The Post-Isomorphic Era:A New Frontier inMaterials Science.
We create Novel Monomers, You create New Materials.Unyielding emphasis on carbon neutrality restricted monomer options and stifled materials innovation. We transcend the barrier through creativity and sustainable chemical design.We pioneer the commercial synthesis of building blocks previously inaccessible at scale — unlocking entirely new classes of monomers for the materials industry.We ignite materials innovation through potential, not precedent.
The MonomerPortfolio
Explore new materials design with what's possible — browse through an array of our monomers, choose the category of your interest, define the carbon chain length and send us a request for sample. Ask for any monomer — really.
Long Chain Dicarboxylic Acids
Chain length beyond C20. Unmatched flexibility for next-generation polymer design.
Long chain dicarboxylic acids with chain lengths beyond C20, enabling polyesters, polyamides, and polyurethanes with superior low-temperature flexibility, hydrolytic stability, and reduced crystallinity. Previously inaccessible at commercial scale.
Polymerization
Polycondensation · Melt polymerization
Applications
Applications
- Flexible polyesters & polyamides
- Hot-melt adhesives
- Polyurethane elastomers
- Lubricant base stocks
- Corrosion-resistant coatings
Long Chain Mono-protected Dicarboxylic Acids
Chain length beyond C20. Asymmetric reactivity. Precision polymer architecture.
Mono-protected long chain dicarboxylic acids (C20+) with one carboxyl group selectively protected, enabling sequential and asymmetric polycondensation chemistries. Unlocks block copolymer and telechelics architectures not achievable with symmetric diacids.
Polymerization
Sequential polycondensation · Block copolymer synthesis
Applications
Applications
- Block copolymer synthesis
- Telechelic polymer precursors
- Asymmetric polyester architectures
- Specialty adhesives
- Functional polymer end-groups
Long Chain Omega-Amino Acids
C-12 through C-22. AB-type monomers for polyamides, coatings, and elastomers.
Long-chain omega-amino acids carrying an amine (–NH₂) at the omega terminus and a carboxyl (–COOH) at the alpha terminus. As AB-type monomers they self-condense without a co-monomer partner, enabling precise control over chain length, crystallinity, and thermal performance in polyamides, polyurethanes, and specialty coatings.
Polymerization
AB-type polycondensation · Lactam ROP
Applications
Applications
- Long-chain polyamides (nylons)
- Polyurethane soft segments
- Specialty coatings & adhesives
- Elastomers with low Tg
- Functional polymer end-groups
Long Chain Omega-Hydroxy Acids
C-12 through C-22. AB-type monomers for polyesters, waxes, and specialty materials.
Long-chain omega-hydroxy acids carrying a hydroxyl (–OH) at the omega terminus and a carboxyl (–COOH) at the alpha terminus. Self-condensing AB-type monomers that yield aliphatic polyesters with tunable crystallinity, melting points, and mechanical properties governed by chain length.
Polymerization
Self-condensation polycondensation · Lactone ROP
Applications
Applications
- Aliphatic polyesters
- Macrolactone synthesis
- Specialty waxes & coatings
- Polyurethane intermediates
- Biodegradable polymer precursors
Built for Materials Innovators
Our customers are R&D teams and formulation chemists pushing the boundaries of what polymers can do. They come to us when existing monomer catalogs run out of answers.
- Long-chain Polyamides (Nylon 12, 13, 14…)
- High-performance Polyesters
- Polyurethane Elastomers & Foams
- Hot-melt & Structural Adhesives
- Flexible Coatings & Surface Finishes
- Plasticizers & Lubricant Esters
- Biomedical & Biodegradable Polymers
Looking to find new monomers that don't exist anywhere else?
Choose a monomer of your choice, define chain length and substitution pattern along the carbon backbone. We'll leverage the potential of our proprietary chemistry to synthesize, and supply you a sample.