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3-Phenylphenol (CAS 580-51-8)

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Alternate Names:
3-Hydroxybiphenyl
Application:
3-Phenylphenol is A useful biochemical for proteomics research
CAS Number:
580-51-8
Purity:
≥90%
Molecular Weight:
170.21
Molecular Formula:
C12H10O
For Research Use Only. Not Intended for Diagnostic or Therapeutic Use.
* Refer to Certificate of Analysis for lot specific data.

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3-Phenylphenol can be used as a calibration standard for high-performance liquid chromatography (HPLC) or gas chromatography (GC) analysis. By comparing the retention time or peak area of the compound of interest with that of 3-Phenylphenol, accurate quantification or identification of the target compound can be achieved. 3-Phenylphenol undergoes typical reactions of phenols and aromatic compounds. It can undergo electrophilic aromatic substitution reactions, such as nitration, sulfonation, and halogenation. The hydroxyl group in 3-Phenylphenol can also participate in various reactions, including esterification, etherification, and oxidation.


3-Phenylphenol (CAS 580-51-8) References

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  2. Pectic methyl and nonmethyl esters in potato cell walls.  |  MacKinnon, IM., et al. 2002. J Agric Food Chem. 50: 342-6. PMID: 11782205
  3. Monovalent salt-induced gelation of enzymatically deesterified pectin.  |  Yoo, SH., et al. 2003. J Agric Food Chem. 51: 7410-7. PMID: 14640592
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  6. Determination of saccharides in biological materials by high-performance anion-exchange chromatography with pulsed amperometric detection.  |  Martens, DA. and Frankenberger, WT. 1991. J Chromatogr. 546: 297-309. PMID: 1885699
  7. Temperature effects on the solid-matrix luminescence properties of 4-phenylphenol adsorbed on filter paper.  |  Ramasamy, SM. and Hurtubise, RJ. 1989. Talanta. 36: 315-20. PMID: 18964707
  8. Human UDP-glucuronosyltransferase UGT2A2: cDNA construction, expression, and functional characterization in comparison with UGT2A1 and UGT2A3.  |  Sneitz, N., et al. 2009. Pharmacogenet Genomics. 19: 923-34. PMID: 19858781
  9. Cell wall composition throughout development for the model grass Brachypodium distachyon.  |  Rancour, DM., et al. 2012. Front Plant Sci. 3: 266. PMID: 23227028
  10. Do assorted approaches aid in estimation of uronic acids? Case studies on Tinospora sinensis polysaccharides.  |  Kumar, V., et al. 2014. Int J Biol Macromol. 70: 360-3. PMID: 25034757
  11. The physicochemical characterisation of pepsin degraded pig gastric mucin.  |  Abodinar, A., et al. 2016. Int J Biol Macromol. 87: 281-6. PMID: 26944659
  12. Pectin gelation with chlorhexidine: Physico-chemical studies in dilute solutions.  |  Lascol, M., et al. 2016. Carbohydr Polym. 150: 159-65. PMID: 27312625
  13. Anodic Polymerization of Phenylphenols in Methyl Isobutyl Ketone and Mesityl Oxide: Incorporation of a Cavitand into the Layers Formed for Sensing Phenols in Organic Media.  |  Kiss, L., et al. 2022. Molecules. 27: PMID: 36080135
  14. Application of an improved steam distillation procedure in residue analysis. Part. II. Determination of 2-phenylphenol in citrus fruits by a spectrophotometric method.  |  Tanaka, A., et al. 1981. Analyst. 106: 94-9. PMID: 7469030
  15. Sulfation of di- and tricyclic phenols by rat liver aryl sulfotransferase isozymes.  |  Parker, MH., et al. 1994. Arch Biochem Biophys. 310: 325-31. PMID: 8179315

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

3-Phenylphenol, 5 g

sc-256557
5 g
$53.00