Carbon Nanotube Fibres, Fiber Diameter: 5-12 µm, Tensile Strength 1200-1500 MPa, Electrical conductivity 5×10^4~7×10^4 S/m

Price range: $674.00 through $2,933.00
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Carbon Nanotube Fibres, Fiber Diameter: 5-12 µm, Tensile Strength 1200-1500 MPa, Electrical conductivity 5×104~7×104 S/m Carbon nanotube fibers have moderate to high strengths. Also, they possess good electrical conductivity and very low density. Due to these properties, carbon nanotube fibers can be integrated into fabrics and composites. Their area of usage involves their use as stand-alone or embedded sensors. Moreover, their high strength, stiffness, thermal and electrical conductivity enable their use as functional reinforcements in composite materials, in active heating/cooling systems, electrical conductivity/EMI shielding mechanisms such as CNT/epoxy composites and in atmospheric anti-threat detection in UAVs.

Carbon Nanofibers, Purity: > 96%, Outside Diameter: 190-590 nm

Price range: $15.00 through $2,766.00
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Carbon Nanofibers

Purity: > 96%,  Outside Diameter: 190-590 nm

Carbon nanofibers (CNFs) are fibrous carbon nanomaterials, have average diameters ranging from 125 to 150 nm depending upon the grade, and have lengths ranging from 50 to 100 µm. Carbon nanofibers (CNFs) have shown expectancy for many potential applications such as polymer reinforcements, energy storage materials, electrical devices, self-sensing devices and catalysts or catalyst supports.Most likely, we will see these carbon nanofibrous materials in many more applications across scientific and technological disciplines in the future. For applications requiring the highest uniformity in size and shape, we offer Carbon nanofibers with low price and high purity.

Carbon Nanotube Fibres, Fiber Diameter: 5-12 µm, Tensile Strength 1000-1200 MPa, Electrical conductivity 5×10^4~7×10^4 S/m

Price range: $552.00 through $2,373.00
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Carbon Nanotube Fibres, Fiber Diameter: 5-12 µm, Tensile Strength 1000-1200 MPa, Electrical conductivity 5×104~7×104 S/m Carbon nanotube fibers have moderate to high strengths. Also, they possess good electrical conductivity and very low density. Due to these properties, carbon nanotube fibers can be integrated into fabrics and composites. Their area of usage involves their use as stand-alone or embedded sensors. Moreover, their high strength, stiffness, thermal and electrical conductivity enable their use as functional reinforcements in composite materials, in active heating/cooling systems, electrical conductivity/EMI shielding mechanisms such as CNT/epoxy composites and in atmospheric anti-threat detection in UAVs.

Single Layer Graphene Oxide, Purity: 99.5 %, Size: 1 nm

Price range: $186.00 through $1,856.00
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Single layer graphene oxide is a mono-atomic layer of highly oxidized carbon atoms, manufactured by chemical oxidation of graphite. Graphene oxide layers are about 1.1 ± 0.2 nm thick. Monolayer graphne oxide can be embedded in different ceramic or polymeric matrices to enhance electrical, thermal and mechanical properties. Thanks to its excellent properties of single-layer graphene oxide, it has been involved in many applications such as Graphene and polymers manufacture, water purification, flexible rechargeable battery electrode, optically transparent films, papers, sensors, nanocarriers for metal catalysis, anti-electrostatic additives and many more. We are committed to provide high quality single layer graphene oxide with competitive prices and fast shipping.

Carbon Nanotube Fibres, Fiber diameter: 5-12 µm, Tensile Strength: 800-1000 MPa, Electrical conductivity: 5×10^4~7×10^4 S/m

Price range: $390.00 through $1,687.00
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Carbon Nanotube Fibres, Fiber Diameter: 5-12 µm, Tensile Strength 800-1000 MPa, Electrical conductivity 5×104~7×104 S/m Carbon nanotube fibers have moderate to high strengths. Also, they possess good electrical conductivity and very low density. Due to these properties, carbon nanotube fibers can be integrated into fabrics and composites. Their area of usage involves their use as stand-alone or embedded sensors. Moreover, their high strength, stiffness, thermal and electrical conductivity enable their use as functional reinforcements in composite materials, in active heating/cooling systems, electrical conductivity/EMI shielding mechanisms such as CNT/epoxy composites and in atmospheric anti-threat detection in UAVs.

