Carbon Nanotube (CNT) Nanoribbon Water Dispersion, 0.5 mg/mL

Price range: $42.00 through $424.00
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Technical Properties: Purity:   > 95 wt% (carbon nanotubes) Outside diameter: 20-30 nm Inside diameter: 5-10 nm Length: 10-30 um SSA: > 110 m2/g

Carbon Nanotube (CNT) Nanoribbon Water Dispersion, 0.5 mg/mL

Price range: $40.00 through $405.00
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Manufacturing Method: Strong oxidizing substances are used in chemical oxidation and longitudinal opening to make ribbon.

Carbon Nanotube (CNT) Nanoribbon Water Dispersion, 0.5 mg/mL

Price range: $43.00 through $436.00
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Manufacturing Method:Ribbon is produced by chemical oxidation and longitudinal opening using strong oxidizing agents.

Carbon Nanotube (CNT) Nanoribbon Water Dispersion, 1 mg/mL

Price range: $54.00 through $631.00
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Technical Properties: Purity:   > 95 wt% (carbon nanotubes) Outside diameter: 20-30 nm Inside diameter: 5-10 nm Length: 10-30 um SSA: > 110 m2/g

Carbon Nanotube (CNT) Nanoribbon Water Dispersion, 1 mg/mL

Price range: $55.00 through $649.00
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Manufacturing Method:Ribbon is produced by chemical oxidation and longitudinal opening using strong oxidizing agents.  

Carbon Nanotube (CNT) Nanoribbon Water Dispersion, 2 mg/mL

Price range: $84.00 through $1,126.00
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Manufacturing Method:Ribbon is produced by chemical oxidation and longitudinal opening using strong oxidizing agents.

Carbon Nanotube Buckypaper with Metal 0.8%, Thickness: 28 µm, Diameter: 35-39 mm

Price range: $151.00 through $682.00
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Applications:

Carbon Nanotubes are used in a variety of applications. Buckypapers with metals are strong and have good electrical conductivity. They can be used for the following purposes: 1-Transmission of electricity and heat. 2- super capacitors. 3-Shielding against electromagnetic interference. 4-Electrodes are used in fuel cells, supercapacitors, and batteries. 5-Extremely strong structures. 6-Medical equipment. 7-Displays with seven flat panels.

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.

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 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.

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

Carbon Nanotube Sponges, Size: 10 mm x 10 mm, Thickness: 1-2 mm

$144.00
Carbon Nanotube Sponges, Size: 10 mm x 10 mm, Thickness: 1-2 mm The carbon nanotube sponge structure is uniform and they possess good mechanical strength, good flexibility, high porosity and low density. They can be used as a purifying agent in order to absorb pollutants. These pollutants can be fertilizers, pesticides or pharmaceuticals found in water, energy storage materials, catalyst carriers or in high-efficiency composite materials.

Carbon Nanotube Sponges, Size: 10 mm x 10 mm, Thickness: 3-4 mm

Price range: $151.00 through $563.00
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Carbon Nanotube Sponges, Size: 10 mm x 10 mm, Thickness: 3-4 mm The carbon nanotube sponge structure is uniform and they possess good mechanical strength, good flexibility, high porosity and low density. They can be used as a purifying agent in order to absorb pollutants. These pollutants can be fertilizers, pesticides or pharmaceuticals found in water, energy storage materials, catalyst carriers or in high-efficiency composite materials.

Carbon Nanotube Sponges, Size: 20 mm x 20 mm, Thickness: 1-2 mm

Price range: $328.00 through $1,573.00
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Carbon Nanotube Sponges, Size: 20 mm x 20 mm, Thickness: 1-2mm The carbon nanotube sponge structure is uniform and they possess good mechanical strength, good flexibility, high porosity and low density. They can be used as a purifying agent in order to absorb pollutants. These pollutants can be fertilizers, pesticides or pharmaceuticals found in water, energy storage materials, catalyst carriers or in high-efficiency composite materials.

