EntroMat develops high entropy material (HEM) powders for various industrial applications. Their advanced materials offer enhanced performance properties compared to traditional metal powders, enabling new possibilities in manufacturing and engineering.
Funding
$1M 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
Many industrial applications rely on traditional metal powders that lack the performance characteristics required for increasingly demanding environments. These materials often exhibit limited wear resistance, thermal stability, and corrosion resistance, leading to reduced equipment lifespan and increased maintenance costs. Existing solutions may also pose environmental and health concerns, such as hard chrome plating.
Solution
EntroMat is a deep-tech startup that develops and manufactures High Entropy Material (HEM) powders designed to overcome the limitations of conventional metal powders. Utilizing a patented technology that combines conventional and sustainable routes, EntroMat creates computationally designed HEM compositions with multi-principal element characteristics. These customizable, high-performance powders offer exceptional and tunable properties, including superior strength, wear resistance, thermal stability, and corrosion resistance. EntroMat's HEM powders are tailored for additive manufacturing, surface-engineered coatings, and powder metallurgy components, enabling partners to enhance efficiency, reduce costs, and achieve greater sustainability.
Target Audience
EntroMat serves industries including mining, aerospace, steelmaking, renewable energy, and medtech, targeting companies seeking advanced materials with enhanced performance and sustainability characteristics.
Features
- Proprietary technology for producing High Entropy Material (HEM) powders using both conventional and sustainable methods.
- Computationally designed HEM compositions with customizable, multi-principal element characteristics.
- High-performance wear and corrosion-resistant coatings for mining tools and heavy industrial machinery.
- Custom-formulated HEM powders for high thermal stability and oxidation resistance in energy applications.
- Lightweight, high-strength HEM powders for aerospace applications with exceptional resistance to thermal stress and oxidation.
- Specialized HEM powders designed for high-performance medical applications with enhanced durability and biocompatibility.
- HEMs can be designed to enhance conductivity for electrodes in batteries.
- HEMs can be designed for anti-fouling applications.