Date published: 2025-10-21

1-800-457-3801

SCBT Portrait Logo
Seach Input

Glycerol 1,3-diglycerolate diacrylate (CAS 60453-84-1)

0.0(0)
Write a reviewAsk a question

Application:
Glycerol 1,3-diglycerolate diacrylate is a multifunctional monomer
CAS Number:
60453-84-1
Molecular Weight:
348.35
Molecular Formula:
C15H24O9
Supplemental Information:
This is classified as a Dangerous Good for transport and may be subject to additional shipping charges.
For Research Use Only. Not Intended for Diagnostic or Therapeutic Use.
* Refer to Certificate of Analysis for lot specific data.

QUICK LINKS

Glycerol 1,3-diglycerolate diacrylate is a polyol ester widely employed in an array of applications. Its composition comprises three fatty acids, two of which are acrylate-based, linked to a glycerol backbone. This unique molecular structure grants TDA a range of exceptional properties. In scientific research, Glycerol 1,3-diglycerolate diacrylatefinds multiple applications. It serves as useful in the investigation of polymeric materials, enabling the creation of polymeric films and coatings. Moreover, Glycerol 1,3-diglycerolate diacrylatehas been employed in the exploration of biomedical materials, contributing to the fabrication of scaffolds for tissue engineering. Although the precise mechanism of action of Glycerol 1,3-diglycerolate diacrylateremains partially elusive, it is hypothesized to stem from its ability to establish robust bonds. Through the formation of strong hydrogen bonds and Van der Waals forces, Glycerol 1,3-diglycerolate diacrylateforges potent interactions with other molecules.


Glycerol 1,3-diglycerolate diacrylate (CAS 60453-84-1) References

  1. Nano-scale surface modification of a segmented polyurethane with a phospholipid polymer.  |  Morimoto, N., et al. 2004. Biomaterials. 25: 5353-61. PMID: 15130720
  2. Effects of base polymer hydrophobicity and end-group modification on polymeric gene delivery.  |  Sunshine, JC., et al. 2011. Biomacromolecules. 12: 3592-600. PMID: 21888340
  3. Aqueous size exclusion chromatography in semimicro and micro-columns by newly synthesized monodisperse macroporous hydrophilic beads as a stationary phase.  |  Gölgelioğlu, C., et al. 2012. J Chromatogr A. 1224: 43-50. PMID: 22218328
  4. Investigation of fluorinated (Meth)acrylate monomers and macromonomers suitable for a hydroxy-containing acrylate monomer in UV nanoimprinting.  |  Ito, S., et al. 2014. Langmuir. 30: 7127-33. PMID: 24892792
  5. Click chemistry modification of natural keratin fibers for sustained shrink-resist performance.  |  Yu, D., et al. 2015. Int J Biol Macromol. 78: 32-8. PMID: 25840149
  6. Bone morphogenetic protein 9 (BMP9) induces effective bone formation from reversibly immortalized multipotent adipose-derived (iMAD) mesenchymal stem cells.  |  Lu, S., et al. 2016. Am J Transl Res. 8: 3710-3730. PMID: 27725853
  7. A Cooperative Copper Metal-Organic Framework-Hydrogel System Improves Wound Healing in Diabetes.  |  Xiao, J., et al. 2017. Adv Funct Mater. 27: PMID: 28729818
  8. Reversibly immortalized keratinocytes (iKera) facilitate re-epithelization and skin wound healing: Potential applications in cell-based skin tissue engineering.  |  Zhong, J., et al. 2022. Bioact Mater. 9: 523-540. PMID: 34820586
  9. Optimization and Testing of Hybrid 3D Printing Vitrimer Resins.  |  Casado, J., et al. 2022. Polymers (Basel). 14: PMID: 36501497
  10. Discovery of a polymer resistant to bacterial biofilm, swarming, and encrustation.  |  Dubern, JF., et al. 2023. Sci Adv. 9: eadd7474. PMID: 36696507

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

Glycerol 1,3-diglycerolate diacrylate, 100 ml

sc-235258
100 ml
$43.00