Critical Dimensions in Small-Molecule Plasmonic Particle Solar Cells
Research output: Contribution to book/Conference proceedings/Anthology/Report › Chapter in book/Anthology/Report › Contributed › peer-review
Contributors
Details
| Original language | English |
|---|---|
| Title of host publication | ELEMENTARY PROCESSES IN ORGANIC PHOTOVOLTAICS |
| Pages | 327-349 |
| Volume | 272 |
| Publication status | Published - 2017 |
| Peer-reviewed | Yes |
External IDs
| Scopus | 85007227407 |
|---|
Keywords
Keywords
- Absorber layer thickness, Absorption effciency, Backscattering, Charge extraction, Coupling plasmonic particles, Coupling of plasmonic particles to absorbing media, Device stack, Dipolar plasmonic resonance in dispersive media, Dipolar resonance, Extinction efficiency, Fill factor, Forward scattering, Infra-red, Inter-particle spacing, Modified long-wavelength approach, Morphology in plasmonic organic solar cells, Nanotechnology, Near-field effect, Near-field enhancement, Particle aspect ratio, Particle density, Particle growth, Particle growth after seeding, Particle position, Particle size, Passivation of plasmonic particles, Phase of plasmonic resonance, Photocurrent, Plasmonic device concepts, Plasmonic solar cell, Polarizability, Reflection, Reflection at plasmonic particles, Scattering efficiency, Semiconductor bandgap, Silver particle deposition, Spectral overlap, Splitting of plasmonic resonance, Vollmer-weber growth