Carbon Nanotube Sponges, Size: 20 mm x 20 mm, Thickness: 3-4 mm

Price range: $416.00 through $1,771.00
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Carbon Nanotube Sponges, Size: 20 mm x 20 mm, Thickness: 3-4 mm The carbon nanotube sponge structure is uniform and they possess good mechanical strength, good flexibility, high porosity and low density. They can be used as a purifying agent in order to absorb pollutants. These pollutants can be fertilizers, pesticides or pharmaceuticals found in water, energy storage materials, catalyst carriers or in high-efficiency composite materials.

Carbon Nanotube Sponges, Size: 50 mm x 10 mm, Thickness: 1-2 mm

Price range: $345.00 through $1,675.00
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Carbon Nanotube Sponges, Size: 50 mm x 10 mm, Thickness: 1-2 mm The carbon nanotube sponge structure is uniform and they possess good mechanical strength, good flexibility, high porosity and low density. They can be used as a purifying agent in order to absorb pollutants. These pollutants can be fertilizers, pesticides or pharmaceuticals found in water, energy storage materials, catalyst carriers or in high-efficiency composite materials.

Carbon Nanotube Sponges, Size: 50 mm x 10 mm, Thickness: 3-4 mm

Price range: $494.00 through $2,139.00
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Carbon Nanotube Sponges, Size: 50 mm x 10 mm, Thickness: 3-4 mm The carbon nanotube sponge structure is uniform and they possess good mechanical strength, good flexibility, high porosity and low density. They can be used as a purifying agent in order to absorb pollutants. These pollutants can be fertilizers, pesticides or pharmaceuticals found in water, energy storage materials, catalyst carriers or in high-efficiency composite materials.

Carbon Nanotube Sponges, Size: 50 mm x 20 mm, Thickness: 1-2 mm

Price range: $596.00 through $3,101.00
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Carbon Nanotube Sponges, Size: 50 mm x 20 mm, Thickness: 1-2mm The carbon nanotube sponge structure is uniform and they possess good mechanical strength, good flexibility, high porosity and low density. They can be used as a purifying agent in order to absorb pollutants. These pollutants can be fertilizers, pesticides or pharmaceuticals found in water, energy storage materials, catalyst carriers or in high-efficiency composite materials.

Carbon Nanotube Sponges, Size: 50 mm x 20 mm, Thickness: 3-4 mm

Price range: $888.00 through $4,120.00
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Carbon Nanotube Sponges, Size: 50 mm x 20 mm, Thickness: 3-4 mm The carbon nanotube sponge structure is uniform and they possess good mechanical strength, good flexibility, high porosity and low density. They can be used as a purifying agent in order to absorb pollutants. These pollutants can be fertilizers, pesticides or pharmaceuticals found in water, energy storage materials, catalyst carriers or in high-efficiency composite materials.

Carbon Nanotube-Carbon Black Prepared by Electrostatic Adsorption, CNTs: 34.4 wt%, Carbon Black: 65.6 wt%

Price range: $147.00 through $626.00
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5 grams/134 € 25 grams/253 € 100 grams/568 €                                    
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Carbon Nanotube-Black Carbon Prepared by Electrostatic Adsorption

CNTs: 34.4 wt%, Carbon Black: 65.6 wt%

Technical Properties:

Carbon Nanotubes > 95 wt%
Purity >50
Outside Diameter (nm) 5.0-15.0
Inside Diameter (nm) 5.0-20.0
Length (μm) CVD
Color black
Super Conductive Black Carbon Nanoparticles 
Average Particle Size (nm) 50-100
Shape spherical
CNTs 33.3 wt%, Carbon Black 66.7 wt%
Specific Surface Area (m2/g) 560
Volume Resistivity (Ω.cm) <1
Volume Resistivity Content Relationship
CNTs Content wt%  0.00  25.00  33.30  60.00
Volume Resistivity (Ω·cm)  0.2150  0.1544  0.1332  0.1198

Applications:

Super conductive black carbon nanoparticles surface is usually negatively charged. Carbon nanotubes are treated with cationic surfactant (Cetyl trimethyl ammonium bromide). Carbon nanotubes and black carbon self assemble to form a uniform stable complex. The complex shows high strength and conductivity which makes it suitable for processing into conductive plastics, conductive sheets, and films.  

