articleTop 1% cited
Evaluation and identification of electrical and thermal conduction mechanisms in carbon nanotube/epoxy composites
Polymer · 2006 · Vol. 47(6) · pp. 2036–2045
Florian H. Gojny✉(Hamburg University of Technology)Malte H.G. Wichmann(Hamburg University of Technology)Bodo Fiedler(Hamburg University of Technology)Ian A. Kinloch(University of Cambridge)W. Bauhofer(Hamburg University of Technology)Alan H. Windle(University of Cambridge)Karl Schulte(Hamburg University of Technology)
Carbon Nanotubes in CompositesThermal properties of materialsSmart Materials for ConstructionCarbon nanotubeMaterials scienceEpoxyComposite materialPolymerElectrical conductorSurface modificationFiller (materials)NanotubeCarbon nanotube actuators
Funding
- Royal Academy of Engineering
- Engineering and Physical Sciences Research Council
Citations
1,092
FWCI
28.15
field-weighted impact
References
34
Percentile
100%
vs. same field & year
Citations per year
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References
On the elastic properties of carbon nanotube-based composites: modelling and characterization
Journal of Physics D Applied Physics · 2003 · 620 citations
Ultra-low electrical percolation threshold in carbon-nanotube-epoxy composites
Polymer · 2003 · 1,653 citations
Percolation and Conduction
Reviews of Modern Physics · 1973 · 5,114 citations
Influence of different carbon nanotubes on the mechanical properties of epoxy matrix composites – A comparative study
Composites Science and Technology · 2005 · 1,329 citations
Formation of percolating networks in multi-wall carbon-nanotube–epoxy composites
Composites Science and Technology · 2004 · 618 citations
Influence of dispersion states of carbon nanotubes on physical properties of epoxy nanocomposites
Carbon · 2005 · 1,000 citations
Development of a dispersion process for carbon nanotubes in an epoxy matrix and the resulting electrical properties
Polymer · 1999 · 1,426 citations
Filamentous growth of carbon through benzene decomposition
Journal of Crystal Growth · 1976 · 1,598 citations
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