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Graphene Oxide Papers Modified by Divalent Ions—Enhancing Mechanical Properties <i>via</i> Chemical Cross-Linking

ACS Nano · 2008 · Vol. 2(3) · pp. 572–578
Sungjin ParkKyoung‐Seok LeeGülay BozokluWeiwei CaiSonBinh T. NguyenRodney S. Ruoff

Abstract

Significant enhancement in mechanical stiffness (10-200%) and fracture strength (approximately 50%) of graphene oxide paper, a novel paperlike material made from individual graphene oxide sheets, can be achieved upon modification with a small amount (less than 1 wt %) of Mg(2+) and Ca(2+). These results can be readily rationalized in terms of the chemical interactions between the functional groups of the graphene oxide sheets and the divalent metals ions. While oxygen functional groups on the basal planes of the sheets and the carboxylate groups on the edges can both bond to Mg(2+) and Ca(2+), the main contribution to mechanical enhancement of the paper comes from the latter.

Graphene research and applicationsGraphene and Nanomaterials ApplicationsHigh voltage insulation and dielectric phenomenaGrapheneOxideMaterials scienceCarboxylateDivalentIonGraphene oxide paperChemical bondInorganic chemistryChemical engineering

MeSH terms

Computer SimulationCross-Linking ReagentsCrystallizationGraphiteHardnessIonsMaterials TestingModels, ChemicalMolecular ConformationOxidesPaperParticle SizeSurface PropertiesTensile StrengthNanotechnology

Funding

  • Defense Advanced Research Projects Agency
Citations
1,754
FWCI
22.13
field-weighted impact
References
24
Percentile
100%
vs. same field & year
Citations per year
References
Structure of Graphite Oxide Revisited
The Journal of Physical Chemistry B · 1998 · 3,430 citations
The rise of graphene
Nature Materials · 2007 · 39,026 citations
A new structural model for graphite oxide
Chemical Physics Letters · 1998 · 1,485 citations
Graphene-based composite materials
Nature · 2006 · 12,716 citations
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