Carbon Nanotube-Carbon Black Prepared by Electrostatic Adsorption, CNTs: 34.4 wt%, Carbon Black: 65.6 wt%

Price range: $149.00 through $624.00
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Applications:

The surface of superconductive black carbon nanoparticles is usually negatively charged. A cationic surfactant (Cetyl trimethyl ammonium bromide) is used to treat carbon nanotubes. Carbon nanotubes and black carbon self-assemble to form a stable complex that is uniform. Because of its high strength and conductivity, the complex is suitable for processing into conductive plastics, conductive sheets, and conductive films.

Carbon Nanotube-Carbon Black Prepared by Electrostatic Adsorption, CNTs: 34.4 wt%, Carbon Black: 65.6 wt%

Price range: $149.00 through $624.00
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Carbon Nanotube-Black Carbon Prepared by Electrostatic Adsorption CNTs: 34.4 wt%, Carbon Black: 65.6 wt% Technical Properties: Carbon Nanotubes > 95

Carbon Nanotube-Carbon Black Prepared by Electrostatic Adsorption, CNTs: 34.4 wt%, Carbon Black: 65.6 wt%

Price range: $151.00 through $643.00
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Applications:

Super conductive black carbon nanoparticles surface is usually negatively charged. Carbon nanotubes are treated with cationic surfactant (Cetyl trimethyl ammonium bromide). Carbon nanotubes and black carbon self assemble to form a uniform stable complex. The complex shows high strength and conductivity which makes it suitable for processing into conductive plastics, conductive sheets, and films.  

Carbon Nanotube-Mica Prepared by Electrostatic Adsorption, CNTs: 15 wt%; Mica: 85 wt%

Price range: $91.00 through $466.00
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Carbon Nanotube-Mica Prepared by Electrostatic Adsorption

CNTs: 15 wt%; Mica: 85 wt%

Technical Properties:

Carbon Nanotubes
Purity >95 wt%
Outside Diameter (nm) >50
Inside Diameter (nm) 5.0-15.0
Length (μm) 5.0-20.0
Manufacturing Method CVD
Color black
CNTs 10 wt%; Mica 90 wt%
Specific Surface Area (m2/g) 10
Volume Resistivity (Ω.cm) <5

Applications:

Mica is a layered structure of potassium aluminum silicate, the surface of Mica is negatively charged. Carbon nanotubes are treated with cationic surfactant (Cetyl trimethyl ammonium bromide). Carbon Nanotube-Mica self assemble by electrostatic adsorption forming uniform and stable complex. It is easy to disperse and has good static conductive properties. It also show excellent mechanical and corrosion resistance properties. It can be used in petrochemical industry, coal industry and many coating.  

Carbon Nanotube-Mica Prepared by Electrostatic Adsorption, CNTs: 15 wt%; Mica: 85 wt%

Price range: $91.00 through $466.00
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Carbon Nanotube-Mica Prepared by Electrostatic Adsorption CNTs: 15 wt%; Mica: 85 wt% Technical Properties: Carbon Nanotubes Purity >95 wt% Outside

Carbon Nanotube-Mica Prepared by Electrostatic Adsorption, CNTs: 15 wt%; Mica: 85 wt%

Price range: $93.00 through $478.00
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Applications:

Mica is a layered structure of potassium aluminum silicate, the surface of Mica is negatively charged. Carbon nanotubes are treated with cationic surfactant (Cetyl trimethyl ammonium bromide). Carbon Nanotube-Mica self assemble by electrostatic adsorption forming uniform and stable complex. It is easy to disperse and has good static conductive properties. It also show excellent mechanical and corrosion resistance properties. It can be used in petrochemical industry, coal industry and many coating.

