. Tandem solar cells consist of multiple individual solar cells stacked in order of increasing bandgap, with the cell with highest bandgap towards the incident light. This allows photons to be absorbed in the cell that will convert them to electricity with the greatest efficiency, and is the only solar cell concept to surpass the theoretical efficiency limit of a conventional solar cell so far.§This work is concerned with the development of silicon nanocrystals (Si NCs) embedded in silicon carbide, which are expected to have a higher bandgap than bulk Si due to quantum confinement, for use in the top cell of a two-junction tandem cell. Charge carrier transport and recombination were investigated as a function of various parameters. Distortion of luminescence spectra by optical interference was highlighted and a robust model to describe transport of majority carriers was developed. Furthermore, a range of processing steps required to produce a Si NC-based tandem cell were studied, culminating in the preparation of the first Si NC-based tandem cells. The resulting cells exhibited open-circuit voltages of 900 mV, demonstrating tandem cell functionality.
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9783839609101 - Silicon Nanocrystals Embedded in Silicon Carbide for Tandem Solar Cell Applications.

Silicon Nanocrystals Embedded in Silicon Carbide for Tandem Solar Cell Applications. (2015)

Lieferung erfolgt aus/von: Österreich ~EN PB NW

ISBN: 9783839609101 bzw. 3839609100, vermutlich in Englisch, Fraunhofer Verlag, Taschenbuch, neu.

103,90 + Versand: 3,50 = 107,40
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Lieferung aus: Österreich, Versandfertig innerhalb 48 Stunden.
Tandem solar cells consist of multiple individual solar cells stacked in order of increasing bandgap, with the cell with highest bandgap towards the incident light. This allows photons to be absorbed in the cell that will convert them to electricity with the greatest efficiency, and is the only solar cell concept to surpass the theoretical efficiency limit of a conventional solar cell so far. This work is concerned with the development of silicon nanocrystals (Si NCs) embedded in silicon carbide, which are expected to have a higher bandgap than bulk Si due to quantum confinement, for use in the top cell of a two-junction tandem cell. Charge carrier transport and recombination were investigated as a function of various parameters. Distortion of luminescence spectra by optical interference was highlighted and a robust model to describe transport of majority carriers was developed. Furthermore, a range of processing steps required to produce a Si NC-based tandem cell were studied, culminating in the preparation of the first Si NC-based tandem cells. The resulting cells exhibited open-circuit voltages of 900 mV, demonstrating tandem cell functionality. Taschenbuch, 12.10.2015.
3
9783839609101 - Manuel Schnabel: Silicon Nanocrystals Embedded in Silicon Carbide for Tandem Solar Cell Applications.
Manuel Schnabel

Silicon Nanocrystals Embedded in Silicon Carbide for Tandem Solar Cell Applications. (2015)

Lieferung erfolgt aus/von: Deutschland ~EN PB NW

ISBN: 9783839609101 bzw. 3839609100, vermutlich in Englisch, Fraunhofer Verlag Okt 2015, Taschenbuch, neu.

101,00 + Versand: 19,90 = 120,90
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Von Händler/Antiquariat, AHA-BUCH GmbH [51283250], Einbeck, Germany.
Neuware - Tandem solar cells consist of multiple individual solar cells stacked in order of increasing bandgap, with the cell with highest bandgap towards the incident light. This allows photons to be absorbed in the cell that will convert them to electricity with the greatest efficiency, and is the only solar cell concept to surpass the theoretical efficiency limit of a conventional solar cell so far. This work is concerned with the development of silicon nanocrystals (Si NCs) embedded in silicon carbide, which are expected to have a higher bandgap than bulk Si due to quantum confinement, for use in the top cell of a two-junction tandem cell. Charge carrier transport and recombination were investigated as a function of various parameters. Distortion of luminescence spectra by optical interference was highlighted and a robust model to describe transport of majority carriers was developed. Furthermore, a range of processing steps required to produce a Si NC-based tandem cell were studied, culminating in the preparation of the first Si NC-based tandem cells. The resulting cells exhibited open-circuit voltages of 900 mV, demonstrating tandem cell functionality. 225 pp. Englisch.
4
9783839609101 - Manuel Schnabel: Silicon Nanocrystals Embedded in Silicon Carbide for Tandem Solar Cell Applications.
Manuel Schnabel

Silicon Nanocrystals Embedded in Silicon Carbide for Tandem Solar Cell Applications. (2015)

Lieferung erfolgt aus/von: Deutschland ~EN PB NW

ISBN: 9783839609101 bzw. 3839609100, vermutlich in Englisch, Fraunhofer Verlag, Taschenbuch, neu.

