4.8 Article

Orientation-Dependent Host-Dopant Interactions for Manipulating Charge Transport in Conjugated Polymers

Journal

ADVANCED MATERIALS
Volume 32, Issue 39, Pages -

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adma.202002823

Keywords

carrier mobility optimization; chemical doping; meniscus-guided coating; molecular orientation; surface interactions

Funding

  1. Office of Naval Research [N00014-19-1-2146]
  2. Beijing National Laboratory for Molecular Sciences [BNLMS201912]
  3. UCAS [Y954011XX2]
  4. Shen Postdoctoral Fellowship
  5. NSF MRSEC: Illinois Materials Research Center [DMR 17-20633]
  6. National Science Foundation [NSF DMR 18-47828]
  7. DOE Office of Science by Argonne National Laboratory [DE-AC02-06CH11357]

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Molecular orientation plays a critical role in controlling carrier transport in organic semiconductors (OSCs). However, this aspect has not been explored for surface doping of OSC thin films. The challenge lies in lack of methods to precisely modulate relative molecular orientation between the dopant and the OSC host. Here, the impact of molecular orientation on dopant-host electronic interactions by large modulation of conjugated polymer orientation via solution coating is reported. Combining synchrotron-radiation X-ray measurements with spectroscopic and electrical characterizations, a quantitative correlation between doping-enhanced charge carrier mobility and the Herman's orientation parameter is presented. This direct correlation can be attributed to enhanced charge-transfer interactions at host/dopant interface with increasing face-on orientation of the polymer. These results demonstrate that the surface doping effect can be fundamentally manipulated by controlling the molecular orientation of the OSC layer, enabling optimization of carrier transport.

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