Carbon Nanotube-TiO2 Prepared by Electrostatic Adsorption, CNTs: 15 wt%, TiO2-rutile: 85 wt%

Price range: $91.00 through $549.00
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Carbon Nanotube-TiO2 Prepared by Electrostatic Adsorption

CNTs: 15 wt%, TiO2-rutile: 85 wt%

Technical Properties:

Carbon Nanotubes
Purity > 95 wt%
Outside Diameter (nm) > 50
Inside Diameter (nm) 5.0-15.0
Length (μm) 5.0-20.0
Manufacturing Method CVD
Color black
TiO2 (Rutile) Nanoparticles
Average Particle Size (nm) 100-300
Shape spherical
CNTs 10 wt%, TiO2-rutile 90 wt%
Specific Surface Area (m2/g) 15,5
Volume Resistivity (Ω.cm) <5

Applications:

Carbon Nanotube-TiO2 is prepared by electrostatic interactions. Carbon nanotubes are treated by cationic surfactant (Cetyl trimethyl ammonium bromide). TiO2 rutile and CNTs self-assemble to form a uniform and stable complex. It is easy to disperse and has good static conductive properties. It also show excellent mechanical and corrosion resistance properties. It can be used in petrochemical industry, coal industry and many coating fields.  

Carbon Nanotube-TiO2 Prepared by Electrostatic Adsorption, CNTs: 15 wt%, TiO2-rutile: 85 wt%

Price range: $92.00 through $548.00
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Carbon Nanotube-Mica Prepared by Electrostatic Adsorption CNTs: 15 wt%; Mica: 85 wt% Technical Properties: Carbon Nanotubes Purity >95 wt% Outside

Carbon Nanotube-TiO2 Prepared by Electrostatic Adsorption, CNTs: 15 wt%, TiO2-rutile: 85 wt%

Price range: $93.00 through $563.00
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Applications:

Carbon Nanotube-TiO2 is prepared by electrostatic interactions. Carbon nanotubes are treated by cationic surfactant (Cetyl trimethyl ammonium bromide). TiO2 rutile and CNTs self-assemble to form a uniform and stable complex. It is easy to disperse and has good static conductive properties. It also show excellent mechanical and corrosion resistance properties. It can be used in petrochemical industry, coal industry and many coating fields.

Carbon Nanotube-TiO2 Prepared by Electrostatic Adsorption, CNTs: 25 wt%, TiO2-rutile: 75 wt%

Price range: $120.00 through $550.00
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Carbon Nanotube-TiO2 Prepared by Electrostatic Adsorption

CNTs: 25 wt%, TiO2-rutile: 75 wt%

Technical Properties:

Carbon Nanotubes
Purity > 95 wt%
Outside Diameter (nm) >50
Inside Diameter (nm) 5.0-15.0
Length (μm) 5.0-20.0
Manufacturing Method CVD
Color black
TiO2 (Rutile) Nanoparticles
Average Particle Size (nm) 100-300
Shape spherical
CNTs 20 wt%, TiO2-rutile 80 wt%
Specific Surface Area (m2/g) 18,5
Volume Resistivity (Ω.cm) <2

Applications:

Carbon Nanotube-TiO2 is prepared by electrostatic interactions. Carbon nanotubes are treated by cationic surfactant (Cetyl trimethyl ammonium bromide). TiO2 rutile and CNTs self-assemble to form a uniform and stable complex. It is easy to disperse and has good static conductive properties. It also show excellent mechanical and corrosion resistance properties. It can be used in petrochemical industry, coal industry and many coating fields.  

