Bismuth subgallate
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- Molecular formula
- C7H5BiO4
- CAS Number
- 99-26-3
- IUPAC Name
- bismuthane;2-hydroxybenzoate
- Molecular Weight
- 394.09g/mol
- Melting Point
- (Celsius)
- Boiling Point
- (Celsius)
- Density
- 5.7000g/cm3
- Appearance
- when used in various applications such as pharmaceuticals and cosmetics. Its bright yellow color is a key identifying feature.
Identification
Interesting facts
Interesting Facts About Bismuthane; 2-Hydroxybenzoate
Bismuthane; 2-hydroxybenzoate, often referred to in scientific circles for its unique properties and potential applications, offers a fascinating insight into the world of organometallic chemistry. Here are some noteworthy aspects of this compound:
- Functional Versatility: Bismuth compounds, especially those with hydroxybenzoate moieties, demonstrate a variety of chemical behaviors that can be utilized in different fields, from pharmaceuticals to materials science.
- Biocompatibility: Bismuth is noted for its low toxicity compared to other heavy metals. This makes bismuthane compounds particularly interesting for use in biomedical applications, such as drug delivery systems and as potential therapeutic agents against certain diseases.
- Antimicrobial Properties: Some studies suggest that bismuth-containing compounds exhibit antibacterial and antifungal activities, making them a subject of interest for researchers looking to develop new antimicrobial therapies.
- Environmental Impact: As a heavy metal, bismuth's environmental footprint is significantly lower than that of other heavy metals like lead or mercury, positioning it as a safer alternative in various applications.
- Coordination Chemistry: The presence of the carboxylate group from the 2-hydroxybenzoate opens avenues for the formation of coordination complexes, which can possess unique electronic and optical properties.
In the words of renowned chemist Marie Curie, "Nothing in life is to be feared; it is only to be understood." Bismuthane; 2-hydroxybenzoate is a perfect example of a compound that embodies this spirit of exploration in chemistry. As scientists continue to study its properties, the potential applications could lead to advances in health and technology that we are just beginning to imagine.