101,00 + Versand: 6,00 = 107,00
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Lieferung aus: Deutschland, zzgl. Versandkosten.
This thesis presents work on silicon nanocrystals (Si NCs) embedded in silicon carbide (SiC), which are expected to have a higher bandgap than bulk Si due to quantum confinement, with a view to using them in the top cell of a multijunction solar cell. It discusses photoluminescence, carrier transport, and dopant diffusion in SiC-embedded Si NCs, as well as the preparation and characterisation of Si NC-based multijunction solar cells. Tandem solar cells consist of multiple individual solar cells stacked in order of increasing bandgap, with the cell with highest bandgap towards the incident light. This allows photons to be absorbed in the cell that will convert them to electricity with the greatest efficiency, and is the only solar cell concept to surpass the theoretical efficiency limit of a conventional solar cell so far. This work is concerned with the development of silicon nanocrystals (Si NCs) embedded in silicon carbide, which are expected to have a higher bandgap than bulk Si due to quantum confinement, for use in the top cell of a two-junction tandem cell. Charge carrier transport and recombination were investigated as a function of various parameters. Distortion of luminescence spectra by optical interference was highlighted and a robust model to describe transport of majority carriers was developed. Furthermore, a range of processing steps required to produce a Si NC-based tandem cell were studied, culminating in the preparation of the first Si NC-based tandem cells. The resulting cells exhibited open-circuit voltages of 900 mV, demonstrating tandem cell functionality. 12.10.2015, Taschenbuch.
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9783839609101 - Schnabel: / | Silicon Nanocrystals Embedded in Silicon Carbide for Tandem Solar Cell Applications. | Fraunhofer IRB | 2015
Schnabel

/ | Silicon Nanocrystals Embedded in Silicon Carbide for Tandem Solar Cell Applications. | Fraunhofer IRB | 2015

Lieferung erfolgt aus/von: Deutschland ~EN NW

ISBN: 9783839609101 bzw. 3839609100, vermutlich in Englisch, Fraunhofer IRB, neu.

Tandem solar cells consist of multiple individual solar cells stacked in order of increasing bandgap, with the cell with highest bandgap towards the incident light. This allows photons to be absorbed in the cell that will convert them to electricity with the greatest efficiency, and is the only solar cell concept to surpass the theoretical efficiency limit of a conventional solar cell so far. This work is concerned with the development of silicon nanocrystals (Si NCs) embedded in silicon carbide, which are expected to have a higher bandgap than bulk Si due to quantum confinement, for use in the top cell of a two-junction tandem cell. Charge carrier transport and recombination were investigated as a function of various parameters. Distortion of luminescence spectra by optical interference was highlighted and a robust model to describe transport of majority carriers was developed. Furthermore, a range of processing steps required to produce a Si NC-based tandem cell were studied, culminating in the preparation of the first Si NC-based tandem cells. The resulting cells exhibited open-circuit voltages of 900 mV, demonstrating tandem cell functionality.
6
3839609100 - Silicon Nanocrystals Embedded in Silicon Carbide for Tandem Solar Cell Applications.

Silicon Nanocrystals Embedded in Silicon Carbide for Tandem Solar Cell Applications.

Lieferung erfolgt aus/von: Deutschland ~EN NW

ISBN: 3839609100 bzw. 9783839609101, vermutlich in Englisch, neu.

101,00 + Versand: 2,95 = 103,95
unverbindlich
Silicon Nanocrystals Embedded in Silicon Carbide for Tandem Solar Cell Applications. ab 101 EURO.
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9783839609101 - Schnabel, Manuel: Silicon Nanocrystals Embedded in Silicon Carbide for Tandem Solar Cell Applications. (Solar Energy and Systems Research)
Schnabel, Manuel

Silicon Nanocrystals Embedded in Silicon Carbide for Tandem Solar Cell Applications. (Solar Energy and Systems Research) (2015)

Lieferung erfolgt aus/von: Deutschland EN PB NW

ISBN: 9783839609101 bzw. 3839609100, in Englisch, 247 Seiten, Fraunhofer ISE, Freiburg/Brsg. Fraunhofer Verlag, Taschenbuch, neu.

Lieferung aus: Deutschland, Versandbereit in 1-2 Tagen. Lieferung von Amazon, Versandkostenfrei.
Von Händler/Antiquariat, Amazon.de.
Fraunhofer Verlag, Taschenbuch, Publiziert: 2015-10-12T00:00:01Z, Produktgruppe: Book.
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3839609100 - Schnabel, Manuel: Silicon Nanocrystals Embedded in Silicon Carbide for Tandem Solar Cell Applications.
Schnabel, Manuel

Silicon Nanocrystals Embedded in Silicon Carbide for Tandem Solar Cell Applications. (2015)

Lieferung erfolgt aus/von: Deutschland ~EN NW

ISBN: 3839609100 bzw. 9783839609101, vermutlich in Englisch, Fraunhofer Verlag, neu.

101,00
unverbindlich
Von Händler/Antiquariat, MARZIES.de Buch- und Medienhandel, 14621 Schönwalde-Glien.
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