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803715 Aldrich

Fe3O4/graphene nanocomposite

10 mg/mL, dispersion in acetone

Synonym: Fe3O4 decorated highly conductive graphene

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Properties

Related Categories 3D Printing Materials for Research and Development, Carbon Nanomaterials, Graphene and Graphene Oxide, Materials Science, Nanocomposites,
description   Loading Density: 30%-70% (Fe3O4 nanocrystal) by TEM
  Resistance: <103 Ω/sq (graphene)
form   dispersion
composition   acetone, ~80 wt. %
  Fe3O4 nanoparticle, 4-9%
  graphene, 3-8%
concentration   10 mg/mL in acetone
thickness   1-10 nm , graphene
particle size   5-25 nm (Fe3O4 nanocrystal)
storage temp.   2-8°C

Description

Application

• Electromagnetic wave absorption materials.
• Electro-magnetic device.
• Anode material for lithium-ion batteries.

Legal Information

Product of Ocean Nanotech, LLC.

Price and Availability


3D Printing

The Future of Bioimaging
Safety & Documentation

Safety Information

Symbol 
Signal word 
Danger
Hazard statements 
Supplemental Hazard Statements 
Repeated exposure may cause skin dryness or cracking.
RIDADR 
UN1090 - class 3 - PG 2 - Acetone, solution
WGK Germany 
3
Flash Point(F) 
59 °F
Flash Point(C) 
15 °C

Documents

Certificate of Analysis

Protocols & Articles

Articles

3D Printing Graphene Ink: Creating Electronic and Biomedical Structures and Devices

Adam E. Jakus, Ph.D.1,3*, Ramille N. Shah, Ph.D.1,2,3 1Materials Science and Engineering, McCormick School of Engineering, Northwestern University, Evanston, IL 60208 USA 2Comprehensive Transplant Ce...
Adam E. Jakus, Ph.D., Ramille N. Shah, Ph.D.
Material Matters, 2016, 11.2
Keywords: Biomaterials, Cancer, Deposition, Electronics, Evaporation, Gene expression, Nanotechnology, Solvents

3D Printing of Carbon Fiber-Reinforced Composites

3D printing is a type of additive manufacturing that can be used to rapidly fabricate components with highly customizable geometries, most typically using a layer-by-layer fabrication process. 3D pri...
Zhenyu Bo* (Ph.D Candidate at Northwestern University) and Jia Choi*, PhD, Product Manager


*Materials Science Product Management Team, MilliporeSigma, Milwaukee, WI.
Keywords: Deposition, Nanomaterials, Nanotubes

Graphene and Other 2D Crystals for Rechargeable Batteries

Francesco Bonaccorso,* Vittorio Pellegrini Istituto Italiano di Tecnologia, Graphene Labs, 16163, Genova, Italy *Email: francesco.bonaccorso@iit.it
Francesco Bonaccorso, Vittorio Pellegrini
Material Matters, 2016, 11.1, 15
Keywords: Adhesion, Adsorption, Automotive, Chemical vapor deposition, Degradations, Deposition, Diffusion, Electronics, Environmental, Lithiations, Nanomaterials, Nucleic acid annealing, Oxidations, Reductions, Renewable energy, Separation, Solvents, Sonication

Graphene-Based Composites and their Unique Renewable Energy Applications

Wen Qian, Andrew Y. Wang* Ocean NanoTech, LLC, San Diego, CA 92126, USA *Email: awang@oceannanotech.com
Keywords: Catalysis, Nanotubes, Oxidations, Purification, Recombination, Reductions, Renewable energy, Semiconductor, Separation

Related Content

Graphene and New Monoatomic Materials: Using 2-Dimensional Nanosheets in a 3-Dimensional World Webinar

Chemists have been able to manipulate graphene by enhancing its processibility and versatility. It is possible to tailor graphene, using covalent or supramolecular chemistry, into a variety of forms ...
Keywords: Catalysis, Crystallization, Electronics, Nanomaterials, Nanotechnology, Organic electronics, Polymerization reactions, Semiconductor

Probing Dirac Electron Physics in Graphitic Materials Webinar

Electrons in monolayer graphene are described by massless Dirac electrons, which exhibit unique quantum phenomena due to the pseudospin and Berry phase of the massless electron. In this talk, Dr. Fen...
Keywords: Electronics, Nanomaterials, Nanotubes

Peer-Reviewed Papers
15

References

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