4.6 Article

Controlling the conduction band offset for highly efficient ZnO nanorods based perovskite solar cell

Journal

APPLIED PHYSICS LETTERS
Volume 107, Issue 7, Pages -

Publisher

AIP Publishing
DOI: 10.1063/1.4929435

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Funding

  1. National Key Basic Research Program [2012CB932903]
  2. Natural Science Foundation of China [91433205, 11474333, 51402348, 51372270, 51372272, 21173260, 51421002, 91233202]

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The mechanism of charge recombination at the interface of n-type electron transport layer (n-ETL) and perovskite absorber on the carrier properties in the perovskite solar cell is theoretically studied. By solving the one dimensional diffusion equation with different boundary conditions, it reveals that the interface charge recombination in the perovskite solar cell can be suppressed by adjusting the conduction band offset (DEC) at ZnO ETL/perovskite absorber interface, thus leading to improvements in cell performance. Furthermore, Mg doped ZnO nanorods ETL has been designed to control the energy band levels. By optimizing the doping amount of Mg, the conduction band minimum of the Mg doped ZnO ETL has been raised up by 0.29 eV and a positive DEC of about 0.1 eV is obtained. The photovoltage of the cell is thus significantly increased due to the relatively low charge recombination. (C) 2015 AIP Publishing LLC.

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