Vanisperse LI

De-agglomeration of carbon nanotubes

De-agglomeration of Carbon Nanotubes

Efficient dispersion of conductive carbon is essential for ensuring uniform electrode composition and optimising battery performance. Vanisperse LI is a powerful dispersant for a wide range of carbon materials used in lithium-ion battery electrodes, including high-surface-area carbon black and carbon nanotubes (CNTs). In addition to its high performance, Vanisperse LI offers a uniquely sustainable alternative to petroleum-derived additives. 


What challenges are associated with dispersing CNTs in water?

There are two main challenges:

  1. Stability of CNTs in water. Physical interlocking or entanglement among CNTs
  2. CNTs in water tend to agglomerate due to strong hydrophobic interactions

How does Vanisperse LI address the challenge of dispersing CNTs in water?

By dissolving Vanisperse LI in water containing CNTs, the dispersant minimises carbon-to-carbon interactions, creating a stable dispersion of individual carbon nanostructures and effectively preventing re-agglomeration.

Stability of CNTs in water

CNTs in water storage stability picture

Without vs. with Vanisperse LI

Can CNT suspensions with Vanisperse LI be stored long-term?

Definitely. When CNTs are dispersed with Vanisperse LI into individual entities or small agglomerates, they remain suspended in water for an extended period, as shown in the image above.

As demonstrated in the video below, the suspension with Vanisperse LI effectively stabilises and disperses carbon nanotubes in water, in contrast to the untreated CNT suspension, which readily agglomerates.

vanisperseli

Technical Bulletin: Dispersion of Carbon Nanotubes with Vanisperse LI 

Borregaard’s bio-based battery additives are designed for use in water-based electrode slurries and to stabilize aqueous carbon nanotube (CNT) dispersions. Obtained from sustainably sourced wood, our products are non-toxic, environmentally friendly, and highly effective.

Vanisperse LI provides a uniquely sustainable alternative and affords a lower CO2 footprint than petroleum-derived additives. Efficient dispersion of CNTs is critical for achieving uniform electrode composition and optimal battery performance. Sustainable water-soluble dispersants are essential to de-agglomerate CNTs in water, preventing the hydrophobic carbons from reforming agglomerates. 


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