Received: 2015-9-10
Accepted: 2015-12-15
Published Online: 2016-6-11
Published in Print: 2016-6-1
© 2016
Articles in the same Issue
- Editorial
- Special issue: Smart nanophotonics for renewable energy and sustainability
- Review Articles
- Solar thermophotovoltaics: reshaping the solar spectrum
- Enhancing radiative energy transfer through thermal extraction
- Advancing colloidal quantum dot photovoltaic technology
- Nanophotonics-enabled smart windows, buildings and wearables
- Colloidal nanocrystals for quality lighting and displays: milestones and recent developments
- Plasmonic hot carrier dynamics in solid-state and chemical systems for energy conversion
- Solar-Powered Plasmon-Enhanced Heterogeneous Catalysis
- Heat meets light on the nanoscale
- Spectral light management for solar energy conversion systems
- Copercolating Networks: An Approach for Realizing High-Performance Transparent Conductors using Multicomponent Nanostructured Networks
Keywords for this article
solar power;
thermophotovoltaics;
selective solar absorbers;
selective emitters;
selective filters
Creative Commons
BY-NC-ND 4.0
Articles in the same Issue
- Editorial
- Special issue: Smart nanophotonics for renewable energy and sustainability
- Review Articles
- Solar thermophotovoltaics: reshaping the solar spectrum
- Enhancing radiative energy transfer through thermal extraction
- Advancing colloidal quantum dot photovoltaic technology
- Nanophotonics-enabled smart windows, buildings and wearables
- Colloidal nanocrystals for quality lighting and displays: milestones and recent developments
- Plasmonic hot carrier dynamics in solid-state and chemical systems for energy conversion
- Solar-Powered Plasmon-Enhanced Heterogeneous Catalysis
- Heat meets light on the nanoscale
- Spectral light management for solar energy conversion systems
- Copercolating Networks: An Approach for Realizing High-Performance Transparent Conductors using Multicomponent Nanostructured Networks