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Detecting trap states in planar PbS colloidal quantum dot solar cells.


ABSTRACT: The recently developed planar architecture (ITO/ZnO/PbS-TBAI/PbS-EDT/Au) has greatly improved the power conversion efficiency of colloidal quantum dot photovoltaics (QDPVs). However, the performance is still far below the theoretical expectations and trap states in the PbS-TBAI film are believed to be the major origin, characterization and understanding of the traps are highly demanded to develop strategies for continued performance improvement. Here employing impedance spectroscopy we detect trap states in the planar PbS QDPVs. We determined a trap state of about 0.34?eV below the conduction band with a density of around 3.2?×?1016?cm-3?eV-1. Temperature dependent open-circuit voltage analysis, temperature dependent diode property analysis and temperature dependent build-in potential analysis consistently denotes an below-bandgap activation energy of about 1.17-1.20?eV.

SUBMITTER: Jin Z 

PROVIDER: S-EPMC5109221 | biostudies-literature | 2016 Nov

REPOSITORIES: biostudies-literature

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Detecting trap states in planar PbS colloidal quantum dot solar cells.

Jin Zhiwen Z   Wang Aiji A   Zhou Qing Q   Wang Yinshu Y   Wang Jizheng J  

Scientific reports 20161115


The recently developed planar architecture (ITO/ZnO/PbS-TBAI/PbS-EDT/Au) has greatly improved the power conversion efficiency of colloidal quantum dot photovoltaics (QDPVs). However, the performance is still far below the theoretical expectations and trap states in the PbS-TBAI film are believed to be the major origin, characterization and understanding of the traps are highly demanded to develop strategies for continued performance improvement. Here employing impedance spectroscopy we detect tr  ...[more]

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