Automated Organization Profile

Heliatek GmbH, Treidlerstrasse 3, 01139 Dresden, Germany

Current S-Index

4.0

Sum of Dataset Indices for all datasets

Average Dataset Index per Dataset

2.0

Average Dataset Index per dataset

Total Datasets

2

Total datasets in this organization

Average FAIR Score

82.7%

Average FAIR Score per dataset

Total Citations

2

Total citations to the organization's datasets

Total Mentions

0

Total mentions of the organization's datasets

S-Index Interpretation

S-Index Over Time

Cumulative Citations Over Time

Cumulative Mentions Over Time

Datasets

Reverse dark current in organic photodetectors and the major role of traps as source of noise

Organic photodetectors have promising applications in low-cost imaging, health monitoring and near infrared sensing. Recent research on organic photodetectors based on donor-acceptor systems has resulted in narrow-band, flexible and biocompatible devices, of which the best reach external photovoltaic quantum efficiencies approaching 100%. However, the high noise spectral density of these devices limits their specific detectivity to around 10^13 Jones in the visible and several orders of magnitude lower in the near-infrared, severely reducing performance. Here, we show that the shot noise, proportional to the dark current, dominates the noise spectral density, demanding a comprehensive understanding of the dark current. We demonstrate that, in addition to the intrinsic saturation current generated via charge-transfer states, dark current contains a major contribution from trap-assisted generated charges and decreases systematically with decreasing concentration of traps. By modeling the dark current of several donor-acceptor systems, we reveal the interplay between traps and charge-transfer states as source of dark current and show that traps dominate the generation processes, thus being the main limiting factor of organic photodetectors detectivity.

Authors

  • Kublitski, Jonas ;
  • Hofacker, Andreas ;
  • K. Boroujeni, Bahman ;
  • Benduhn, Johannes ;
  • C. Nikolis, Vasileios ;
  • Kaiser, Christina ;
  • Spoltore, Donato ;
  • Kleemann, Hans ;
  • Fischer, Axel ;
  • Ellinger, Frank ;
  • Vandewal, Koen ;
  • Leo, Karl
1 Citation0 Mentions88% FAIR0.9 Dataset Index
10.24435/materialscloud:sq-wv2020

Reverse dark current in organic photodetectors and the major role of traps as source of noise

Organic photodetectors have promising applications in low-cost imaging, health monitoring and near infrared sensing. Recent research on organic photodetectors based on donor-acceptor systems has resulted in narrow-band, flexible and biocompatible devices, of which the best reach external photovoltaic quantum efficiencies approaching 100%. However, the high noise spectral density of these devices limits their specific detectivity to around 10^13 Jones in the visible and several orders of magnitude lower in the near-infrared, severely reducing performance. Here, we show that the shot noise, proportional to the dark current, dominates the noise spectral density, demanding a comprehensive understanding of the dark current. We demonstrate that, in addition to the intrinsic saturation current generated via charge-transfer states, dark current contains a major contribution from trap-assisted generated charges and decreases systematically with decreasing concentration of traps. By modeling the dark current of several donor-acceptor systems, we reveal the interplay between traps and charge-transfer states as source of dark current and show that traps dominate the generation processes, thus being the main limiting factor of organic photodetectors detectivity.

Authors

  • Kublitski, Jonas ;
  • Hofacker, Andreas ;
  • K. Boroujeni, Bahman ;
  • Benduhn, Johannes ;
  • C. Nikolis, Vasileios ;
  • Kaiser, Christina ;
  • Spoltore, Donato ;
  • Kleemann, Hans ;
  • Fischer, Axel ;
  • Ellinger, Frank ;
  • Vandewal, Koen ;
  • Leo, Karl
1 Citation0 Mentions77% FAIR1.4 Dataset Index
10.24435/materialscloud:ds-4f2020