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Analysis of Carrier Transport of Organic Devices by Using Nonlinear Optical Polarization. | LitMetric

AI Article Synopsis

  • - The review focuses on the Maxwell-Wagner (MW) effect model and time-resolved optical second harmonic generation (TR-EFISHG) measurements, which help analyze carrier motion in organic semiconductor devices.
  • - The analysis demonstrates that both organic field effect transistors and organic double-layer devices can be effectively examined, revealing their operational mechanisms.
  • - The findings suggest that combining the MW model analysis with TR-EFISHG experiments is beneficial for understanding the carrier transport mechanisms in organic devices.

Article Abstract

In this review, we discuss the Maxwell-Wagner (MW) effect model analysis of organic devices and time-resolved optical second harmonic generation (TR-EFISHG) measurement that is available for directly probing carrier motion in organic semiconductor devices. Using these, we show that organic field effect transistor as well organic double-layer device operation is analyzed well, and we can make clear the mechanism of these organic devices' operation. Finally, we conclude that the dielectric physics approach using the MW model analysis and the TR-EFISHG experiment is useful to study carrier transport mechanism of organic devices.

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Source
http://dx.doi.org/10.1166/jnn.2015.10306DOI Listing

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