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ARRY®

Polymers additives supplied by ARRY

30 products match your search
Product Name
Supplier
Description
ARRY® Double wall carbon nanotubes from ARRY are used in electronical nanocomponents (diodes, transistors, nano-wires, etc.), field emission, hydrogen storage, rechargeable lithium batteries, atomic... view more
High purity single wall carbon nanotubes. Used in electronical nanocomponents (diodes, transistors, nano-wires, etc.), field emission, hydrogen storage, rechargeable lithium batteries, atomic force... view more
Multi wall carbon nanotubes. Used in electronical nanocomponents (diodes, transistors, nano-wires, etc.), field emission, hydrogen storage, rechargeable lithium batteries, atomic force microscope... view more
Single wall carbon nanotubes. Used in electronical nanocomponents (diodes, transistors, nano-wires, etc.), field emission, hydrogen storage, rechargeable lithium batteries, atomic force microscope... view more
Functionalized double wall carbon nanotubes. Possesses high aspect ratio structures with diameter in nanometers and length in microns. It is chemically inert and has high surface area, high... view more
Functionalized double wall carbon nanotubes. Possesses high aspect ratio structures with diameter in nanometers and length in microns. It is chemically inert and has high surface area, high... view more
Functionalized carbon nanotubes. Possesses high aspect ratio structures with diameter in nanometers and length in microns. It is chemically inert and has high surface area, high electrical... view more
Functionalized carbon nanotubes. Possesses high aspect ratio structures with diameter in nanometers and length in microns. It is chemically inert and has high surface area, high electrical... view more
Functionalized carbon nanotubes. Possesses high aspect ratio structures with diameter in nanometers and length in microns. It is chemically inert and has high surface area, high electrical... view more
Functionalized carbon nanotubes. Possesses high aspect ratio structures with diameter in nanometers and length in microns. It is chemically inert and has high surface area, high electrical... view more
Functionalized carbon nanotubes. Possesses high aspect ratio structures with diameter in nanometers and length in microns. It is chemically inert and has high surface area, high electrical... view more
Functionalized carbon nanotubes. Possesses high aspect ratio structures with diameter in nanometers and length in microns. It is chemically inert and has high surface area, high electrical... view more
Functionalized carbon nanotubes. Possesses high aspect ratio structures with diameter in nanometers and length in microns. It is chemically inert and has high surface area, high electrical... view more
Functionalized carbon nanotubes. Possesses high aspect ratio structures with diameter in nanometers and length in microns. It is chemically inert and has high surface area, high electrical... view more
Functionalized carbon nanotubes. Possesses high aspect ratio structures with diameter in nanometers and length in microns. It is chemically inert and has high surface area, high electrical... view more
Functionalized carbon nanotubes. Possesses high aspect ratio structures with diameter in nanometers and length in microns. It is chemically inert and has high surface area, high electrical... view more
Multi wall carbon nanotubes. Possesses high aspect ratio structures with diameter in nanometers and length in microns. It is chemically inert and has high surface area, high electrical conductivity... view more
Multi wall carbon nanotubes. Possesses high aspect ratio structures with diameter in nanometers and length in microns. It is chemically inert and has high surface area, high electrical conductivity... view more
Multi wall carbon nanotubes. Used in rechargeable lithium batteries, electrode material of supercapacitors, biosensors and multi-functional composites (EMI shielding, thermal conducting... view more
Multi wall carbon nanotubes. Used in rechargeable lithium batteries, electrode material of supercapacitors, biosensors and multi-functional composites (EMI shielding, thermal conducting... view more
Multi wall carbon nanotubes. Used in rechargeable lithium batteries, electrode material of supercapacitors, biosensors and multi-functional composites (EMI shielding, thermal conducting... view more
Multi wall carbon nanotubes. Used in rechargeable lithium batteries, electrode material of supercapacitors, biosensors and multi-functional composites (EMI shielding, thermal conducting... view more
Multi wall carbon nanotubes. Used in rechargeable lithium batteries, electrode material of supercapacitors, biosensors and multi-functional composites (EMI shielding, thermal conducting... view more
Functionalized single wall carbon nanotubes. In order to make carbon nanotubes more easily dispersible in most solvents, it is necessary to physically or chemically attach certain functional groups... view more
Functionalized single wall carbon nanotubes. In order to make carbon nanotubes more easily dispersible in most solvents, it is necessary to physically or chemically attach certain functional groups... view more
Short multi wall carbon nanotubes. Possesses high aspect ratio structures with diameter in nanometers and length in microns. It is chemically inert and has high surface area, high electrical... view more
Short multi wall carbon nanotubes. Possesses high aspect ratio structures with diameter in nanometers and length in microns. It is chemically inert and has high surface area, high electrical... view more
Short multi wall carbon nanotubes. Possesses high aspect ratio structures with diameter in nanometers and length in microns. It is chemically inert and has high surface area, high electrical... view more
Short multi wall carbon nanotubes. Possesses high aspect ratio structures with diameter in nanometers and length in microns. It is chemically inert and has high surface area, high electrical... view more
Short multi wall carbon nanotubes. Possesses high aspect ratio structures with diameter in nanometers and length in microns. It is chemically inert and has high surface area, high electrical... view more
Monomers for functional Polymers
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