Nanochemistry and nanomaterials for photovoltaics

  • Chen, Guanying
  • Seo, Jangwon
  • Yang, Chunhui
  • Prasad, Paras N.
Citations

WEB OF SCIENCE

260
Citations

SCOPUS

303

초록

Nanochemistry and nanomaterials provide numerous opportunities for a new generation of photovoltaics with high solar energy conversion efficiencies at low fabrication cost. Quantum-confined nanomaterials and polymer-inorganic nanocomposites can be tailored to harvest sun light over a broad range of the spectrum, while plasmonic structures offer effective ways to reduce the thickness of light-absorbing layers. Multiple exciton generation, singlet exciton fission, photon down-conversion, and photon up-conversion realized in nanostructures, create significant interest for harvesting underutilized ultraviolet and currently unutilized infrared photons. Nanochemical interface engineering of nanoparticle surfaces and junction-interfaces enable enhanced charge separation and collection. In this review, we survey these recent advances employed to introduce new concepts for improving the solar energy conversion efficiency, and reduce the device fabrication cost in photovoltaic technologies. The review concludes with a summary of contributions already made by nanochemistry. It then describes the challenges and opportunities in photovoltaics where the chemical community can play a vital role.

키워드

HYBRID SOLAR-CELLSQUANTUM-DOT PHOTOVOLTAICSINFRARED UP-CONVERSIONIONIC LAYER ADSORPTIONMULTIPLE EXCITON GENERATIONLOW-BANDGAP POLYMERORGANIC-INORGANIC NANOCOMPOSITESTRIPLET-TRIPLET ANNIHILATIONNANOCRYSTALS SURFACE FUNCTIONALIZATIONEFFICIENCY CARRIER MULTIPLICATION
제목
Nanochemistry and nanomaterials for photovoltaics
저자
Chen, GuanyingSeo, JangwonYang, ChunhuiPrasad, Paras N.
DOI
10.1039/c3cs60054h
발행일
2013
유형
Review
저널명
Chemical Society Reviews
42
21
페이지
8304 ~ 8338