Understanding and modeling Förster-type Resonance Energy Transfer (FRET) : FRET from single donor to single acceptor and assemblies of acceptors. . Vol. 2 / Pedro Ludwig Hernández Martínez, Alexander Govorov, Hilmi Volkan Demir.
By: Hernández Martínez, Pedro Ludwig
Contributor(s): Demir, Hilmi Volkan
| Govorov, Alexander
Material type:
E-bookSeries: (Nanoscience and Nanotechnology); (SpringerBriefs in applied sciences and technology, Nanoscience and nanotechnology).Publisher: Singapore : SpringerDescription: 1 recurso en línea (48 páginas).ISBN: 9789811018732; 9811018731.Subject: Energía eléctrica -- Producción
| Item type | Current library | Collection | Call number | Status | Date due | Barcode | Item holds | |
|---|---|---|---|---|---|---|---|---|
LIBRO-E NO PRÉSTAMO
|
Madrid Digital Acceso Electrónico (UEM) | Ciencias e Ingeniería | QC73.8.E53 H476 2016 EB (Browse shelf(Opens below)) | Acceso electrónico | eBook.20022126 |
SpringerLink Springer Engineering eBooks 2017 English+International
Incluye referencias bibliográficas
1 Applying Förster-Type Nonradiative Energy Transfer Formalism to Nanostructures with Various Directionalities: Dipole Electric Potential of Exciton and Dielectric Environment; 1.1 Spherical Geometry: Nanoparticle Case; 1.2 Cylindrical Geometry: Nanowire Case; 1.3 Planar Geometry: Quantum Well Case; Reference; 2 Förster-Type Nonradiative Energy Transfer Rates for Nanostructures with Various Dimensionalities; 2.1 Cases of Förster-Type Energy Transfer to an Nanoparticle: NP€₂!NP, NW€₂!NP, and QW€₂!NP.
2.2 Cases of Förster-Type Energy Transfer to an Nanowire: NP€₂!NW, NW€₂!NW, and QW€₂!NW2.3 Cases of Förster-Type Energy Transfer to a Quantum Well: NP€₂!QW, NW€₂!QW, and QW€₂!QW; 2.4 Example: Energy Transfer Between Nanoparticles and Nanowires; 2.5 Summary; References; 3 Nonradiative Energy Transfer in Assembly of Nanostructures; Abstract; 3.1 Energy Transfer Rates for Nanoparticle, Nanowire, or Quantum Well to 1D Nanoparticle Assembly; 3.2 Energy Transfer Rates for Nanoparticle, Nanowire, or Quantum Well to 2D Nanoparticle Assembly.
3.3 Energy Transfer Rates for Nanoparticle, Nanowire, or Quantum Well to 3D Nanoparticle Assembly3.4 Energy Transfer Rates for Nanoparticle, Nanowire, or Quantum Well to 1D Nanowire Assembly; 3.5 Energy Transfer Rates for Nanoparticle, Nanowire, or Quantum Well to 2D Nanowire Assembly; 3.6 Summary; References; Appendix A.
This Brief presents a complete study of the generalized theory of Frster-type energy transfer in nanostructures with mixed dimensionality. Here the aim is to obtain a generalized theory of FRET including a comprehensive set of analytical equations for all combinations and configurations of nanostructures and deriving generic expressions for the dimensionality involved. In this brief, the modification of FRET mechanism with respect to the nanostructure serving as the donor vs. the acceptor will be included, focusing on the rates distance dependency and the role of the effective dielectric function in FRET, which will be a unique, useful source for those who study and model FRET.
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