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Product Code M2155F11-2EA
Price $338 ex. VAT

Graphene Film for Applications in Energy Generation and Storage

With a unique combination of novel electronic, optical, and mechanical properties


Overview | Product Information | Related Products


Graphene film (CAS number 1034343-98-0) consists of an atomically-thin layer or multiple ultra-thin layers of carbon atoms that are arranged in a hexagonal honeycomb lattice. When synthesized via chemical vapour deposition (CVD), the structure is polycrystalline in nature, with multiple small graphene domains growing to merge into a continuous film.

Compared to single-layer graphene, few-layer graphene has the potential to be developed into hybrid materials or heterostructures. Different substances can be intercalated into its layered structure.

Our high-quality monolayer graphene films were first grown directly on copper foil via the chemical vapour deposition (CVD) method. The films were later transferred to the desired substrates via the wet chemical graphene-transfer process.

Low price 1034343-98-0

Low Price

Affordable graphene film

High quality Graphene Few-Layer Film 1034343-98-0

High Quality

Monolayer and few-layer films different substrates

Versatile 1034343-98-0

Versatile

Ideal for a variety of applications

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General Information


CAS Number 1034343-98-0
Chemical Formula CxHy
Growth Method CVD synthesis
Form Film on substrate
Appearance Transparent
Purity >99%
Transparency >97%
Coverage >95%
Synonyms Graphene Graphene Film, Graphene Film
Classification or Family 2D semiconducting materials, Carbon nanomaterials, Nanomaterials, Polycyclic aromatic hydrocarbons, OLEDs, Organic photovoltaics (OPV), Organic electronics

Graphene Monolayer Film


Monlayer graphene structure, CAS 7782-42-5
Structure of a graphene monolayer, CAS 7782-42-5


Product Code M2155F11 M2156F11 M2315F11 M2316F11 M2157F50
Number of Layers 1 1 1 1 1
Substrate SiO2/Si PET Sapphire Quartz Copper foil
Size 1 cm x 1 cm 1 cm x 1 cm 1 cm x 1 cm 1 cm x 1 cm 5 cm x 10 cm
Transfer Method Wet chemical transfer Wet chemical transfer Wet chemical transfer Wet chemical transfer Directly grown
Sustrate Thickness 300 nm (oxide layer) 250 µm 300 µm 1 mm N/A
Sheet Resistance 400 ± 50 Ohms/sq 500 ± 50 Ohms/sq N/A N/A 450 ± 40 Ohms/sq

Graphene Few-Layer Film


Few-layer graphene structure, CAS 1034343-98-0
Structure of graphene few-layer film, CAS 1034343-98-0


Product Code M2158F11 M2159F11 M2317F11 M2318F11 M2160F50
Number of Layers 2 – 6 2 – 6 2 – 6 2 – 6 2 – 6
Substrate SiO2/Si PET Sapphire Quartz Copper foil
Size 1 cm x 1 cm 1 cm x 1 cm 1 cm x 1 cm 1 cm x 1 cm 5 cm x 10 cm
Transfer Method Wet chemical transfer Wet chemical transfer Wet chemical transfer Wet chemical transfer Directly grown
Sustrate Thickness 300 nm (oxide layer) 250 µm 300 µm 1 mm N/A
Sheet Resistance 400 ± 50 Ohms/sq 500 ± 50 Ohms/sq N/A N/A 450 ± 40 Ohms/sq

Custom Graphene Films


Different sizes and substrate types are also available via custom request. Other sizes include 1 cm x 2 cm, 2 cm x 2 cm, or custom-made sizes. Other substrates available are glass, nickel, and silicon.

Please contact us for more details.

MSDS Documentation


Graphene Monolayer

Graphene monolayer film on silicon MSDSGraphene monolayer film on silicon

Graphene Few-Layer

Graphene few-layer film on silicon MSDSGraphene few-layer film on silicon

Pricing


Product Code Substrate Quantity Price
M2155F11 / M2158F11 SiO2/Si 2 £250
M2155F11 / M2158F11 SiO2/Si 4 £410
M2156F11 / M2159F11 PET 2 £250
M2156F11 / M2159F11 PET 4 £410
M2315F11 / M2317F11 Sapphire 2 £250
M2315F11 / M2317F11 Sapphire 4 £410
M2316F11 / M2318F11 Quartz 2 £250
M2316F11 / M2318F11 Quartz 4 £410
M2157F50 / M2160F50 Copper foil 1 £520

More on Graphene Film


Graphene film was first isolated via mechanical exfoliation, also known as the Scotch-tape method. Chemical vapour deposition (CVD) and epitaxial methods were later developed and commonly used as alternative methods for growing research-grade single, bilayer, and few-layer graphene films. Graphene films can also be transferred to other substrates.

References


  • Transfer of CVD-Grown Monolayer Graphene onto Arbitrary Substrates, J. Suk et al., ACS Nano, 5 (9), 6916–6924 (2011); DOI: 10.1021/nn201207c.
  • Raman Studies of Monolayer Graphene: The Substrate Effect, Y. Wang et al., J. Phys. Chem. C, 112 (29), 10637–10640 (2008); DOI: 10.1021/jp8008404.
  • Large-scale pattern growth of graphene films for stretchable transparent electrodes, K. Kim et al., Nature, 457, 706–710 (2009); doi: 10.1038/nature07719.


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