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  • Why are doping techniques important for doped organic semiconductors?
  • Other than the category of molecular dopants, the doping techniques of the dopants are also crucial for the properties of doped organic semiconductors since the solid-state features (e.g., nano-/microstructure and domain size) of thin film are highly dependent on the processing methods .
  • Does a low doping concentration affect the performance of organic semiconductors?
  • However, as also mentioned, the doping efficiency in organic semiconductors is quite low (usually below 5%), thus low doping concentration will have no evident impact on performance improvement. The appropriate doping ratio employed in organic semiconductors is actually one of the challenges in the field.
  • When did doping occur in organic semiconductors?
  • The doping of organic semiconductors can date back to 1970s when the conductivity of organic materials is largely increased by adding the admixture of halides and alkali metals , including both conjugated small molecules and polymers.
  • What is a doped semiconductor?
  • In semiconductor production, doping is the intentional introduction of impurities into an intrinsic (undoped) semiconductor for the purpose of modulating its electrical, optical and structural properties. The doped material is referred to as an extrinsic semiconductor.
  • How to do n-doping of organic semiconductors?
  • There are various ways for n-doping of organic semiconductors and the following three approaches will be discussed. Using alkali metals. Using molecular compounds with very high HOMO levels. Using air-stable precursor molecules that can donate an electron to the matrix material in the deposited film.
  • What is doping in microelectronics?
  • In fundamental microelectronics, doping is a fabrication technique that can intentionally introduce impurities into a host semiconductor so that its structural, optical and electrical properties can be controllably tuned.