4.8 Article

Record High Efficiency Single-Walled Carbon Nanotube/Silicon p-n Junction Solar Cells

期刊

NANO LETTERS
卷 13, 期 1, 页码 95-99

出版社

AMER CHEMICAL SOC
DOI: 10.1021/nl3035652

关键词

CNT/Si solar cell; hybrid solar cell; photovoltaics; high efficiency; ideality factor; temperature dependency

资金

  1. SOLAR program of the National Science Foundation [DMR-0934520]
  2. NSF-CAREER award [CBET-0954985]
  3. NASA (CT Space Grant Consortium)
  4. Nanostructures for Electrical Energy Storage, an Energy Frontier Research Center
  5. U.S. Department of Energy, Office of Science, Office of Basic Energy Sciences [DESC0001160]
  6. Yale Institute for Nanoscience and Quantum Engineering
  7. NSF MRSEC [DMR 1119826]
  8. Directorate For Engineering [0954985] Funding Source: National Science Foundation

向作者/读者索取更多资源

Carrier transport characteristics in high-efficiency single-walled carbon nanotubes (SWNTs)/silicon (Si) hybrid solar cells are presented. The solar cells were fabricated by depositing intrinsic p-type SWNT thin-films on n-type Si wafers without involving any high-temperature process for p-n junction formation. The optimized cells showed a device ideality factor close to unity and a record-high power-conversion-efficiency of >11%. By investigating the dark forward current density characteristics with varying temperature, we have identified that the temperature-dependent current rectification originates from the thermally activated band-to-band transition of carriers in Si, and the role of the SWNT thin films is to establish a built-in potential for carrier separation/collection. We have also established that the dominant carrier transport mechanism is diffusion, with minimal interface recombination. This is further supported by the observation of a long minority carrier lifetime of similar to 34 mu s, determined by the transient recovery method. This study suggests that these hybrid solar cells operate in the same manner as single crystalline p-n homojunction Si solar cells.

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