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High‐Nanofiller‐Content Graphene Oxide–Polymer Nanocomposites via Vacuum‐Assisted Self‐Assembly

Publication ,  Journal Article
Putz, KW; Compton, OC; Palmeri, MJ; Nguyen, ST; Brinson, LC
Published in: Advanced Functional Materials
October 8, 2010

Highly ordered, homogeneous polymer nanocomposites of layered graphene oxide are prepared using a vacuum‐assisted self‐assembly (VASA) technique. In VASA, all components (nanofiller and polymer) are pre‐mixed prior to assembly under a flow, making it compatible with either hydrophilic poly(vinyl alcohol) (PVA) or hydrophobic poly(methyl methacrylate) (PMMA) for the preparation of composites with over 50 wt% filler. This process is complimentary to layer‐by‐layer assembly, where the assembling components are required to interact strongly (e.g., via Coulombic attraction). The nanosheets within the VASA‐assembled composites exhibit a high degree of order with tunable intersheet spacing, depending on the polymer content. Graphene oxide–PVA nanocomposites, prepared from water, exhibit greatly improved modulus values in comparison to films of either pure PVA or pure graphene oxide. Modulus values for graphene oxide–PMMA nanocomposites, prepared from dimethylformamide, are intermediate to those of the pure components. The differences in structure, modulus, and strength can be attributed to the gallery composition, specifically the hydrogen bonding ability of the intercalating species

Duke Scholars

Published In

Advanced Functional Materials

DOI

EISSN

1616-3028

ISSN

1616-301X

Publication Date

October 8, 2010

Volume

20

Issue

19

Start / End Page

3322 / 3329

Publisher

Wiley

Related Subject Headings

  • Materials
  • 51 Physical sciences
  • 40 Engineering
  • 34 Chemical sciences
  • 09 Engineering
  • 03 Chemical Sciences
  • 02 Physical Sciences
 

Citation

APA
Chicago
ICMJE
MLA
NLM
Putz, K. W., Compton, O. C., Palmeri, M. J., Nguyen, S. T., & Brinson, L. C. (2010). High‐Nanofiller‐Content Graphene Oxide–Polymer Nanocomposites via Vacuum‐Assisted Self‐Assembly. Advanced Functional Materials, 20(19), 3322–3329. https://doi.org/10.1002/adfm.201000723
Putz, Karl W., Owen C. Compton, Marc J. Palmeri, SonBinh T. Nguyen, and L Catherine Brinson. “High‐Nanofiller‐Content Graphene Oxide–Polymer Nanocomposites via Vacuum‐Assisted Self‐Assembly.” Advanced Functional Materials 20, no. 19 (October 8, 2010): 3322–29. https://doi.org/10.1002/adfm.201000723.
Putz KW, Compton OC, Palmeri MJ, Nguyen ST, Brinson LC. High‐Nanofiller‐Content Graphene Oxide–Polymer Nanocomposites via Vacuum‐Assisted Self‐Assembly. Advanced Functional Materials. 2010 Oct 8;20(19):3322–9.
Putz, Karl W., et al. “High‐Nanofiller‐Content Graphene Oxide–Polymer Nanocomposites via Vacuum‐Assisted Self‐Assembly.” Advanced Functional Materials, vol. 20, no. 19, Wiley, Oct. 2010, pp. 3322–29. Crossref, doi:10.1002/adfm.201000723.
Putz KW, Compton OC, Palmeri MJ, Nguyen ST, Brinson LC. High‐Nanofiller‐Content Graphene Oxide–Polymer Nanocomposites via Vacuum‐Assisted Self‐Assembly. Advanced Functional Materials. Wiley; 2010 Oct 8;20(19):3322–3329.
Journal cover image

Published In

Advanced Functional Materials

DOI

EISSN

1616-3028

ISSN

1616-301X

Publication Date

October 8, 2010

Volume

20

Issue

19

Start / End Page

3322 / 3329

Publisher

Wiley

Related Subject Headings

  • Materials
  • 51 Physical sciences
  • 40 Engineering
  • 34 Chemical sciences
  • 09 Engineering
  • 03 Chemical Sciences
  • 02 Physical Sciences