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DMDESU

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Identification
Molecular formula
C13H21N3O3Si
CAS number
433-06-1
IUPAC name
11-ethyl-8,8-dimethyl-2,4-diaza-8-silaspiro[5.5]undecane-1,3,5-trione
State
State

At room temperature, this compound is typically in a solid state. It maintains stability under normal conditions and does not readily sublimate or decompose without high temperature exposure.

Melting point (Celsius)
210.00
Melting point (Kelvin)
483.00
Boiling point (Celsius)
383.00
Boiling point (Kelvin)
656.00
General information
Molecular weight
269.42g/mol
Molar mass
269.4170g/mol
Density
1.2000g/cm3
Appearence

The compound is typically white to off-white powder in its pure form. It might also appear as fine crystals under certain conditions. The texture is usually dry and non-hygroscopic.

Comment on solubility

Solubility of 11-ethyl-8,8-dimethyl-2,4-diaza-8-silaspiro[5.5]undecane-1,3,5-trione

The solubility of 11-ethyl-8,8-dimethyl-2,4-diaza-8-silaspiro[5.5]undecane-1,3,5-trione (C13H21N3O3Si) can be influenced by multiple factors, making it an intriguing compound to study. Here's what we know about its solubility characteristics:

  • Polarity: The presence of nitrogen and oxygen in the structure suggests a degree of polarity, which can increase solubility in polar solvents such as water.
  • Silicon Content: The silicon atom may introduce unique interactions, possibly improving solubility in organic solvents, though the overall influence on solubility remains unclear.
  • Functional Groups: The functional groups present may interact favorably or unfavorably with various solvents, impacting solubility.
  • Temperature and pH: Temperature can significantly affect the solubility of organic compounds, and varying pH levels might also lead to ionization of certain groups, which can enhance or reduce solubility.

Overall, it is crucial to conduct empirical studies to determine the precise solubility behavior of this compound in different solvents. As a general rule, compounds of this type may show:

  1. Higher solubility in organic solvents compared to water, depending on specific interactions.
  2. Variable solubility across a range of temperatures, indicating the necessity of optimization for practical applications.

In conclusion, understanding the solubility of this compound is essential for its application in various chemical processes, and precise solubility data will help in predicting its behavior in diverse environments.

Interesting facts

Interesting Facts About 11-ethyl-8,8-dimethyl-2,4-diaza-8-silaspiro[5.5]undecane-1,3,5-trione

The compound known as 11-ethyl-8,8-dimethyl-2,4-diaza-8-silaspiro[5.5]undecane-1,3,5-trione represents a fascinating intersection of organic and inorganic chemistry, showcasing the versatility of silicon in coordination with organic frameworks. Here are some intriguing insights:

  • Silicon Incorporation: The presence of silicon in this compound highlights its ability to mimic carbon in certain organic environments, allowing the development of compounds with unique electronic and structural properties.
  • Structural Complexity: The spirocyclic structure represents a special kind of molecular architecture, where rings are fused together, contributing to unique conformational properties that can influence reactivity and stability.
  • Use in Research: Compounds like this one are often of interest in medicinal chemistry due to their potential biological activity, opening avenues for developing pharmaceuticals or agrochemicals.

As researchers explore the applications of such complex structures, they not only uncover potential new compounds for technology and health but also deepen our understanding of structure-activity relationships in chemistry.

Potential Applications

  • Therapeutics: Due to its heterocyclic nature, this compound might exhibit interesting biological activities, making it a candidate for drug development.
  • Catalysis: The unique bonding arrangements involving silicon can lead to valuable catalytic properties, useful in industrial processes.
  • Material Science: As silicon is a core component in electronics, understanding such compounds could contribute to advancements in materials that are both light and strong.

In summary, 11-ethyl-8,8-dimethyl-2,4-diaza-8-silaspiro[5.5]undecane-1,3,5-trione serves as a reminder of how the synthesis and study of complex chemical compounds can lead not only to functional materials but also to revolutionary approaches in various scientific fields.

Synonyms
52-30-2
NSC 96883
11-ethyl-8,8-dimethyl-2,4-diaza-8-silaspiro[5.5]undecane-1,3,5-trione
2,4-Diaza-8,8-dimethyl-11-ethyl-8-silaspiro(5.5)undecane-1,3,5-trione
BRN 0889740
NSC96883
DTXSID801018913
NSC-96883
2,4-Diaza-8-silaspiro(5.5)undecane-1,3,5-trione, 11-ethyl-8,8-dimethyl-
2,4-Diaza-8-silaspiro(5.5)undecane-1,3,5-trione, 8,8-dimethyl-11-ethyl-
2,3,5-trione, 8,8-dimethyl-11-ethyl
2,3,5-trione, 11-ethyl-8,8-dimethyl-
WLN: T6MVMVXVJ E-& CT6-SI- CXTJ A1 A1 D2
2,8-dimethyl-11-ethyl-8-silaspiro[5.5]undecane-1,3,5-trione