Carbon Nanotube-TiO2 Prepared by Electrostatic Adsorption, CNTs: 25 wt%, TiO2-rutile: 75 wt%

Price range: $129.00 through $609.00
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Carbon Nanotube-TiO2 Prepared by Electrostatic Adsorption CNTs: 25 wt%, TiO2-rutile: 75 wt% Technical Properties: Carbon Nanotubes Purity > 95 wt%

Carbon Nanotube-TiO2 Prepared by Electrostatic Adsorption, CNTs: 25 wt%, TiO2-rutile: 75 wt%

Price range: $123.00 through $564.00
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Applications:

Carbon Nanotube-TiO2 is prepared by electrostatic interactions. Carbon nanotubes are treated by cationic surfactant (Cetyl trimethyl ammonium bromide). TiO2 rutile and CNTs self-assemble to form a uniform and stable complex. It is easy to disperse and has good static conductive properties. It also show excellent mechanical and corrosion resistance properties. It can be used in petrochemical industry, coal industry and many coating fields.

Carbon Nanotubes Doped with 32 wt% Graphene Nanopowder/Nanoparticles

Price range: $41.00 through $2,633.00
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Applications of Carbon Nanotubes Doped with 32 wt% Graphene

Carbon NanoTubes doped with Graphene nanoplatelets show effective improvements in electrical and mechanical properties. Such improvements include; hardness, tensile strength, specific strenght, and elastic  modulus. These improvements result in wide usage of these materials for different applications. Some of these applications include; drug delivery, biosensors, CNT composites, catalysis, nanoprobes, hydrogen storage, lithium batteries, gas-discharge tubes, flat panel displays, supercapacitors, transistors, solar cells, photoluminescence, templates.

Carbon Nanotubes Doped with 32 wt% Silicon (Si) and 32 wt% Graphene Nanopowder/Nanoparticles

Price range: $108.00 through $627.00
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Applications:  

Carbon NanoTubes doped with Graphene nanoplatelets and Silicon nanopowders demonstrate significant improvements in electrical and mechanical properties. Hardness, tensile strength, specific strength, and elastic modulus are examples of such enhancements. Because of these advancements, these materials are now widely used in a variety of applications. Some of these programs. 1 -drug delivery, 2 biosensors, 3 CNT composites 4-catalysis, 5-nanoprobes, Storage of 6-hydrogen, 7-lithium-ion batteries, There are 8 gas discharge tubes and 9 - flat panel displays, 10-supercapacitors, 11- transistors , 12-solar cells, 13-photoluminescence ,14-templates.

 

Carbon Nanotubes Doped with 52 wt% Graphene Nanopowder/Nanoparticles

Price range: $62.00 through $438.00
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Applications:

Carbon NanoTubes doped with Graphene nanoplatelets exhibit significant improvements in electrical and mechanical properties. Hardness, tensile strength, specific strength, and elastic modulus are examples of such enhancements. Because of these advancements, these materials are now widely used in a variety of applications. Among these applications are drug delivery, biosensors, 3-CNT composites, 4-catalysis, 5-nanoprobes, and 6-hydrogen storage. 7-lithium-ion batteries, 8- gas discharge tubes, 9- flat panel displays, 10- supercapacitors, 11- transistors, 12- solar cells, 13-photoluminescence, 14-templates

     

Carbon Nanotubes Doped with 52 wt% Iron Oxide (Fe3O4) Nanopowder/Nanoparticles

Price range: $98.00 through $544.00
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Carbon nanotubes doped with metal oxide nanopowders improve electrical and mechanical properties significantly. Hardness, tensile strength, specific strength, and elastic modulus are examples of such enhancements. As a result of these advancements, these materials are now widely used for a variety of purposes.

applications. Among these applications are drug delivery, biosensors, 3-CNT composites, 4-catalysis, 5-nanoprobes, and 6-hydrogen storage. 8 gas-discharge tubes, 7 lithium batteries nine flat panel displays 10-supercapacitors, 11-transistors, twelve solar cells, 13-photoluminescence, 14-templates  

Carbon Nanotubes Highly Conductive Tapes with Metal 8%, Thickness: 18 µm, Dia: 47 mm

$162.00
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Applications:

Uses for Carbon Nanotubes Abundantly Conductive Materials for flexible electronics like tapes show promise. They are mechanically flexible, have high conductivity, and high intrinsic carrier mobility. They can be employed as the channel material in field-effect transistors (FETs) in flexible electronics. as electrodes as well. They can be utilized in many different flexible electronic products, including sensors, flexible solar cells, flexible displays, and flexible circuits.

