Polymer/Pristine Graphene Based Composites: From Emulsions to Strong, Electrically Conducting Foams
Author(s) -
Steven J. Woltornist,
JanMichael Y. Carrillo,
Thomas O. Xu,
Andrey V. Dobrynin,
Douglas H. Adamson
Publication year - 2015
Publication title -
macromolecules
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.994
H-Index - 313
eISSN - 1520-5835
pISSN - 0024-9297
DOI - 10.1021/ma5024236
Subject(s) - graphene , materials science , graphite , composite material , polymer , graphene foam , surface modification , chemical engineering , graphene oxide paper , nanotechnology , engineering
The unique electrical, thermal, and mechanical properties of graphene make it a perfect candidate for applications in graphene/graphite based polymer composites, yet challenges due to the lack of solubility of pristine graphene/graphite in water and common organic solvents have limited its practical utilization. Here we report a scalable and environmentally friendly technique to form water-in-oil type emulsions stabilized by overlapping pristine graphene sheets, enabling the synthesis of open cell foams containing a continuous graphitic network. Our approach utilizes the insolubility of graphene/graphite in both water and organic solvents and so does not require oxidation, reduction, surfactants, high boiling solvents, chemical functionalization, or the input of large amounts of mechanical energy or heat. At the heart of our technique is the strong attraction of graphene to high-energy oil and water interfaces. This allows for the creation of stable water-in-oil emulsions with controlled droplet size and ...
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