AI-native materials informatics program that designs cooling materials for the diaper microclimate, targeting 1–3 °C skin-interface temperature reduction while preserving softness, rewet, and breathability. The platform ...
An AI-native materials informatics platform that models and optimizes surface chemistry, coating structure, and topography to give silicone/PDMS materials skin-like wetting behavior. It ranks candidate graft, polymer-bru...
An AI-native materials-informatics platform combined with a lab-scale prototyping network to turn fibrous extracted-peel residue from pectin processing into high-value functional materials. The workflow screens and ranks...
An AI-native materials-informatics platform that accelerates discovery of effective heme/hemoglobin decolorization chemistries under mild, blood-relevant conditions. The solution combines predictive modelling with lab-sc...
Polymerize combines an AI-native materials-informatics platform with a lab-scale prototyping and testing network to co-develop low-add-on barrier surface treatments for nonwoven substrates. The service models how treatme...
Polymerize offers an AI-native materials-informatics platform to accelerate the discovery of TiO2 replacements. By modeling whiteness and opacity of candidate chemistries, the platform enables the development of food-gra...
Polymerize offers an AI-native materials-informatics platform that models and optimizes the composition-rheology-volatility relationship to enhance fragrance stability. The platform provides a reusable predictive model a...
Polymerize is an AI-driven informatics platform that accelerates the development of new materials and packaging polymers. It analyzes lab data and suggests optimal formulations, potentially cutting R&D costs by up to 50%...