Engineered nanomaterials for solar energy conversion
Инженерные наноматериалы для преобразования солнечной энергии
2013-01-08
SCID: 54.1/n9qn77v8
Discuss with AI
antenna-rectifier solar cellsengineered nanomaterialsintermediate band solar cellsmultiple exciton generationoptical frequency rectification
Figures from the paper
Abstract (AI)
Understanding how to engineer nanomaterials for targeted solar-cell applications is the key to improving their efficiency and could lead to breakthroughs in their design. Proposed mechanisms for the conversion of solar energy to electricity are those exploiting the particle nature of light in conventional photovoltaic cells, and those using the collective electromagnetic nature, where light is captured by antennas and rectified. In both cases, engineered nanomaterials form the crucial components. Examples include arrays of semiconductor nanostructures as an intermediate band (so called intermediate band solar cells), semiconductor nanocrystals for multiple exciton generation, or, in antenna-rectifier cells, nanomaterials for effective optical frequency rectification. Here, we discuss the state of the art in p-n junction, intermediate band, multiple exciton generation, and antenna-rectifier solar cells. We provide a summary of how engineered nanomaterials have been used in these systems and a discussion of the open questions.
Key Findings
1
Antenna-rectifier solar cells require nanomaterials capable of effective optical-frequency rectification.
2
Engineered nanomaterials are central components for improving solar-cell efficiency and enabling new solar-energy conversion designs.
3
Semiconductor nanostructure arrays can function as intermediate bands, while semiconductor nanocrystals can enable multiple exciton generation.
4
Solar-energy conversion approaches exploit either the particle nature of light in photovoltaic cells or its collective electromagnetic nature through antenna capture and rectification.
5
The state of the art spans p-n junction, intermediate-band, multiple-exciton-generation, and antenna-rectifier cells, with important open questions remaining.
Research Object
Engineered nanomaterials used in solar-cell systems, including semiconductor nanostructure arrays, semiconductor nanocrystals, and antenna-rectifier nanomaterials
Research Subject
The roles and mechanisms of engineered nanomaterials in solar-energy conversion and their impact on the design and efficiency of p–n junction, intermediate-band, multiple-exciton-generation, and antenna-rectifier solar cells
Publication Details
Publication Date
2013-01-08
Journal
Publisher
ISSN
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest