Login / Signup

Optically switchable organic light-emitting transistors.

Lili HouXiaoyan ZhangGiovanni F CotellaGiuseppe CarnicellaMartin HerderBernd M SchmidtMichael PätzelStefan HechtFranco CacialliPaolo Samorì
Published in: Nature nanotechnology (2019)
Organic light-emitting transistors are pivotal components for emerging opto- and nanoelectronics applications, such as logic circuitries and smart displays. Within this technology sector, the integration of multiple functionalities in a single electronic device remains the key challenge. Here we show optically switchable organic light-emitting transistors fabricated through a judicious combination of light-emitting semiconductors and photochromic molecules. Irradiation of the solution-processed films at selected wavelengths enables the efficient and reversible tuning of charge transport and electroluminescence simultaneously, with a high degree of modulation (on/off ratios up to 500) in the three primary colours. Different emitting patterns can be written and erased through a non-invasive and mask-free process, on a length scale of a few micrometres in a single device, thereby rendering this technology potentially promising for optically gated highly integrated full-colour displays and active optical memory.
Keyphrases
  • light emitting
  • water soluble
  • high resolution
  • radiation induced
  • quantum dots