 

Carbon Nanotubes Thermal Radiation Coating Dispersion

Price range: $62.00 through $731.00
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30 ml/57 € 60 ml/97 € 120 ml/165 € 500 ml/408 € 1000 ml/663 €      
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Carbon Nanotubes Thermal Radiation Coating Dispersion

Technical Properties:

Film-forming Resin Coating Waterborne Polyurethane
CNT Content 4 wt%
Paint Dry Condition (°C) 75-85
Recommended Coating Thickness (um) 5.0-10.0
Emissivity Coating (%) 0.96-0.98
Coating Surface Resistivity (Ω) 104-106
Thermal Conductivity (W/m.K) 1.4-2.0
Coating Hardness HB
Coating adhesion (level) 5B

Applications:

Carbon nanotubes are one of the best thermal conductivity materials. They can form very thin coatings with very small thermal resistance. Carbon nanotubes thermal radiation coating dispersion can be applied to copper foil, aluminum plate, LED lamp base, and electrical enclosure cooling.  

Carbon Nanotubes Thermal Radiation Coating Dispersion

Price range: $63.00 through $730.00
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Carbon Nanotubes Thermal Radiation Coating Dispersion Technical Properties: Film-forming Resin Coating Waterborne Polyurethane CNT Content 4 wt% Paint Dry Condition

Carbon Nanotubes Thermal Radiation Coating Dispersion

Price range: $64.00 through $750.00
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Applications:

Carbon nanotubes are one of the best thermal conductivity materials. They can form very thin coatings with very small thermal resistance. Carbon nanotubes thermal radiation coating dispersion can be applied to copper foil, aluminum plate, LED lamp base, and electrical enclosure cooling.

Carbon Nanotubes Thermal Radiation Coating Dispersion

Price range: $63.00 through $730.00
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Applications:

Carbon nanotubes are one of the best thermal conductivity materials. They can form very thin coatings with very small thermal resistance. Carbon nanotubes thermal radiation coating dispersion can be applied to copper foil, aluminum plate, LED lamp base, and electrical enclosure cooling.

Carbon Nanotubes-based Conductive Additives for Lithium Ion Battery

Price range: $53.00 through $219.00
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Applications: Based on carbon nanotubes Conductive Additives for Lithium-ion Batteries is a carbon-based composite with high electric conductivity. Carbon black and nanotubes. It is easily dispersed in the electrodes of Li-ion batteries. Carbon black particles aid in the prevention of carbon nanotubes. Reagglomeration causes dispersion. This product is suitable for use in both the anodes and cathodes of Li-ion batteries. In comparison to traditional . The product, which contains conductive additives for Li-ion batteries, contributes to the obvious superiority of Li-ion batteries in the following ways:

  • Longer cycle life and superior performance at high currents (increased twice)
  • Increased tap density (adding 10%)
  • Increased electrode conductivity
  • Electrode with increased mechanical strength and adhesive attraction
 

Carbon Nanotubes(CNT) Modified Graphene Aerogel, Diameter: 1.2±0.1cm, Height: 1.2±0.1cm

Price range: $203.50 through $764.50
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1 piece/ 203.50 € 5 pieces/ 764.50 €  Contact us for tailored quotes on larger quantities & experience exceptional solutions from our experts.

