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N,N-dimethylheptylamine

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Identification
Molecular formula
C9H21N
CAS number
1002-56-8
IUPAC name
N,N-dimethylheptan-1-amine
State
State

N,N-dimethylheptylamine is in a liquid state at room temperature.

Melting point (Celsius)
-70.00
Melting point (Kelvin)
203.15
Boiling point (Celsius)
148.80
Boiling point (Kelvin)
421.95
General information
Molecular weight
129.26g/mol
Molar mass
129.2580g/mol
Density
0.7489g/cm3
Appearence

N,N-dimethylheptylamine is a colorless liquid.

Comment on solubility

Solubility of N,N-dimethylheptan-1-amine

N,N-dimethylheptan-1-amine, a tertiary amine, exhibits unique solubility characteristics that are influenced by its molecular structure. This compound has an amine group, which can confer some polar characteristics, enabling it to interact with solvents in specific ways.

Here are some key points regarding its solubility:

  • Solvent Types: N,N-dimethylheptan-1-amine is generally soluble in organic solvents, such as ethers and alcohols, due to its hydrophobic alkyl chain.
  • Water Solubility: The solubility of this compound in water is limited. Although the amine group can engage in hydrogen bonding, the long hydrocarbon chain can hinder its overall solubility in polar solvents.
  • Temperature Effect: Like many organic compounds, its solubility can increase with temperature, making it more soluble in warm solvents than in cold ones.
  • Molecular Interactions: The presence of intermolecular forces such as Van der Waals forces in its hydrocarbon part may impact its ability to dissolve in various media.

In conclusion, while N,N-dimethylheptan-1-amine shows some solubility potential in polar solvents due to its functional group, its overall solubility remains limited primarily because of its larger hydrocarbon chain. Understanding these aspects of solubility is crucial for applications involving this compound.

Interesting facts

Interesting Facts About N,N-Dimethylheptan-1-amine

N,N-Dimethylheptan-1-amine is a fascinating organic compound with a variety of applications in the field of chemistry and industry. Here are some interesting aspects about this intriguing molecule:

  • Structural Complexity: This compound features a heptane backbone, which provides it with a lengthened carbon chain, making it unique among amines. Its structure can be represented as having two methyl groups attached to the nitrogen atom, showcasing the versatility of organic compounds in accommodating various functional groups.
  • Applications: N,N-dimethylheptan-1-amine is utilized in various sectors, including:
    • As a solvent in chemical synthesis
    • In the manufacturing of surfactants
    • In the production of pharmaceuticals
  • Biological Significance: Amines are critical in biological systems, often serving as neurotransmitters. While the specific role of N,N-dimethylheptan-1-amine in biological systems may still be under research, studying similar compounds can yield insights into amine-related functions in living organisms.
  • Synthesis: The synthesis of this compound can involve various methods, including reductive amination and the alkylation of amines. Understanding these synthetic pathways is crucial for chemists, as it allows the creation of a variety of related compounds that may serve different purposes.

In the world of chemistry, compounds like N,N-dimethylheptan-1-amine remind us of the intricate connections between structure and function. As researchers continue to explore its properties and applications, further developments may emerge that enhance our understanding of both organic chemistry and its practical uses in everyday life.

Synonyms
N,N-dimethylheptan-1-amine
N,N-Dimethylheptylamine
5277-11-2
N,N-Dimethyl-1-heptanamine
1-Heptanamine, N,N-dimethyl-
847WT67AJE
DTXSID10200751
EINECS 226-100-6
DTXCID40123242
226-100-6
1-(Dimethylamino)heptane
Dimethylheptylamine
heptyldimethylamine
Dimethylheptylamin
dimethylheptyl amine
Dimethyl(n-heptyl)amine
starbld0004206
UNII-847WT67AJE
SCHEMBL284680
N,N-Dimethyl-1-heptanamine #
STL453823
AKOS024390974
NS00032579
EN300-7304888