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- W945883323 abstract "Nanocarbon structures such as carbon nanotubes (CNTs) and graphene (G) have been combined with crystalline silicon wafers to fabricate nanocarbon–Si solar cells. Here, we show that the contact between the nanocarbon and Si plays an important role in the solar cell performance. An asymmetrically configured CNT–G composite film was used to create either CNT–Si dominating or G–Si dominating junctions, resulting in obviously different solar cell behavior in pristine state. Typically, solar cells with direct G–Si contacts (versus CNT–Si) exhibit better characteristics due to improved junction quality and larger contact area. On the basis of the composite film, the obtained CNT–G–Si solar cells reach power conversion efficiencies of 14.88% under air mass 1.5, 88 mW/cm2 illumination through established techniques such as acid doping and colloidal antireflection. Engineering the nanocarbon–Si contact is therefore a possible route for further improving the performance of this type of solar cells." @default.
- W945883323 created "2016-06-24" @default.
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- W945883323 date "2015-08-04" @default.
- W945883323 modified "2023-09-24" @default.
- W945883323 title "Comparison of Nanocarbon–Silicon Solar Cells with Nanotube–Si or Graphene–Si Contact" @default.
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- W945883323 doi "https://doi.org/10.1021/acsami.5b03699" @default.
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