Exploiting graphene's exceptional physical properties in polymer composites is a significant challenge because of the difficulty in controlling the graphene conformation and dispersion. Reliable processing of graphene polymer composites with uniform and consistent properties can therefore be difficult to achieve. We demonstrate distinctive regimes in morphology and nanocomposite properties, achievable through systematic control of shear rate and shear history. Remarkable changes in electrical impedance unique to composites of graphene nanoplatelets (GNPs) are observed. Low shear rates ≤0.1 s -1 break up the typical GNP agglomerates found in graphene composites, partially exfoliate the GNPs to few-layer graphene, and reduce orientation, enha...
Graphene constitutes a two dimensional sp² hybridized carbon material with outstanding electrical an...
Graphene constitutes a two dimensional sp² hybridized carbon material with outstanding electrical an...
The rapidly increasing device densities in electronics calls for efficient thermal management. If su...
Exploiting graphene’s exceptional physical properties in polymer composites is a significant challen...
Exploiting graphene’s exceptional physical properties in polymer composites is a significant challen...
A capillary-driven particle-level templating technique was utilized to distribute graphite nanoplate...
University of Minnesota Ph.D. dissertation. September 2009. Major: Chemical Engineering. Advisor: Ch...
Electrically conductive composites comprising polymers and graphene are extremely versatile and have...
Despite the exceptional properties of graphene and graphite nanoplatelets (GNP), the performance of ...
International audienceConductive fillers such as graphene are able to increase the electrical conduc...
The progress of graphene research is growing very fast after the discovery of graphene in 2004. This...
The progress of graphene research is growing very fast after the discovery of graphene in 2004. This...
The progress of graphene research is growing very fast after the discovery of graphene in 2004. This...
Graphene has exceptional mechanical capabilities, making it a potential reinforcement material for p...
Graphene constitutes a two dimensional sp² hybridized carbon material with outstanding electrical an...
Graphene constitutes a two dimensional sp² hybridized carbon material with outstanding electrical an...
Graphene constitutes a two dimensional sp² hybridized carbon material with outstanding electrical an...
The rapidly increasing device densities in electronics calls for efficient thermal management. If su...
Exploiting graphene’s exceptional physical properties in polymer composites is a significant challen...
Exploiting graphene’s exceptional physical properties in polymer composites is a significant challen...
A capillary-driven particle-level templating technique was utilized to distribute graphite nanoplate...
University of Minnesota Ph.D. dissertation. September 2009. Major: Chemical Engineering. Advisor: Ch...
Electrically conductive composites comprising polymers and graphene are extremely versatile and have...
Despite the exceptional properties of graphene and graphite nanoplatelets (GNP), the performance of ...
International audienceConductive fillers such as graphene are able to increase the electrical conduc...
The progress of graphene research is growing very fast after the discovery of graphene in 2004. This...
The progress of graphene research is growing very fast after the discovery of graphene in 2004. This...
The progress of graphene research is growing very fast after the discovery of graphene in 2004. This...
Graphene has exceptional mechanical capabilities, making it a potential reinforcement material for p...
Graphene constitutes a two dimensional sp² hybridized carbon material with outstanding electrical an...
Graphene constitutes a two dimensional sp² hybridized carbon material with outstanding electrical an...
Graphene constitutes a two dimensional sp² hybridized carbon material with outstanding electrical an...
The rapidly increasing device densities in electronics calls for efficient thermal management. If su...