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Understanding and modeling Förster-type resonance energy transfer (FRET) : FRET-Applications . Vol. 3 / Hilmi Volkan Demir, Pedro Ludwig Hernández Martínez, Alexander Govorov

By: Demir, Hilmi Volkan, autor
Contributor(s): Govorov, Alexander, autor | Martínez, Pedro Ludwig Hernández,, autor
Material type: materialTypeLabelE-bookSeries: (SpringerBriefs in applied sciences and technology, Nanoscience and nanotechnology, 2191-530X).Publisher: Singapore : Springer, [2016]Copyright date: 2017Description: 1 recurso en línea (v, 40 páginas) : ilustraciones (algunas a color).ISBN: 9789811018763; 9811018766.Subject: Energía (Física)Online resources: Acceso a este recurso digital (usuarios Universidad Europea de Madrid)Digital Resources
Contents:
1 Förster-type Resonance Energy Transfer (FRET): Applications; 1 Introduction; 2 Exictonic Interactions with Quantum Dots; 2.1 Quantum Dot-Quantum Dot; 2.2 Quantum Dot-Quantum Well; 2.3 Quantum Dot-Quantum Wire; 2.4 Quantum Dot-Organics; 3 Excitonic Interactions in Quantum Wires; 3.1 Excitonic Interactions in Carbon Nanotubes; 4 Excitonic Interactions Beyond the Förster Limit; 4.1 Plasmon-Exciton Interactions for Enhanced Excitonic Coupling (Plexcitons); 4.2 Effect of Plasmonic Coupling on Förster-type Nonradiative Energy Transfer.
5 Förster-type Nonradiative Energy Transfer to an Indirect Semiconductor (Silicon)6 Förster-type Nonradiative Energy Transfer and Coherent Transfer; 7 Conclusions; 8 Future Challenges and Research Opportunities; References
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Holdings
Item type Current library Collection Call number Status Date due Barcode Item holds
LIBRO-E NO PRÉSTAMO LIBRO-E NO PRÉSTAMO Madrid Digital Acceso Electrónico (UEM) Ciencias e Ingeniería QC73.6 2016 EB (Browse shelf(Opens below)) Acceso electrónico eBook.20022096
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Incluye referencias bibliográficas

1 Förster-type Resonance Energy Transfer (FRET): Applications; 1 Introduction; 2 Exictonic Interactions with Quantum Dots; 2.1 Quantum Dot-Quantum Dot; 2.2 Quantum Dot-Quantum Well; 2.3 Quantum Dot-Quantum Wire; 2.4 Quantum Dot-Organics; 3 Excitonic Interactions in Quantum Wires; 3.1 Excitonic Interactions in Carbon Nanotubes; 4 Excitonic Interactions Beyond the Förster Limit; 4.1 Plasmon-Exciton Interactions for Enhanced Excitonic Coupling (Plexcitons); 4.2 Effect of Plasmonic Coupling on Förster-type Nonradiative Energy Transfer.

5 Förster-type Nonradiative Energy Transfer to an Indirect Semiconductor (Silicon)6 Förster-type Nonradiative Energy Transfer and Coherent Transfer; 7 Conclusions; 8 Future Challenges and Research Opportunities; References

Online resource; title from PDF title page (SpringerLink, viewed August 19, 2016)

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