Date published: 2025-9-19

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Pigment Red 122 (CAS 980-26-7)

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Alternate Names:
2,9-Dimethyl quinacridone
CAS Number:
980-26-7
Molecular Weight:
340.37
Molecular Formula:
C22H16N2O2
For Research Use Only. Not Intended for Diagnostic or Therapeutic Use.
* Refer to Certificate of Analysis for lot specific data.

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Pigment Red 122, with the CAS number 980-26-7, is a synthetic organic compound widely recognized in the field of material sciences, particularly noted for its vibrant pink to red hue. This pigment belongs to the quinacridone family, a class known for their excellent colorfastness and stability, making them ideal for research in color technology and materials engineering. Pigment Red 122′s molecular structure includes a system of conjugated double bonds, which not only contributes to its vivid color but also imparts photostability and resistance to chemical degradation. These properties are crucial for studies focused on the longevity and durability of pigments exposed to various environmental conditions, such as UV light and atmospheric oxidants. In research, Pigment Red 122 is often used to investigate the interactions between pigments and different substrates, which is vital for the development of advanced coatings and colorant products. Additionally, its role in the study of pigment dispersion techniques is significant, helping scientists optimize the homogeneity and consistency of color in industrial applications. The pigment′s ability to maintain integrity under high temperatures and in various solvent environments also makes it a subject of interest in the formulation of high-performance plastics and automotive coatings, where enduring color vibrancy is essential.


Pigment Red 122 (CAS 980-26-7) References

  1. Analysis of pigmented inkjet printer inks and printed documents by laser desorption/mass spectrometry.  |  Donnelly, S., et al. 2010. J Forensic Sci. 55: 129-35. PMID: 20015163
  2. Identification of organic pigments in tattoo inks and permanent make-up using laser desorption ionisation mass spectrometry.  |  Niederer, M., et al. 2017. F1000Res. 6: 2034. PMID: 29259773
  3. Subterranean transport of microplastics as evidenced in karst springs and their characterization using Raman spectroscopy.  |  Nesterovschi, I., et al. 2023. Spectrochim Acta A Mol Biomol Spectrosc. 298: 122811. PMID: 37156178
  4. Influence of Styrene–Maleic Anhydride Copolymers on the Stability of Quinacridone Red Pigment Suspensions  |  Zhou, Y., Yu, D., **, P. and Lin Chen, S. 2003. Journal of dispersion science and technology. 24(5): 731-737.
  5. Effect of Ammonium Salt of Styrene‐Maleate Copolymer on the Rheology of Quinacridone Red Pigment Dispersion  |  Zhou, Y., Yu, D., Wang, C.L. and Chen, S.L. 2004. Journal of dispersion science and technology. 25(2): 209-215.
  6. A study of pigment solubility in model compounds that represent a polycarbonate-Poly (butylene terephthalate) blend  |  Fagelman KE, Guthrie JT. 2006. Surface Coatings International Part B: Coatings Transactions. 89(2): 109-116.
  7. Effects of process conditions on properties of nanoscale organic pigment encapsulated by poly (styrene-maleic acid) dispersion  |  Fu SH, Xu CH, He C. 2010. Journal of dispersion science and technology. 31(5): 617-621.
  8. Preparation of UV-cured pigment/latex dispersion for textile inkjet printing.  |  Guan, Y., Tawiah, B., Zhang, L., Du, C. and Fu, S. 2014. Colloids and Surfaces A: Physicochemical and Engineering Aspects. 462: 90-98.
  9. Synthesis and Characterization of A‐B‐A‐Type Nonionic Dimeric Dispersants for Pigment Dispersion  |  Acheampong, C., Zhang, L., Agbo, C., Liang, D., Du, C. and Fu, S. 2019. Journal of Surfactants and Detergents. 22(4): 885-895.
  10. Modification and performance analysis of pigment red 122 by fumed silica  |  Liu J, Bao C, Li W. 2022. Molecular Crystals and Liquid Crystals. 742(1): 119-132.

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

Pigment Red 122, 1 g

sc-495821
1 g
$143.00

Pigment Red 122, 5 g

sc-495821A
5 g
$510.00