4.8 Article

Observation of a Distinct Surface Molecular Orientation in Films of a High Mobility Conjugated Polymer

期刊

JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
卷 135, 期 3, 页码 1092-1101

出版社

AMER CHEMICAL SOC
DOI: 10.1021/ja310240q

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资金

  1. Australian Research Council (ARC) [FT100100275]
  2. Victorian Endowment for Science Knowledge and Innovation (VESKI)
  3. Engineering and Physical Sciences Research Council (EPSRC) [EP/E051804/1]
  4. Engineering and Physical Sciences Research Council [EP/E051804/1, EP/G068356/1] Funding Source: researchfish
  5. EPSRC [EP/E051804/1, EP/G068356/1] Funding Source: UKRI

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The molecular orientation and microstructure of films of the high-mobility semiconducting polymer poly(N,N-bis-2-octyldodecylnaphthalene- 1,4,5,8-bis-dicarboximide2,6-diyl-alt-5,5-2,2-bithiophene) (P(NDI2OD-T2)) are probed using a combination of grazing-incidence wide-angle X-ray scattering (GIWAXS) and near-edge X-ray absorption fine-structure (NEXAFS) spectroscopy. In particular a novel approach is used whereby the bulk molecular orientation and surface molecular orientation are simultaneously measured on the same sample using NEXAFS spectroscopy in an angle-resolved transmission experiment. Furthermore, the acquisition of bulk-sensitive NEXAFS data enables a direct comparison of the information provided by GIWAXS and NEXAFS. By comparison of the bulk-sensitive and surface-sensitive NEXAFS data, a distinctly different molecular orientation is observed at the surface of the film compared to the bulk. While a more face-on orientation of the conjugated backbone is observed in the bulk of the film, consistent with the lamella orientation observed by GIWAXS, a more edge-on orientation is observed at the surface of the film with surface-sensitive NEXAFS spectroscopy. This distinct edge-on surface orientation explains the high in-plane mobility that is achieved in top-gate P(NDI2OD-T2) field-effect transistors (FETs), while the bulk face-on texture explains the high out-of-plane mobilities that are observed in time-of-flight and diode measurements. These results also stress that GIWAXS lacks the surface sensitivity required to probe the microstructure of the accumulation layer that supports charge transport in organic FETs and hence may not necessarily be appropriate for correlating film microstructure and FET charge transport.

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