Nanoscale 2015-03-21

Photovoltaic effect in individual asymmetrically contacted lead sulfide nanosheets.

Sedat Dogan, Thomas Bielewicz, Vera Lebedeva, Christian Klinke

文献索引:Nanoscale 7(11) , 4875-83, (2015)

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摘要

Solution-processable, two-dimensional semiconductors are promising optoelectronic materials which could find application in low-cost solar cells. Lead sulfide nanocrystals raised attention since the effective band gap can be adapted over a wide range by electronic confinement and observed multi-exciton generation promises higher efficiencies. We report on the influence of the contact metal work function on the properties of transistors based on individual two-dimensional lead sulfide nanosheets. Using palladium we observed mobilities of up to 31 cm(2) V(-1) s(-1). Furthermore, we demonstrate that asymmetrically contacted nanosheets show photovoltaic effect and that the nanosheets' height has a decisive impact on the device performance. Nanosheets with a thickness of 5.4 nm contacted with platinum and titanium show a power conversion efficiency of up to 0.94% (EQE 75.70%). The results underline the high hopes put on such materials.


相关化合物

  • N,N-二甲基甲酰胺
  • 油酸
  • 1,1,2-三氯乙烷
  • 6,6-二甲基联环(3.1...
  • 二苯醚
  • 硫代乙酰胺
  • 1,1-二氯-3,3-二甲...

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