Properties of n-Methyl-N-(1-methylethyl)-1H-indole-3-ethanamine
Thermophysical properties for n-Methyl-N-(1-methylethyl)-1H-indole-3-ethanamine (CAS: 96096-52-5). Use the selector below to view properties in different unit systems.
Calculation Conditions
The following state-dependent properties were calculated at these standard conditions.
Temperature
25 °C
Pressure
1.01325 bar
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Open CalculatorIdentification
- AtomsC: 14, H: 20, N: 2
- CAS96096-52-5
- FormulaC14H20N2
- ID96096-52-5
- InChIC14H20N2/c1-11(2)16(3)9-8-12-10-15-14-7-5-4-6-13(12)14/h4-7,10-11,15H,8-9H2,1-3H3
- InChI KeyKTQJVAJLJZIKKD-UHFFFAOYSA-N
- IUPAC Namen-[2-(1h-indol-3-yl)ethyl]-n-methylpropan-2-amine
- Molecular Weight (kg)216.322
- Phases
- PubChem ID2.9935e+7
- SMILESCC(C)N(C)CCc1c[nH]c2ccccc12
- Synonyms
Physical Properties
- Acentric factor
- Critical pressure (bar)24.2427
- Critical temperature (°C)571.967
- Critical volume (m³/kmol)0.7045
- Dipole moment
- Melting temperature (°C)171.29
- Normal boiling temperature (°C)353.7
State-dependent Properties
- API gravity6.27033
- Compressibility factor0.00810781
- Density (kg/m³)1090.55
- Dynamic viscosity (cP)0
- Enthalpy of vaporization (mass) (kJ)0
- Enthalpy of vaporization (molar) (kJ/kmol)
- Gibbs free energy (kJ/kmol)0
- Joule–Thomson coefficient
- Kinematic viscosity
- Molar enthalpy (kJ/kmol)0
- Molar entropy (kJ/(kmol·K))0
- Molar heat capacity (kJ/(kmol·K))302.717
- Molar volume (m³/kmol)0.198361
- Parachor9.7543e-5
- Poynting correction factor1.0087
- Prandtl number
- Saturation pressure (bar)1.3176e-6
- Saturation temperature (°C)353.7
- Solubility parameter
- Specific enthalpy (kJ)0
- Specific entropy (kJ/kg·K)0
- Specific gravity1.09162
- Specific heat capacity (kJ/kg·K)1.39938
- Surface tension0.0433275
- Thermal conductivity
- Thermal diffusivity
Safety Properties
- Autoignition temperature (°C)-273.15
- Flash point temperature (°C)-273.15
- Lower flammability limit0.00601487
- Upper flammability limit0.0382765
Environmental Properties
- Global warming potential
- Ozone depletion potential