Date published: 2025-10-14

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Barium hydroxide octahydrate (CAS 12230-71-6)

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Application:
Barium hydroxide octahydrate is an agent used in the centromeric heterochromatin banding technnique
CAS Number:
12230-71-6
Purity:
≥98%
Molecular Weight:
315.46
Molecular Formula:
H2BaO28H2O
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.

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Barium hydroxide octahydrate, appearing as white crystalline granules or powder, plays a crucial role in scientific research, particularly in analytical and environmental chemistry. As a strong base, it is predominantly used in the titration of weak acids, especially organic acids, where its robust alkaline properties ensure thorough neutralization and clear endpoint detection. This compound is also integral in environmental studies for the precipitation analysis of sulfate contaminants in water, helping to assess water purity and environmental pollution levels. Another significant application of barium hydroxide octahydrate is in carbon dioxide capture research; its capacity to absorb CO2 is exploited in developing technologies aimed at reducing greenhouse gas emissions. Additionally, in materials science, it aids in the synthesis of barium-containing compounds essential for the production of special ceramics and glasses. These diverse applications underscore barium hydroxide octahydrate′s importance in advancing scientific knowledge and technology, particularly within fields that address environmental challenges and analytical precision.


Barium hydroxide octahydrate (CAS 12230-71-6) References

  1. Rapid and selective modification of phosphoserine residues catalysed by Ba2+ ions for their detection during peptide microsequencing.  |  Byford, MF. 1991. Biochem J. 280 (Pt 1): 261-5. PMID: 1741751
  2. Determination of phosphorylated and O-glycosylated sites by chemical targeting (CTID) at ambient temperature.  |  Hathaway, GM. 2007. Methods Mol Biol. 386: 79-93. PMID: 18604943
  3. Synthesis and characterization of nano-particulate BaTiO3 for ceramic/polymer composite capacitor.  |  Lee, DK., et al. 2010. J Nanosci Nanotechnol. 10: 1361-6. PMID: 20352799
  4. Formation of nanocrystalline barium titanate in benzyl alcohol at room temperature.  |  Veldhuis, SA., et al. 2014. Inorg Chem. 53: 13188-96. PMID: 25423482
  5. The Effect of Nanometer Oxide Additive on the Heat-Conducting Property of Barium Hydroxide Octahydrate.  |  Xu, B., et al. 2015. J Nanosci Nanotechnol. 15: 3168-72. PMID: 26353556
  6. Following the Kinetics of Barium Titanate Nanocrystal Formation in Benzyl Alcohol Under Near-Ambient Conditions.  |  Veldhuis, SA., et al. 2018. Small. 14: e1802003. PMID: 30198075
  7. Optimizing TiO2 through Water-Soluble Ti Complexes as Raw Material for Controlling Particle Size and Distribution of Synthesized BaTiO3 Nanocubes.  |  Nakashima, K., et al. 2021. ACS Omega. 6: 32517-32527. PMID: 34901601
  8. Effects of the reaction temperature and Ba/Ti precursor ratio on the crystallite size of BaTiO3 in hydrothermal synthesis.  |  Zhang, M., et al. 2022. RSC Adv. 12: 27809-27819. PMID: 36320257
  9. Modified method of C banding using barium hydroxide.  |  Ghosh, PK. and Singh, IP. 1975. Acta Genet Med Gemellol (Roma). 24: 315-6. PMID: 68655

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

Barium hydroxide octahydrate, 100 g

sc-202971
100 g
$40.00

Barium hydroxide octahydrate, 500 g

sc-202971A
500 g
$115.00