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ARRY

About ARRY

ARRY Nano, established in the early 2000s, is a specialist provider of carbon nanotube (CNT) materials and polymer based nano additives. ARRY's polymer additive portfolio centers on double wall (DWNT) and multi wall carbon nanotube (MWNT) grades branded ARRY®, serving as high performance additives in polymer composites. These CNT additives are engineered to enhance electrical conductivity, thermal conductivity, and mechanical reinforcement in polymer matrices. They are widely implemented in rechargeable lithium ion batteries, supercapacitor electrodes, EMI shielding composites, biosensors, and multifunctional nanocomposite systems that demand conductivity and strength enhancements.

Most viewed products

ARRY® SWNTs (60%, 1-2 nm)

Single wall carbon nanotubes. Used in electronical nanocomponents (diodes, transistors, nano-wires, etc.), field emission, hydrogen storage, rechargeable lithium batteries, atomic force microscope (AFM) tips, electrode material of supercapacitors, biosensors and multi-functional composites (EMI shielding, thermal conducting, strengthen, conducting).

ARRY® Functionalized MWNTs- ARQM009

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 conductivity (10-6 ohm m typically), high thermal conductivity (1750-58 00 W/mK) as well as high mechanical strength (tensile strength 60GPa) and modulus (Young’s modulus 1TPa). Used in a wide variety of applications in nanotechnology, electronics, optics and other fields of material science. Can also be used in composites, hydrogen storage, electron emission, synthesis & processing, batteries, supercapacitors, sensors & probes etc.

ARRY® Functionalized MWNTs- ARQM008

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 conductivity (10-6 ohm m typically), high thermal conductivity (1750-58 00 W/mK) as well as high mechanical strength (tensile strength 60GPa) and modulus (Young’s modulus 1TPa). Used in a wide variety of applications in nanotechnology, electronics, optics and other fields of material science. Can also be used in composites, hydrogen storage, electron emission, synthesis & processing, batteries, supercapacitors, sensors & probes etc.

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