Graphene 3D Lab manufactures and sells conductive graphene filament for 3D printers, enabling the creation of electrically functional printed parts. Leveraging proprietary graphene nanocomposite technology, the company also develops advanced materials aimed at advancing commercial 3D‑printing applications.
Funding
$457K raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.
Founders
Product
Problem
Traditional 3D‑printing filaments lack intrinsic electrical conductivity, forcing designers to add separate wiring or conductive coatings to create functional electronic parts. This adds complexity, reduces design flexibility, and limits rapid prototyping of low‑volume, electrically active components.
Solution
Graphene 3D Lab produces a graphene nanocomposite filament that incorporates conductive pathways directly within the polymer matrix. The material is sold online and can be used on standard fused‑filament fabrication (FFF) printers without special hardware. By leveraging proprietary graphene processing, the filament delivers consistent electrical conductivity while maintaining the mechanical properties required for functional prototypes and small‑scale production. This enables designers to print integrated circuits, sensors, and electromagnetic components in a single step, accelerating development cycles and reducing assembly effort.
Target Audience
Primary customers are product engineers, hardware designers, and rapid‑prototyping teams that require electrically functional 3D‑printed parts for low‑volume production or proof‑of‑concept projects.
Features
- Graphene‑based nanocomposite formulation providing built‑in electrical conductivity
- Compatibility with conventional FFF 3D printers and standard slicing software
- Consistent filament diameter and flow characteristics for reliable printing
- Available for direct purchase through online retail channels
- Proprietary processing ensures uniform graphene dispersion and stable performance