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SWCNT Slurry – Single-Walled Carbon Nanotube Dispersion for ESD Plastics, Coatings, and Battery Materials
Our SWCNT slurry is manufactured from single-walled carbon nanotubes produced by the eDIPS method, ensuring long aspect ratio and high intrinsic conductivity. Using proprietary dispersion technology, the slurry is uniformly dispersed in water, NMP, or ethanol, enabling easy integration into ESD plastics, conductive coatings, inks, films, and battery electrodes.
Urchin-like Bismuth Sulfide (Bi₂S₃)
Overview: Bi₂S₃ is used to replace Germanium (Ge) to form a new type of solid electrolyte Li₁₀BiₓP₂S₁₂₋ₓ. The traditional LGPS solid electrolyte (e.g., Li₁₀GeP₂S₁₂) has excellent ion conductivity, but the high cost and scarcity of Ge limit its large-scale application. By introducing urchin-like Bi₂S₃, it not only provides high capacity potential in terms of structure but also effectively buffers volume and thermal expansion problems during cycling.
CNT Carbon Nanotubes
Carbon nanotubes are seamless nanoscale tubular structures formed by single or multiple layers of graphene rolled up along a central axis at a certain helical angle.Single-Walled Carbon Nanotubes: Fewer amorphous carbon, metal, and other impurities and defects, high electrical conductivity.
Ti₃C₂ MXene Powder
MXene is a general term for complex atomic layer compounds composed of early transition metals (such as titanium, vanadium) and light elements (carbon or nitrogen), with a layered structure similar to graphene. The surface of the sheets has various polar functional groups, which gives them high dispersibility in hydrophilic materials.
Ti₃C₂ MXene Aqueous Dispersion
MXene is a general term for complex atomic layer compounds composed of early transition metals (such as titanium, vanadium) and light elements (carbon or nitrogen), with a layered structure similar to graphene.
Graphene Materials
Graphene is an allotrope of carbon, where carbon atoms are sp² hybridized to form a single-layer hexagonal honeycomb lattice.
Single-Walled Carbon Nanotubes
Single-walled carbon nanotubes (SWCNTs) are seamless, nanometre-scale tubes formed when one or several graphene sheets roll around a central axis at a defined helical angle. Thanks to exceptionally low levels of amorphous carbon, metal residues and structural defects, they deliver outstanding electrical performance.