Carbon Nanotubes(CNT) Modified Graphene Aerogel, Diameter: 1.2±0.1cm, Height: 1.2±0.1cm

Price range: $209.00 through $788.00
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Please contact us for quotes for larger quantities !   Graphene aerogels are materials which have elasticity and they can easily gain their original form after some compression. In addition, the low density of graphene aerogels enables them to be very absorbent. This material can absorb more than 850 times of its own weight. This property means that it could be useful for environmental clean-ups like oil spills, and the aerogels only need to be picked up later after absorbing the spilled material. Graphene aerogel may also have some applications in both the storage and the transfer of energy by enabling the creation of lighter, higher-energy-density batteries and vigorous research is being done on the matter.

Carbon Nanotubes(CNT) Modified Graphene Aerogel, Diameter: 2±0.4 cm, Height: 2±0.4 cm

Price range: $273.00 through $1,089.00
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1 piece/ 273 € 5 pieces/ 1089 €  Contact us for tailored quotes on larger quantities & experience exceptional solutions from our experts.

Carbon Nanotubes(CNT) Modified Graphene Aerogel, Diameter: 2±0.4 cm, Height: 2±0.4 cm

Price range: $281.00 through $1,123.00
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Please contact us for quotes for larger quantities !   Graphene aerogels are materials which have elasticity and they can easily gain their original form after some compression. In addition, the low density of graphene aerogels enables them to be very absorbent. This material can absorb more than 850 times of its own weight. This property means that it could be useful for environmental clean-ups like oil spills, and the aerogels only need to be picked up later after absorbing the spilled material. Graphene aerogel may also have some applications in both the storage and the transfer of energy by enabling the creation of lighter, higher-energy-density batteries and vigorous research is being done on the matter.

Carbon Powder (C, 99.99%, 20-50 micron)

Price range: $90.00 through $327.00
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$90/100g $327/500g

Product 

Carbon Powder (C, 99.99%, 20-50 micron)

CAS No.

7440-44-0

Appearance

Powder

Purity

≥99%,  ≥99.9%,  ≥95%

(Other purities are also available)

APS

20-50 micron (Size Can be customized), Ask for other available size ranges.

Ingredient

AlN

Molecular Weight

12.01 g/mol

Melting Point

~ 3,900 °C

Boiling Point

~600–800 °C

Density

~1.8–2.1 g/cm³

Product Codes

NCZ-1029K

Carbon Quantum Dot Dispersion (Green Fluorescence)

$220.00
Select options This product has multiple variants. The options may be chosen on the product page
Product Carbon Quantum Dot Dispersion (Green Fluorescence)
CAS No. 7789-75-5
Appearance Clear to pale yellow or brown
Purity ≥99%,  ≥99.9%,  ≥95%(Other purities are also available)
APS 2–10nm (Size Can be customized),  Ask for other available size range.
Ingredient CₓHᵧN_zO_w
Molecular Weight N/A
Melting Point N/A
Boiling Point N/A
Density 1.8–2.2 g/cm³
Product Codes NCZ-303I

Carbon Quantum Dots (CQD) 420 nm

Price range: $795.00 through $1,415.00
Select options This product has multiple variants. The options may be chosen on the product page
APPLICATIONS Carbon quantum dots are employed in the following because of their optical, electrical, and biological characteristics:
  • Bioimaging,
  • Photovoltaics,
  • Photocatalysis,
  • Drug delivery,
  • Sensors,
  • Optronics.

Carbon Quantum Dots (CQD) 440 nm

Price range: $790.00 through $1,395.00
Select options This product has multiple variants. The options may be chosen on the product page
APPLICATIONS Carbon quantum dots are employed in the following because of their optical, electrical, and biological characteristics:
  • Bioimaging,
  • Photovoltaics,
  • Photocatalysis,
  • Drug delivery,
  • Sensors,
  • Optronics.