Monolayer Graphene on SiO2/Si Substrate, Size: 3″

Price range: $333.00 through $1,409.00
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Applications:

Graphene research; Supercapacitors; Catalyst; Solar energy; Graphene optoelectronics, plasmonics and nanophotonics; Graphene semiconductor chips; Conductive graphene film; Graphene computer memory; Biomaterials and Bioelectronics.

Carbon Nanotube Fibres, Fiber diameter: 60-80 µm, Tensile Strength: 310-500 MPa, Electrical conductivity: 1×10^5~2×10^5 S/m

Price range: $300.00 through $1,127.00
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Carbon Nanotube Fibres, Fiber diameter: 60-80 µm, Tensile Strength: 310-500 MPa, Electrical conductivity: 1×105~2×105 S/m Carbon nanotube fibers have moderate to

Reduced Graphene Oxide (rGO), S.A: 1562 m2/g, 2-5 layers

Price range: $54.00 through $1,014.00
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Reduced Graphene Oxide (rGO) is derived by deoxygenation of graphene oxide via chemical, thermal, electrochemical process or through IR or UV irradiation to get a powder form. Reduced graphene oxide is the most suitable solution for bulk material applications such as energy storage thanks to be manufactured easily in large quantities with desired quantity level. For applications requiring the highest uniformity in size, we offer high purity of Reduced Graphene Oxide (rGO) with lowest prices.

Graphene NMP Dispersion, Purity: 99.5%, Graphene: 2,0 wt%

Price range: $112.00 through $675.00
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Graphene NMP Dispersion, Purity: 99.5%, Graphene: 2,0 wt%
Graphene Purity (%) 99,5
Graphene Thickness (nm) 0,6-1,2
Diameter (µm) 2,0-12,0
Appearance Black Liquid
Concentration (wt%) 2,0 (mg/ml)
Specific Surface Area (m2/g) 600-1200
Elemental Analysis (%) C            O 99,6    <0,4
Surfactant                                                                                                           YES

Graphitized Carbon Nanofiber, Purity: 99.95%, Size: 200-600 nm

Price range: $92.00 through $425.00
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Applications:

Chemical vapor deposition (CVD) produces extremely pure Carbon Nanofibers (>99,9%). Following annealing (graphitization) for a further 24 hours at 3000 °C, the material exhibits exceptional purity and excellent electrical and thermal conductivity. Because of its conductivity and mechanical qualities, carbon nanofiber (CNF) is a desirable substance that resembles carbon nanotubes. It is regularly utilized and researched in a variety of applications, including chemical catalysis, energy conversion, hydrogen storage, rechargeable batteries, electrodes, lithography, EMI shielding, super capacitors, sensors, displays, medical research, and polymer/composite reinforcement work.

Iron Nickel (Fe-Ni) Alloy Nanopowder/Nanoparticles, Size: 30-90 nm, Fe:Ni/5:5

$344.00
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Please contact us for quotes on larger quantities !!!

Iron Nickel (Fe-Ni) Alloy Nanopowder/Nanoparticles

Size: 30-90 nm, Fe:Ni/5:5

Technical Properties:

Alloy Ratio (Fe-Ni) 50-50
Average Particle Size (nm) 30-90

Properties, Storage and Cautions:

Fe-Ni alloy nanoparticles are highly reactive, therefore it should be handled with care and rapid moves, vibrations should be avoided. The powder should be kept away from sunlight, any kind of heating, moisture and impacts. Coagulation of the particles is a serious problem, so, the powder should be sealed under vacuum and should be kept in cool and dry conditions. Air contact should be avoided.

Iron Nickel (Fe-Ni) Alloy Nanopowder/Nanoparticles, Size: 35-95 nm, Fe:Ni/2:8

Iron Nickel (Fe-Ni) Alloy Nanopowder/Nanoparticles

Size: 35-95 nm, Fe:Ni/2:8

Technical Properties:

Alloy Ratio (Fe-Ni) 20-80
Average Particle Size (nm) 35-95

Properties, Storage and Cautions:

Fe-Ni alloy nanoparticles are highly reactive, therefore it should be handled with care and rapid moves, vibrations should be avoided. The powder should be kept away from sunlight, any kind of heating, moisture and impacts. Coagulation of the particles is a serious problem, so, the powder should be sealed under vacuum and should be kept in cool and dry conditions. Air contact should be avoided.

Applications:

Fe-Ni alloys are known for their low thermal expansion coefficient and high dimensional stability. They can be used in motor valves, watches, clocks, precision tools etc.