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Riboflavin phosphate

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Identification
Molecular formula
C17H20N4O9P
CAS number
130-40-5
IUPAC name
[(2S,4R)-5-(7,8-dimethyl-2,4-dioxo-benzo[g]pteridin-10-yl)-2,3,4-trihydroxy-pentyl] dihydrogen phosphate
State
State

At room temperature, riboflavin phosphate is a solid. It is usually handled as a crystalline powder which is kept in a dry form to maintain stability and prevent degradation.

Melting point (Celsius)
280.00
Melting point (Kelvin)
553.00
Boiling point (Celsius)
0.00
Boiling point (Kelvin)
0.00
General information
Molecular weight
456.37g/mol
Molar mass
456.3650g/mol
Density
1.7000g/cm3
Appearence

Riboflavin phosphate typically appears as a yellow to orange-yellow crystalline powder. It is slightly soluble in water and exhibits a bright, vibrant yellow color when in solution.

Comment on solubility

Solubility of [(2S,4R)-5-(7,8-dimethyl-2,4-dioxo-benzo[g]pteridin-10-yl)-2,3,4-trihydroxy-pentyl] dihydrogen phosphate

The solubility of [(2S,4R)-5-(7,8-dimethyl-2,4-dioxo-benzo[g]pteridin-10-yl)-2,3,4-trihydroxy-pentyl] dihydrogen phosphate is influenced by various factors, making it an intriguing compound to study.

Factors Affecting Solubility:

  • Molecular Structure: The presence of multiple hydroxyl groups can enhance solubility in polar solvents due to hydrogen bonding.
  • pH Levels: As a phosphate compound, its solubility may vary significantly with changes in pH, particularly in aqueous solutions.
  • Temperature: Increased temperature often leads to greater solubility for many compounds, making this a variable worth exploring.

In general, phosphate esters tend to exhibit a good degree of solubility in water, especially when they include polar functional groups. As stated by chemists, "the rule of thumb is that 'like dissolves like,' meaning that polar compounds are more likely to dissolve in polar solvents such as water.

The solubility profile of this particular compound could be of significant interest, especially regarding its applications in pharmaceuticals and biochemical research. Further studies may reveal detailed solubility limits in various solvents, providing insight into its potential uses and reactivity.

Interesting facts

Interesting Facts about [(2S,4R)-5-(7,8-dimethyl-2,4-dioxo-benzo[g]pteridin-10-yl)-2,3,4-trihydroxy-pentyl] dihydrogen phosphate

This compound belongs to a fascinating class of organic molecules that showcase the remarkable diversity of chemical structures found in nature. Known for its role in biological systems, this compound features a complex structure that integrates various functional groups, making it an intriguing subject of study for both chemists and biologists.

Key Highlights:

  • Stereochemistry: The specific stereochemistry indicated, (2S,4R), highlights the importance of spatial arrangement in determining the compound's biological activity. In organic chemistry, stereochemistry plays a pivotal role in the interactions and functions of biomolecules.
  • Biological Relevance: Compounds with phosphate groups are often involved in important biochemical pathways, including energy transfer and signaling within cells. The dihydrogen phosphate part of this compound suggests a potential role in metabolic processes.
  • Structural Complexity: The presence of a benzo[g]pteridin moiety indicates fascinating properties, as these structures exhibit a wealth of functional attributes such as fluorescence and potential interaction with nucleic acids.
  • Applications: Due to its unique structure, this compound may promise interesting applications in pharmaceuticals or biotechnology, possibly enhancing the specificity and efficacy of drug molecules.

In the words of a prominent chemist, "Understanding the detailed structure of compounds is key to unlocking their hidden potentials." This emphasizes the need to explore and analyze compounds like this one for their possible contributions to science and medicine.

As a chemistry student or an enthusiastic researcher, delving into the complexities of compounds like this can lead to groundbreaking insights into molecular interactions and the development of new therapeutic strategies. Keep exploring the microscopic world of compounds – there’s a treasure trove of knowledge waiting to be uncovered!