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Boric acid

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Identification
Molecular formula
H3BO3
CAS number
10043-35-3
IUPAC name
oxidooxy(oxo)borane
State
State

At room temperature, boric acid is in a solid state, commonly observed as a white, crystalline powder.

Melting point (Celsius)
170.90
Melting point (Kelvin)
444.05
Boiling point (Celsius)
300.00
Boiling point (Kelvin)
573.00
General information
Molecular weight
61.83g/mol
Molar mass
61.8300g/mol
Density
1.4350g/cm3
Appearence

Boric acid typically appears as a white, crystalline powder. It is also available in the form of colorless crystals. The compound is odorless and has a slightly oily texture.

Comment on solubility

Solubility of Oxidooxy(oxo)borane

Oxidooxy(oxo)borane, with the chemical composition represented by its formula, showcases some intriguing properties regarding its solubility. Generally, boron-containing compounds exhibit varied solubility behaviors, and for oxidooxy(oxo)borane, several important factors influence its solubility in different solvents:

  • Water Solubility: Boron compounds can range from being highly soluble to insoluble in water. Oxidooxy(oxo)borane typically falls into the more soluble category due to its ability to undergo hydrolysis, which can enhance its solubility.
  • Solvent Interaction: The solvent choice plays a crucial role. In polar solvents, compounds like oxidooxy(oxo)borane may dissolve more readily due to dipole interactions compared to non-polar solvents.
  • Temperature Dependency: Solubility can increase with temperature; thus elevated temperatures might enhance the dissolution of oxidooxy(oxo)borane in aqueous solutions.
  • Complex Formation: This compound might form soluble complexes with certain ions, which can further increase its overall solubility profile in solutions.

As a general trend, as noted in studies, "The greater the ionic character of a molecule, the more soluble it tends to be in polar solvents." Therefore, understanding the specific conditions such as pH, ionic strength, and presence of additional solubilizing agents is crucial in determining the actual solubility of oxidooxy(oxo)borane in practical applications.

In summary, while oxidooxy(oxo)borane tends to demonstrate significant solubility in water and other polar environments, the actual solubility can be subject to variation depending on external factors, making it an interesting compound for further study.

Interesting facts

Interesting Facts about Oxidooxy(oxo)borane

Oxidooxy(oxo)borane, with its intriguing name, is a compound that belongs to the class of boron oxides. It presents a unique fusion of oxygen and boron, leading to several fascinating attributes and applications in the field of chemistry. Here are some remarkable facts about this compound:

  • Structure and Bonding: Oxidooxy(oxo)borane features a distinctive structure characterized by multiple boron-oxygen bonds. This arrangement contributes to its reactivity and stability.
  • Applications: It plays a significant role in various industrial applications, particularly in the fields of ceramics and glass production. Its properties can enhance the performance of certain materials.
  • Catalytic Properties: Compounds like oxidooxy(oxo)borane are often explored for their catalytic capabilities. They can facilitate chemical reactions that are vital in both organic and inorganic synthesis.
  • Environmental Impact: As a boron-containing compound, it can sometimes be analyzed for its potential environmental effects, especially concerning plant growth and soil chemistry.
  • Research Interest: Ongoing research is examining the use of boron oxides in advanced materials, particularly in creating strong, lightweight composites that are useful in aerospace and automotive industries.

As a scientist or chemistry student, delving into the world of oxidooxy(oxo)borane opens up many avenues for exploration. Understanding its properties, potential applications, and reactions can lead to innovations that contribute significantly to multiple sectors.

In the words of renowned chemist David W.C. MacMillan, "Chemistry is about understanding how materials behave and transforming that understanding into powerful applications." This encapsulates the essence of studying compounds like oxidooxy(oxo)borane.

Synonyms
Perborate (BO(O2)1-)
30880-35-4