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Carbon Nanotube Paste (≤ 40 Ω/sqr), Water-based

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NG10CAP0915
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$64.03
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Description

100 grams/55 €
250 grams/95 €
1000 grams/135 €

Please contact us for quotes on larger quantities!

Carbon Nanotube Paste (≤ 40 Ω/sqr), Water-based

Carbon Nanotube Paste is a conductive additive material that combines high electrical conductivity with excellent dispersion properties, making it suitable for a wide range of advanced technology applications. With compatibility on substrates such as PET, PI, and glass, the product delivers reliable performance in flexible electronics, sensors, conductive coatings, and energy storage devices. The homogeneous dispersion of multi-walled carbon nanotubes (MWCNT) within the water-based formulation enables the formation of an efficient conductive network in electrode structures. This feature enhances performance across various materials, including lithium-ion battery electrodes (LFP, LCO, NCM, LMN, graphite), among others.

Technical Properties

Sheet Resistance ≤ 40 Ω /sqr @ 15 μm
Viscosity 0.4-0.8 pa.s @ 50 s^-1
Concentration 5 wt%
Solvent Water
Substrate PET, PI, Glass

Applications

  • Energy Storage and Battery Electrodes: Carbon Nanotube Paste serves as a high-performance conductive additive in lithium-ion battery electrodes. Its water-based CNT formulation is compatible with active materials such as LFP, LCO, NCM, LMN, and graphite, forming a homogeneous conductive network within the electrode structure to deliver higher capacity and energy density, lower internal resistance and higher power output, and longer cycle life. These properties are especially critical for electric vehicles (EVs), energy storage systems (ESS), and other high-performance battery applications.
  • Flexible Electronics and Wearable Technologies: Thanks to its compatibility with flexible substrates such as PET and PI, the paste is well-suited for forming conductive layers in flexible circuits and wearable electronics. Its low viscosity and water-based formulation enable easy processing in printing and coating operations.
  • Sensor Technologies: Carbon Nanotube Paste can be used as a conductive electrode or intermediate layer in chemical, biological, and physical sensors. The high surface area and electrical conductivity of CNTs enhance signal sensitivity and detection accuracy.
  • Conductive Coatings and EMI Shielding: Carbon Nanotube Paste is suitable for forming conductive films on glass, plastic, and polymer surfaces. Its low sheet resistance makes it ideal for electromagnetic interference (EMI) shielding and antistatic coatings.
  • Microelectronics and Printed Circuit Technologies: Carbon Nanotube Paste is compatible with inkjet, screen printing, and roll-to-roll techniques, the paste supports microcircuit fabrication. Its water-based nature reduces solvent use, contributing to environmentally friendly manufacturing processes.

 

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