1    Phosphazene Polymers
2    Polyethylene Glycols (PEG)
3    PEG Derivatives
4    Polylactides (PLA)
5    Polyglycolides (PGA)
6    Polycaprolactones (PCL)
7    Polylactide-co-glycolides (PLGA)
8    Polycaprolactone-co-lactide (PCLA)
9    Polycaprolactone-co-glycolide (PCGA)
10  Polymer Crosslinkers/boidegradable crosslinkers
11  Block Copolymers
12  Hydrophilic Polymers
The hydrophilic polymer products can be used as rheologic thickener and surfactant, e.g., suspensant and emulsifier.
Application fields cover cosmetics, polymerization, coating systems, etc.
Hydrophilic polymers catalog.

13  Hydrogels
Our hydrogel products are made from conventional organic monomers, or biomaterials like
gelatin, amino acids, and peptides, etc.  Tailored with different functionality, the hydrogels
can be temperature-sensitive, pH-sensitive, and ion-sensitive, etc. The
Table of Response-to-Conditions tells us how hydrogels
act in different application conditions.
Through manipulating the correlation of response-to-conditions, one can use hydrogels for
many particular purposes, for instance, wound dressing, drug delivery device, biosensor, etc

Moreover, the hydrogels made from biomaterials exhibit excellent biocompatibility and biodegradability. We can also specifically
design hydrogels upon customers' requests. Please see our
hydrogels catalog.
Polymer Crosslinkers
Biodegradable Crosslinkers
Chemical synthesis, organic synthesis, intermediate synthesis, organic analysis, compositional analysis, deformulation
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