Conducting nanocomposite polymer foams from lce-crystal-templated assembly of mixtures of colloids. Colard, C., A., L., Cave, R., A., Grossiord, N., Covington, J., A., & Bon, S., A., F. Advanced Materials, 21(28):2894-2898, WILEY-VCH Verlag, 2009.
Conducting nanocomposite polymer foams from lce-crystal-templated assembly of mixtures of colloids [link]Website  doi  abstract   bibtex   1 download  
Fabrication of conducting nanocomposite-reinforced soft polymer foams is demonstrated. These multicomponent cellular materials are built from a mixture of colloids dispersed in water by freeze-drying, thereby using ice crystals as template for the porous structure. An excluded-volume effect armors the "soft"-polymer cell walls with "hard" nanoparticles, thereby enhancing the mechanical robustness of the foams.
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 title = {Conducting nanocomposite polymer foams from lce-crystal-templated assembly of mixtures of colloids},
 type = {article},
 year = {2009},
 pages = {2894-2898},
 volume = {21},
 websites = {http://onlinelibrary.wiley.com/doi/10.1002/adma.200803007/abstract},
 publisher = {WILEY-VCH Verlag},
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 abstract = {Fabrication of conducting nanocomposite-reinforced soft polymer foams is demonstrated. These multicomponent cellular materials are built from a mixture of colloids dispersed in water by freeze-drying, thereby using ice crystals as template for the porous structure. An excluded-volume effect armors the "soft"-polymer cell walls with "hard" nanoparticles, thereby enhancing the mechanical robustness of the foams.},
 bibtype = {article},
 author = {Colard, Catheline A L and Cave, Richard A. and Grossiord, Nadia and Covington, James A. and Bon, Stefan A F},
 doi = {10.1002/adma.200803007},
 journal = {Advanced Materials},
 number = {28}
}

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