Light-Emitting Field-Effect Transistors Based on Composite Films of Polyfluorene and CsPbBr₃ Nanocrystals

A. N. Aleshin, I. P. Shcherbakov, D. A. Kirilenko, L. B. Matyushkin, V. A. Moshnikov

Physics of the Solid State, 61 (2), 256–262, 2019

Résumé

Light-emitting organic field-effect transistors (LE-FETs) on the basis of composite films that consist of perovskite nanocrystals (CsPbBr₃) embedded in a matrix of conjugated polymer—polyfluorene (PFO)—have been obtained, and their electrical and optical properties have been investigated. Output and transfer current-voltage characteristics (I-Vs) of FETs based on PFO : CsPbBr₃ films (component ratio 1 : 1) have a slight hysteresis at temperatures of 100–300 K and are characteristic of hole transport. The hole mobility is ∼3.3 and ∼1.9 cm2/(V s) at the modes of the saturation and low fields, respectively, at 250 K and reaches ∼5 cm2/(V s) at 100 K. It has been shown that the application of pulsed voltage to LE-FETs based on PFO : CsPbBr₃ can reduce the ionic conductivity and provide electroluminescence in this structure at 300 K.

Comment citer

@article{phys-solid-state-2019,
  author = {Aleshin, A. N. and Shcherbakov, I. P. and Kirilenko, D. A. and Matyushkin, L. B. and Moshnikov, V. A.},
  title = {Light-Emitting Field-Effect Transistors Based on Composite Films of Polyfluorene and CsPbBr₃ Nanocrystals},
  journal = {Physics of the Solid State},
  volume = {61},
  number = {2},
  pages = {256--262},
  year = {2019},
  doi = {10.1134/s1063783419020021}
}

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