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CAS 115-39-9

CAS 115-39-9 matches 0 EU annex records across Annex II–VI of Regulation 1223/2009.

Chemical identity and properties

PubChem 2D chemical structure for CAS 115-39-9
CAS 115-39-9PubChem CID 8272

Bromophenol Blue

Bromophenol blue is 3H-2,1-Benzoxathiole 1,1-dioxide in which both of the hydrogens at position 3 have been substituted by 3,5-dibromo-4-hydroxyphenyl groups. It is used as a laboratory indicator, changing from yellow below pH 3 to purple at pH 4.6, and as a size marker for monitoring the progress of agarose gel and polyacrylamide gel electrophoresis. It has also been used as an industrial dye. It has a role as a dye, an acid-base indicator and a two-colour indicator. It is a member of phenols, an organobromine compound, a 2,1-benzoxathiole, a sultone and an arenesulfonate ester. ChEBI

IUPAC name
2,6-dibromo-4-[3-(3,5-dibromo-4-hydroxyphenyl)-1,1-dioxo-2,1lambda6-benzoxathiol-3-yl]phenol
Molecular formula
C19H10Br4O5S
Molecular weight
670.0 g/mol
Exact mass
669.69415 Da
XLogP3
5.8
Topological polar surface area
92.2 Ų
Hydrogen-bond donors
2
Hydrogen-bond acceptors
5
Covalent units
1
Defined stereocentres
0

Also known as

BROMPHENOL BLUEAlbutestTetrabromphenol Blue3,3',5,5'-Tetrabromophenolsulfonphthalein3',3'',5',5''-TetrabromophenolsulfonephthaleinNSC-78183',3'',5',5''-TetrabromophenolsulfophthaleinCHEBI:59424
16 more reported names
0R2969YC90Blue, BromphenolBlue, BromophenolBlue, TetrabromophenolRefChem:5618Phenol, 4,4'-(3H-2,1-benzoxathiol-3-ylidene)bis(2,6-dibromo)-, S,S-dioxide204-086-2Phenol, 4,4'-(1,1-dioxido-3H-2,1-benzoxathiol-3-ylidene)bis[2,6-dibromo-Bromophenol blue indicatorBromophenol blue indicator (3.0-4.6)Bromphenol Blue Sultone Formbromophenol blue, sultone formBromophenol Blue, ACS reagentBromophenol blue (sodium salt)NSC7818Bromophenol Blue (Technical Grade)
External database identifiers

Evidence from additional scientific databases

NIH PubChem PUG-View
Exact identifier match8272

Attributed physical-property, hazard, environmental and use annotations.

  • Environmental Bioconcentration: An estimated BCF of 1.4X10+4 was calculated in fish for bromophenol blue(SRC), using an estimated log Kow of 6.77(1) and a regression-derived equation(2). According to a classification scheme(3), this BCF suggests the potential for bioconcentration in aquatic organisms is very high, provided the compound is not metabolized by the organism(SRC). Source: Hazardous Substances Data Bank (HSDB)
  • Environmental Fate: TERRESTRIAL FATE: Based on a classification scheme(1), an estimated Koc value of 1.5X10+6(SRC), determined from a structure estimation method(2), indicates that bromophenol blue is expected to be immobile in soil(SRC). The pKa of bromophenol blue is 4.0(3), indicating that this compound will almost entirely exist in anion form in the environment and anions generally do not adsorb more strongly to soils containing organic carbon and clay than their neutral counterparts(4). Volatilization from moist soil surfaces is not expected because the acid exists as an anion and anions do not volatilize. Bromophenol is not expected to volatilize from dry soil surfaces(SRC) based upon an estimated vapor pressure of 2.7X10-17 mm Hg(SRC), determined from a fragment constant method(5). Bromophenol blue has been found to be biodegraded by select fungi(6). Source: Hazardous Substances Data Bank (HSDB)
  • Environmental Fate: AQUATIC FATE: Based on a classification scheme(1), an estimated Koc value of 1.5X10+6(SRC), determined from a structure estimation method(2), indicates that bromophenol blue is expected to adsorb to suspended solids and sediment(SRC). A pKa of 4.0(3) indicates bromophenol blue will exist almost entirely in the anion form at pH values of 5 to 9 and therefore volatilization from water surfaces is not expected to be an important fate process(4). According to a classification scheme(5), an estimated BCF of 1.4X10+4(SRC), from an estimated log Kow of 6.77(6) and a regression-derived equation(7), suggests the potential for bioconcentration in aquatic organisms is very high, provided the compound is not metabolized by the organism(SRC). Bromophenol blue is not expected to undergo hydrolysis in the environment due to the lack of functional groups that hydrolyze under environmental conditions(8). Bromophenol blue has been found to be biodegraded by select fungi(9). Source: Hazardous Substances Data Bank (HSDB)
  • Environmental Fate: ATMOSPHERIC FATE: According to a model of gas/particle partitioning of semivolatile organic compounds in the atmosphere(1), bromophenol blue, which has an estimated vapor pressure of 2.7X10-17 mm Hg at 25 °C(SRC), determined from a fragment constant method(2), is expected to exist solely in the particulate phase in the ambient atmosphere. Particulate-phase bromophenol blue may be removed from the air by wet or dry deposition(SRC). Bromophenol blue has a maximum absorbance wavelength of 598 nm(3) and therefore may be susceptible to direct photolysis by sunlight(SRC). Source: Hazardous Substances Data Bank (HSDB)

Mapped by: Existing checksum-valid CAS to unique PubChem CID match. Retrieved: 2026-08-31. Open source record

Scientific classifications and hazard annotations provide context and do not replace the market-specific regulatory decision shown above.

Additional source coverage and match status
SourceResultChecked
NIH PubChem PUG-ViewExact match2026-08-31

A recorded no-match is useful evidence that the source was checked; it is not a claim that the substance does not exist elsewhere.

Retrieved from NIH PubChem on 2026-08-31 by checksum-valid CAS matching. Chemical properties do not replace the regulatory decision on this page.

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How CAS 115-39-9 is used on this site

CAS 115-39-9 is the Chemical Abstracts Service identifier used to pin this page to a specific substance. In the current dataset, 0 EU annex records share this identifier, which helps you cross-check whether the same substance appears under one regulatory context or several.

Use this page when a supplier specification, SDS or raw-material dossier gives you CAS 115-39-9 and you need to see every linked Annex II–VI record in one place. The entry cards above are the quickest route to concentration limits, warnings, annex placement and product-type conditions.