Modelling of Joule heating based self-alignment method for metal grid line passivation

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    Abstract

    A Joule heating based self-alignment method for solution-processable insulator structures has been modeled for the passivation of metal grid lines, for example for organic light emitting diodes or photovoltaic cells. To minimize overhang of the passivation layer from line edges, we have studied the Joule heating approach using solution-processable, cross-linkable polymer insulator films. Finite element simulations were performed to investigate the heating of the
    sample using glass and poly(ethylene terephthalate) (PET) substrates. The sample was at room temperature and the current was selected to induce a temperature of 410 K at the conductor. It was found that the selection of substrate material is crucial for the localization of cross-linking. For a PET substrate, the temperature gradient at the edge of the conductor is approximately twice the gradient for glass. As a result, using a glass substrate demands high selectivity from the polymer cross-linking, thus making PET a more suitable substrate material for our application. A flexible PET substrate is, in addition, compatible with roll-to-roll mass-manufacturing processes.
    Translated title of the contributionModelling of Joule heating based self-alignment method for metal grid line passivation
    Original languageEnglish
    Title of host publication2013 MRS Fall Meeting - Symposium M - Large-Area Processing and Patterning for Active Optical and Electronic Devices
    PublisherMATERIALS RESEARCH SOCIETY
    Number of pages6
    DOIs
    Publication statusPublished - 2014
    Publication typeA4 Article in conference proceedings
    EventMaterials Research Society Symposium -
    Duration: 1 Jan 1900 → …

    Conference

    ConferenceMaterials Research Society Symposium
    Period1/01/00 → …

    Publication forum classification

    • Publication forum level 1

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