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Chemicals, plastics and rubber industries

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The optimal structure-conductivity relation in epoxy-phthalocyanine nanocomposites

Article Abstract:

The macroscopic conductivity measurements on a nanocomposite coating and its filler particles with local conductivity measurements on the coating are combined to explain the large difference between the conductivity of the coating and its filler particles. The findings are found to be in full agreement with scaling relations of percolation theory, applied to perfect fractal aggregates as the building blocks.

Author: Z. Chen, Kemerink, M., Huijbregts, L.J., Brom, H.B., Brokken-Zijp, J.C.M., Goeje, M.P. De, M. Yuan, Michels, M.A.J.
Publisher: American Chemical Society
Publication Name: Journal of Physical Chemistry B
Subject: Chemicals, plastics and rubber industries
ISSN: 1520-6106
Year: 2006
Usage, Atomic force microscopy, Epoxy compounds, Structure, Report

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Direct preparation of carbon nanofiber electrodes via pyrolysis of iron(II) phthalocyanine: Electrocatalytic aspects for oxygen reduction

Article Abstract:

A simplistic and quicker method for the direct preparation of vertically aligned carbon nanofiber (CNF) electrodes by pyrolysis of iron(II) phthalocyanine on conductive supports like nickel substrates are depicted. The approach eliminates the necessity of excessive pre- or post-treatment or chemical surface activation to synthesize high surface area carbon electrodes.

Author: Maldonado, Stephen, Stevenson, Keith J.
Publisher: American Chemical Society
Publication Name: Journal of Physical Chemistry B
Subject: Chemicals, plastics and rubber industries
ISSN: 1520-6106
Year: 2004
Methods, Iron compounds, Pyrolysis

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Subjects list: Phthalocyanins, Chemical properties
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