A Method of Manufacturing Highly Conductive Composite Materials by Coating Surfaces of Nonconductors with Fine Particulate Conductive Substances View Full Text


Ontology type: schema:Chapter     


Chapter Info

DATE

2001

AUTHORS

Susanne Voß , Vadim Nigmatoulline , Marjan Bele , Stane Pejovnik , Jürgen O. Besenhard

ABSTRACT

A widely applicable aqueous dip-coating process termed substrate induced coagulation (SIC) suitable for coating various types of substrates (e.g. polar and unpolar polymers, inorganic glasses, metals) with fine particulate materials (e.g. carbon blacks, small particle size SiO2 or TiO2) has been developed. This process is based on the interaction of a conditioner (water soluble polymers or polyelectrolytes, e.g. proteins, polyvinylalcohols, polyacrylates with low charge density) which is adsorbed on the substrate with a surfactant-stabilized dispersion containing some additional electrolyte. Employing dispersions of conductive particles, the resulting coatings can be used as a conductive starting layer for electroplating. Such layers are fairly rinse-proof and may be applied in the metallization process of through holes in printed wiring boards or for the production of highly conductive composite materials from coated particles. SIC has also been used to improve the distribution of carbon in composite battery electrodes such as MnO2/C. More... »

PAGES

67-77

References to SciGraph publications

  • 1996. Materials for Bipolar Lead-Acid Batteries in NEW PROMISING ELECTROCHEMICAL SYSTEMS FOR RECHARGEABLE BATTERIES
  • 1995-01. Conductive carbon-polypropylene composite electrodes for vanadium redox battery in JOURNAL OF APPLIED ELECTROCHEMISTRY
  • 1996. Design and Materials for Metal-Free Rechargeable Batteries in NEW PROMISING ELECTROCHEMICAL SYSTEMS FOR RECHARGEABLE BATTERIES
  • Book

    TITLE

    Electroactive Materials

    ISBN

    978-3-7091-7273-5
    978-3-7091-6211-8

    Identifiers

    URI

    http://scigraph.springernature.com/pub.10.1007/978-3-7091-6211-8_7

    DOI

    http://dx.doi.org/10.1007/978-3-7091-6211-8_7

    DIMENSIONS

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