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      1. ʯīϩDʯīϩbCVDʯīϩTEMWXĤʯīϩΌʯīϩҺʯīϩ{

        ʯīϩ


        ʯīϩ
        Graphene

        Graphene Transfer Tape ʯīϩDz
        Graphene Transfer Kit ʯīϩDb
        Graphene Film Trial Kit ʯīϩĤb
        Graphene Nanopowder Trial kit ʯīϩ{׷ĩb
        Graphene Transfer Kit ʯīϩDb
        Graphene Kit: Beginner's Value Package ʯīϩb
        Graphene Kit: Scotch Tape Value Packageʯīϩb
        CVD Graphene TEM Grid on Copper 2000 support~CVDʯīϩTEMW
        CVD Graphene TEM Grid on Lacey Carbon Support ̼CVDʯīϩTEMW
        Trial pack 10 CVD Graphene TEM Grids CVDʯīϩTEMWb
        Graphene on Aluminum FoilXĤʯīϩ
        Pristine Graphene Monolayer FlakesΌʯīϩҺ
        Graphene Nano-Starsʯīϩ{

         

        ʯīϩD Graphene Transfer
        Graphene Transfer Tape
        ʯīϩDz
        5 Pack ʯīϩDz Thermal Release Tape, 5 pack

        Specifications:
        Size: 200 mm x 200 mm
        One-sided
        100oC release temperature

        The procedure for transferring graphene with the thermal release tape is simple; however, it is difficult to obtain continuous coverage. If continuous coverage is not a requirement, graphene transfer using our thermal release tape may be the best option for you.

        Using thermal release tape, the residue is low; however, there is only about 70% coverage and the graphene is not continuous. Using PMMA, there may be mild contamination, but it is high-quality, continuous graphene, at 99% coverage. If you require complete continuous coverage, we strongly recommend purchasing graphene on substrates transferred using the PMMA method at our laboratory.
        Graphene Transfer Kit
        ʯīϩDb
        ʯīϩDb Graphene Transfer Kit includes:
        Two graphene release Tapes (Size: 200 mm x 200 mm)
        Single Layer Graphene on Copper foil: 2"x2"
        Trial pack: Twenty 10mmx10mm samples, Graphene Film on Nickel

        Specifications of transfer tape:
        Size: 200 mm x 200 mm
        One-sided
        100oC release temperature

        The procedure for transferring graphene with the thermal release tape is simple; however, it is difficult to obtain continuous coverage. If continuous coverage is not a requirement, graphene transfer using our thermal release tape may be the best option for you.

        Using thermal release tape, the residue is low; however, there is only about 70% coverage and the graphene is not continuous. Using PMMA, there may be mild contamination, but it is high-quality, continuous graphene, at 99% coverage. If you require complete continuous coverage, we strongly recommend purchasing graphene on substrates transferred using the PMMA method at our laboratory.
        ʯīϩb Graphene Value Kits
        Graphene Film Trial Kit
        ʯīϩĤb
        ʯīϩĤb Includes:
        Two Single/Double Layer Graphene samples on 285 nm Silicon Dioxide Wafers: 1cm x 1 cm
        Two 10mmx10mm samples, Graphene Film on Nickel: 1 cm x 1 cm
        One sample of Multilayer Graphene on a 285 nm Silicon Dioxide Wafer: 1 cm x 1 cm
        One sample of Monolayer Graphene on a 285 nm Silicon Dioxide Wafer: 1 cm x 1 cm
        One sample of Monolayer Graphene on Glass: 1" x 1"

        If you are interested in investigating numerous different samples of graphene coatings, this trial kit is ideal. All of the samples are made by Chemical Vapor Deposition and give a strong Raman signal.

        A great value for students and scientific researchers alike interested in trying different samples.
        Graphene Nanopowder Trial kit
        ʯīϩ{׷ĩb
        ʯīϩ{׷ĩb Includes:
        Graphene Nanopowder Grade AO-2, 1 g
        Graphene Nanopowder Grade AO-3, 5 g
        Graphene Nanopowder Grade AO-4, 5 g
        Graphene Nanopowder Grade C-1, 5 g
        Graphene Kit: Beginner's Value Package
        ʯīϩb
        ʯīϩb Perfect for students and teachers.

