Matteriall develops a portfolio of advanced nano‑scaled materials that can be manufactured at macro scale for use in space and aerospace, healthcare, sustainable energy, wearables, and electronics.
Funding
Funding not disclosed
Founders
Product
Problem
Many industries require materials that can withstand extreme environments—such as high radiation in space, stringent biocompatibility in medical devices, or prolonged mechanical stress in wearables—but existing commercial materials often fall short of the performance predicted by nano‑scale research. Translating those theoretical nano‑structures into manufacturable, macro‑scale components remains a costly and technically challenging process.
Solution
Matteriall builds a curated portfolio of nano‑engineered materials that are both theoretically superior and practically manufacturable at industrial scale. By leveraging advanced synthesis and processing techniques, the company converts the ultimate properties of nano‑scaled structures into bulk‑ready composites, coatings, and fibers. The catalogue offers ready‑to‑use materials tailored for space and aerospace, healthcare, sustainable energy, wearables, and electronics applications. Customers can select materials that provide radiation resistance, enhanced durability, or biocompatibility without needing in‑house nanomaterial expertise. Matteriall also supplies technical data sheets and integration guidelines to streamline adoption into existing product lines, thereby reducing development time and cost.
Target Audience
Primary customers are aerospace manufacturers, medical device developers, renewable‑energy system producers, wearable‑technology firms, and electronics component manufacturers seeking high‑performance, scalable materials.
Features
- Nano‑structured composites engineered for radiation resistance and thermal stability in spacecraft components
- Biocompatible nanomaterials designed for long‑term implantation and medical device integration
- Scalable manufacturing processes (e.g., roll‑to‑roll, bulk extrusion) that retain nano‑level performance at macro scale
- Customizable property tuning (mechanical strength, conductivity, optical transparency) to match specific application requirements
- Comprehensive material data packages, including performance benchmarks and processing recommendations
- Cross‑industry applicability covering aerospace, medical, renewable energy, wearable technology, and electronics sectors