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(2-ethylisoquinolin-2-ium-5-yl) acetate bromide

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Identification
Molecular formula
C12H14BrNO2
CAS number
.
IUPAC name
(2-ethylisoquinolin-2-ium-5-yl) acetate;bromide
State
State

At room temperature, the compound is typically found in a solid state. It is often handled as a dry powder or crystalline material due to its stability under ambient conditions.

Melting point (Celsius)
180.00
Melting point (Kelvin)
453.00
Boiling point (Celsius)
300.00
Boiling point (Kelvin)
573.00
General information
Molecular weight
324.22g/mol
Molar mass
324.2200g/mol
Density
1.3000g/cm3
Appearence

The compound is typically found as a crystalline solid. The crystals can appear as off-white to pale yellow depending on the purity and specific conditions under which the compound is prepared and stored. The solid form may exhibit some degree of hygroscopicity.

Comment on solubility

Solubility of (2-ethylisoquinolin-2-ium-5-yl) acetate; bromide

The solubility characteristics of the compound (2-ethylisoquinolin-2-ium-5-yl) acetate; bromide are an intriguing aspect of its chemical behavior. Understanding its solubility can provide insight into its potential applications and reactivity in various environments.

Typically, this compound may exhibit the following solubility traits:

  • Solubility in Water: Often, salts such as bromides can be soluble in water, but the solubility of this specific ionic compound may depend on the structural attributes of the cationic portion.
  • Polar vs. Non-Polar Solvents: Due to its ionic nature, it may have a higher solubility in polar solvents compared to non-polar solvents. This is due to the dipole interactions that favor solubility in polar environments.
  • Temperature Dependency: The solubility of the compound could also be influenced by temperature; typically, higher temperatures can increase solubility for many compounds.
  • pH Influence: The solubility may alter depending on the pH of the solution, as ionic compounds often dissociate differently under varying pH conditions.

As stated in solubility principles, "like dissolves like." Thus, understanding the polarity and ionicity of (2-ethylisoquinolin-2-ium-5-yl) acetate; bromide can aid in predicting its solubility behavior in different media.

In summary, further experimental work may be required to accurately define the solubility of this compound under various conditions but recognizing its fundamental ionic nature lays the groundwork for predicting its interaction with different solvents.

Interesting facts

Interesting Facts about (2-ethylisoquinolin-2-ium-5-yl) acetate; bromide

(2-ethylisoquinolin-2-ium-5-yl) acetate; bromide is a fascinating compound that belongs to the isoquinoline class of nitrogen-containing heterocycles. This compound is not only interesting due to its structural properties, but it also has potential applications in various fields of research.

Key Features

  • Bioactivity: Compounds derived from isoquinolines have shown a wide range of biological activities including antitumor, antimicrobial, and anti-inflammatory effects. This makes (2-ethylisoquinolin-2-ium-5-yl) acetate; bromide a strong candidate for pharmacological studies.
  • Synthesis: The synthesis of this compound can involve multiple organic reactions including alkylation and acylation processes. Understanding these synthetic pathways can give chemists insight into the reactivity and stability of similar molecules.
  • Research Potential: The unique structure of isoquinoline derivatives allows them to interact with biological targets in distinctive ways, making them of interest in drug design and discovery.

As quoted by Nobel laureate Jean-Marie Lehn, "Molecular recognition can be compared to a jigsaw puzzle, each piece is a different molecule that fits into a specific biological pocket." This statement rings true for (2-ethylisoquinolin-2-ium-5-yl) acetate; bromide, as its structural features influence how it may bind to various biological molecules and receptors.

In summary, the chemistry of (2-ethylisoquinolin-2-ium-5-yl) acetate; bromide extends beyond mere structural interest. Its bioactivity, synthetic routes, and research potential make it a noteworthy subject for scientists and students alike. This compound exemplifies the beauty and complexity of chemical science, embodying both fundamental and applied aspects of organic chemistry.

Synonyms
2-Ethyl-5-hydroxyisoquinolinium acetate, bromide
16232-80-7
ISOQUINOLINIUM, 2-ETHYL-5-HYDROXY-, ACETATE, BROMIDE
DTXSID30936686
5-(ACETYLOXY)-2-ETHYLISOQUINOLIN-2-IUM BROMIDE