Spatial modelling of the 3D morphology of hybrid polymer-ZnO solar cells, based on tomographic image data

  • O. Stenzel
  • , H. Hassfeld
  • , R. Thiedmann
  • , L.J.A. Koster
  • , S.D. Oosterhout
  • , S.S. Bavel, van
  • , J. Loos
  • , M.M. Wienk
  • , R.A.J. Janssen
  • , V. Schmidt

    Research output: Contribution to journalArticleAcademicpeer-review

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    Abstract

    A spatial stochastic model is developed which describes the 3D nanomorphology of composite materials, being blends of two different (organic and inorganic) solid phases. Such materials are used, for example, in photoactive layers of hybrid polymer zinc oxide solar cells. The model is based on ideas from stochastic geometry and spatial statistics. Its parameters are fitted to image data gained by electron tomography (ET), where adaptive thresholding and stochastic segmentation have been used to represent morphological features of the considered ET data by unions of overlapping spheres. Their midpoints are modeled by a stack of 2D point processes with a suitably chosen correlation structure, whereas a moving-average procedure is used to add the radii of spheres. The model is validated by comparing physically relevant characteristics of real and simulated data, like the efficiency of exciton quenching, which is important for the generation of charges and their transport toward the electrodes.
    Original languageEnglish
    Pages (from-to)1920-1947
    Number of pages27
    JournalThe Annals of Applied Statistics
    Volume5
    Issue number3
    DOIs
    Publication statusPublished - 2011

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