        This kit may be used to exfoliate graphene using the "scotch tape method." The material may also be deposited onto the wafers to examine under Raman. Please note that you will not be able to create continuous films using this kit, it is for educational purposes. If you require continuous graphene films, consider our Graphene Film Trial Kit

        Graphene Kit includes:
        Kish Graphite (grade 200): 1 gram.
        Graphene Oxide (Aqueous Dispersion): 25 ml
        Pristine graphene in solution: 25 ml.
        Eight small Silicon/ 300 nm Silicon Dioxide wafers: 10 mmx10 mm squares.
        Graphene Scotch tape: 1 roll.
        Graphene Kit: Scotch Tape Value Package
        ʯīϩb
        ʯīϩb Graphene Kit includes:
        Our Premium Kish Graphite (grade 300): 0.2 gram.
        One Silicon/ 285 nm Silicon Dioxide wafer: 4" Diameter
        Graphene Scotch tape: 1 roll.
        ʯīϩTEMW Graphene TEM grids
        CVD Graphene TEM Grid on Copper 2000 support
        ~CVDʯīϩTEMW
        5 pack ~CVDʯīϩTEMW CVD Graphene film deposited on Copper TEM grids (2000 Mesh)

        We use CVD graphene grown on Ni to prepare TEM grids

        Thickness of CVD Graphene film: 0.3-2 nm (1-6 monolayers)
        Typical graphene coverage:60-90%

        Ultrathin CVD Graphene grids provide the ideal specimen support to achieve high resolution data in TEM imaging making them an ideal choice many TEM applications.
        25 pack ~CVDʯīϩTEMW
        CVD Graphene TEM Grid on Lacey Carbon Support
        ̼CVDʯīϩTEMW
        5 pack ̼CVDʯīϩTEMW CVD Graphene film deposited on lacey carbon TEM grids, 300 Mesh.

        We use CVD graphene grown on Ni to prepare TEM grids

        Thickness of CVD Graphene film: 0.3-2 nm (1-6 monolayers)
        Typical graphene coverage:60-90%

        Ultrathin CVD Graphene grids provide the ideal specimen support to achieve high resolution data in TEM imaging making them an ideal choice many TEM applications.
        25 pack ̼CVDʯīϩTEMW
        Trial pack 10 CVD Graphene TEM Grids
        CVDʯīϩTEMWb
        CVDʯīϩTEMWb Trial pack: 10 CVD Graphene TEM grids

        includes:
        5 CVD Graphene film deposited on lacey carbon TEM grids (300 Mesh) and 5 CVD Graphene film deposited on Copper TEM grids (2000 Mesh).

        We use CVD graphene grown on Ni to prepare TEM grids

        Thickness of CVD Graphene film: 0.3-2 nm (1-6 monolayers)
        Typical graphene coverage:60-90%

        Ultrathin CVD Graphene grids provide the ideal specimen support to achieve high resolution data in TEM imaging making them an ideal choice many TEM applications.
        ʯīϩĤ Graphene Coatings
        Graphene on Aluminum Foil
        XĤʯīϩ
        XĤʯīϩ Aluminium foil coated with graphene nanoplatelets

        9"x8.5"
        5 Sheets

        Properties of graphene coating:
        Average Thickness: 3.5nm
        Lateral Size of individual graphene flakes: 5-10m
        The flakes coat the surface to form a conductive layer

        Properties of aluminum foil:
        Thickness: 16m
        Electrical Resistivity- 4.5x10-6 .cm

        In the lithium ion battery industry -- which includes mobile phones, notebooks, hybrid electric vehicles, etc -- aluminium foil coated with graphite, carbon black, or carbon nanotubes is used as a positive electrode's electron collector. When coated with graphene, the aluminium foil has significantly improved electrical resistivity; aluminum foil coated with graphene is 4.5x10-6 .cm, whereas foil coated with carbon black is 7x10-6 .cm.

        This product may be supplied on a roll - 0.5m width, up to 2000m length

        SEMD1 / SEMD2 / VD /
        ʯīϩҺ Graphene Solutions
        Pristine Graphene Monolayer Flakes
        ΌʯīϩҺ
        50 ml ΌʯīϩҺ Dispersion in ethanol.

        Concentration: 1 mg/L
        Carbon content: 99.99%
        Ultrapure: no oxidation, no surfactants
        Average flake thickness: 0.35 nm (1 monolayer)
        Average Particle (lateral) size: ~ 550 nm (150-3000) nm.
        ʯīϩ{ Graphene Nano-Stars
        Graphene Nano-Stars
        ʯīϩ{
        0.25 g ʯīϩ{ Graphene Nano-Stars are made of graphene sheets which are wrapped and form cone shapes. One end of the cone is capped similar to a fullerene. Each cone is 30-50 nm in length and 2-5 nm in diameter. These cones tend to group together and form a cluster which can be characterized as nano-stars.

        Graphene Nano-Stars have many of the same properties as graphene C high electrical and thermal conductivity, as well as ease of functionalization.

        Properties:
        Diameter: 3-5 nm
        Length: 30-50 nm
        Cluster diameter: 60-120 nm
        Density: 1.1 g/cm3
        Bulk density: >15 g/dm3
        Active surface: 250 m2/g

        SEMD / TEMD1 / TEMD2

         


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