Carbon Quantum Dots (CQD) 505 nm

Price range: $780.00 through $1,375.00
Select options This product has multiple variants. The options may be chosen on the product page
APPLICATIONS Carbon quantum dots are employed in the following because of their optical, electrical, and biological characteristics:
  • Bioimaging,
  • Photovoltaics,
  • Photocatalysis,
  • Drug delivery,
  • Sensors,
  • Optronics.

Carbon Quantum Dots (CQD) 515 nm

Price range: $770.00 through $1,355.00
Select options This product has multiple variants. The options may be chosen on the product page
APPLICATIONS Carbon quantum dots are employed in the following because of their optical, electrical, and biological characteristics:
  • Bioimaging,
  • Photovoltaics,
  • Photocatalysis,
  • Drug delivery,
  • Sensors,
  • Optronics.

Carbon Quantum Dots (CQD) 528 nm

Price range: $750.00 through $1,325.00
Select options This product has multiple variants. The options may be chosen on the product page
APPLICATIONS Carbon quantum dots are employed in the following because of their optical, electrical, and biological characteristics:
  • Bioimaging,
  • Photovoltaics,
  • Photocatalysis,
  • Drug delivery,
  • Sensors,
  • Optronics.

Carbon Quantum Dots (CQD) 535 nm

Price range: $735.00 through $1,310.00
Select options This product has multiple variants. The options may be chosen on the product page
APPLICATIONS Carbon quantum dots are employed in the following because of their optical, electrical, and biological characteristics:
  • Bioimaging,
  • Photovoltaics,
  • Photocatalysis,
  • Drug delivery,
  • Sensors,
  • Optronics.

Carbon Quantum Dots (CQD) 565 nm

Price range: $720.00 through $1,290.00
Select options This product has multiple variants. The options may be chosen on the product page
APPLICATIONS Carbon quantum dots are employed in the following because of their optical, electrical, and biological characteristics:
  • Bioimaging,
  • Photovoltaics,
  • Photocatalysis,
  • Drug delivery,
  • Sensors,
  • Optronics.

Carbon Quantum Dots (CQD) 572 nm

Price range: $710.00 through $1,270.00
Select options This product has multiple variants. The options may be chosen on the product page
APPLICATIONS Carbon quantum dots are employed in the following because of their optical, electrical, and biological characteristics:
  • Bioimaging,
  • Photovoltaics,
  • Photocatalysis,
  • Drug delivery,
  • Sensors,
  • Optronics.

Carbon Quantum Dots (CQD) 625 nm

Price range: $695.00 through $1,255.00
Select options This product has multiple variants. The options may be chosen on the product page
APPLICATIONS Carbon quantum dots are employed in the following because of their optical, electrical, and biological characteristics:
  • Bioimaging,
  • Photovoltaics,
  • Photocatalysis,
  • Drug delivery,
  • Sensors,
  • Optronics.

Carbon Quantum Dots (CQD) 630 nm

Price range: $690.00 through $1,225.00
Select options This product has multiple variants. The options may be chosen on the product page
APPLICATIONS Carbon quantum dots are employed in the following because of their optical, electrical, and biological characteristics:
  • Bioimaging,
  • Photovoltaics,
  • Photocatalysis,
  • Drug delivery,
  • Sensors,
  • Optronics.

Carbon Quantum Dots (CQD) 675 nm

Price range: $680.00 through $1,180.00
Select options This product has multiple variants. The options may be chosen on the product page
APPLICATIONS Carbon quantum dots are employed in the following because of their optical, electrical, and biological characteristics:
  • Bioimaging,
  • Photovoltaics,
  • Photocatalysis,
  • Drug delivery,
  • Sensors,
  • Optronics.

Carbon-Coated Aluminum Foil

Price range: $198.00 through $844.00
Select options This product has multiple variants. The options may be chosen on the product page
Product Specification Item Specification Product Name Carbon-Coated Aluminum Foil Substrate Aluminum Foil Substrate Thickness 20μm Foil Substrate Width 210±0.5mm Foil Substrate Length