Artigo Acesso aberto Revisado por pares

Charge Transfer from Carbon Nanotubes to Silicon in Flexible Carbon Nanotube/Silicon Solar Cells

2017; Wiley; Volume: 13; Issue: 48 Linguagem: Inglês

10.1002/smll.201702387

ISSN

1613-6829

Autores

Xiaokai Li, Marina Mariano, Lyndsey McMillon‐Brown, Jing‐Shun Huang, Matthew Y. Sfeir, Mark A. Reed, Yeonwoong Jung, André D. Taylor,

Tópico(s)

Silicon Nanostructures and Photoluminescence

Resumo

Abstract Mechanical fragility and insufficient light absorption are two major challenges for thin flexible crystalline Si‐based solar cells. Flexible hybrid single‐walled carbon nanotube (SWNT)/Si solar cells are demonstrated by applying scalable room‐temperature processes for the fabrication of solar‐cell components (e.g., preparation of SWNT thin films and SWNT/Si p–n junctions). The flexible SWNT/Si solar cells present an intrinsic efficiency ≈7.5% without any additional light‐trapping structures. By using these solar cells as model systems, the charge transport mechanisms at the SWNT/Si interface are investigated using femtosecond transient absorption. Although primary photon absorption occurs in Si, transient absorption measurements show that SWNTs also generate and inject excited charge carriers to Si. Such effects can be tuned by controlling the thickness of the SWNTs. Findings from this study could open a new pathway for designing and improving the efficiency of photocarrier generation and absorption for high‐performance ultrathin hybrid SWNT/Si solar cells.

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