Tri-n-propylamine is used for pharmaceutical products, pesticides, rubber and fiber processing aids
Tri-n-propylamine is used for raw materials of organic synthesis such as pharmaceuticals, pesticides, rubber and fiber processing aids.
Tri-n-propylamine is used for the synthesis of perfluorinated artificial plasma and petrochemical quaternary ammonium molecular sieve catalyst.
CAS Number: 102-69-2
EC Number: 203-047-7
IUPAC / Systematic name N,N-Dipropylpropan-1-amine
Molecular formula: C₉H₂₁N
Molecular weight (molar mass): ~ 143.27 g/mol
SYNONYMS:
N,N-Dipropylpropan-1-amine, TRIPROPYLAMINE, 102-69-2, Tri-n-propylamine, 1-Propanamine, N,N-dipropyl-, N,N-Dipropyl-1-propanamine, Propyldi-n-propylamine, 06S624V3U2, DTXSID9021849, FEMA NO. 4247, CHEBI:38880, RefChem:191957, DTXCID501849, 203-047-7, N,N-dipropylpropan-1-amine, MFCD00009363, NPr3, N,N-Dipropyl-1-propylamine, (n-C3H7)3N, Tripropylamine, >=98%, Tripropyl amine, HSDB 2097, EINECS 203-047-7, UN2260, UNII-06S624V3U2, tri-n-propyl amin, tri(n-propyl)amine, tri-n-propyl-amine, tris(1-propyl)amine, propane, dipropylamino-, Tripropylamine [UN2260] [Flammable liquid], propane, 1-dipropylamino-, EC 203-047-7, SCHEMBL5358, NCIOpen2_001723, TRIPROPYLAMINE [FHFI], TRIPROPYLAMINE [HSDB], SCHEMBL131833, SCHEMBL543212, SCHEMBL2729745, SCHEMBL2986144, Tripropylamine, analytical standard, AAA10269, AKOS000120960, UN 2260, NS00004814, T0522, Tripropylamine [UN2260] [Flammable liquid], Q1637944, InChI=1/C9H21N/c1-4-7-10(8-5-2)9-6-3/h4-9H2,1-3H, N,N,N-Tri-n-propylamine, N,N-Dipropyl-1-propanamine, Propyldi-n-propylamine, Tri-n-propylamine, N,N-dipropyl-1-propanamine, N,N-dipropylpropan-1-amine, 1-propanamine, N,N-dipropyl-, 1-propanamine,N,N-dipropyl-, propyl di-N-propyl amine, propyl-di-N-propylamine, tri-N-propyl amine, tri-N-propylamine, tripropyl ammonium, tripropylamine, N,N-Dipropanamine, n,n-dipropyl-1-propanamine, TNPA, TRI-N-PROPYLAMINE, TRIPROPYLAMINE, (n-C3H7)3N, 1-Propanamine,N,N-dipropyl-, n,n-dipropyl-1-propanamin, N,N-Dipropyl-1-propylamine, N,N-Dipropylpropanamine, Propyldi-n-propylamine, Tripropylamin, tripropylamine,[flammableliquidlabel], tripropylaminenormale, tris(1-propyl)amine, TRIPROPYLAMINE, 99+%, TRIPROPYLAMINE, >=98%, tri-n-proptlamine, tripropylammonium, Tri-n-propylamin, (n-C3H7)3N, 3-propylamine, Tripropylamin, Tripropylamine, Trinpropylamine, Propyldi-n-propylamine, N,N-Dipropylpropanamine, n,n-dipropyl-1-propanamin, N,N-Dipropyl-1-propanamine, N,N-Dipropyl-1-propylamine, N,N-dipropylpropan-1-amine, 1-Propanamine,N,N-dipropyl-, N,N-dipropylpropan-1-aminium, tripropylamine, Tripropylamine, Tripropylammonium, 1-Propanamine, N,N-dipropyl-, Propyldi-n-propylamine, [ChemIDplus] N,N-Dipropyl-1-propanamine, N,N-Dipropylpropanamine, Tripropilamina (Spanish DOT), [CAMEO] UN2260, Tri-n-propylamine, Tripropylamine, N,N-Dipropyl-1-propylamine, (n-C3H7)3N, UN 2260, Propyldi-n-propylamine, N,N-Dipropyl-1-propanamine
Tri-n-propylamine, a tertiary amine, belongs to the class of volatile organic compounds (VOCs).
Eelectrochemiluminescence behavior of ruthenium complex/Tri-n-propylamine systems at DNA-modified gold electrode has been studied.
Tri-n-propylamine appears as a water-white liquid.
The flash point of Tri-n-propylamine is near 125°F.
Tri-n-propylamine is less dense than water.
Tri-n-propylamine, also known as (N-C3H7)3N or NPR3, belongs to the class of organic compounds known as trialkylamines.
These are organic compounds containing a trialkylamine group, characterized by exactly three alkyl groups bonded to the amino nitrogen.
Tri-n-propylamine exists as a solid, slightly soluble (in water), and a very strong basic compound (based on its pKa).
Tri-n-propylamine can be converted into perfluoroTri-n-propylamine.
Tri-n-propylamine has an ammoniacal and fishy taste.
Tri-n-propylamine is a tertiary amine that is ammonia in which each hydrogen atom is substituted by a propyl group.
Tri-n-propylamine is an organic compound with the formula (CH3CH2CH2)3N.
Tri-n-propylamine is classified as a tertiary amine.
Tri-n-propylamine is a colorless liquid with a "fishy" odor.
Tri-n-propylamine appears as a water-white liquid.
Flash point of Tri-n-propylamine is near 125 °F.
Tri-n-propylamine is less dense than water.
Tri-n-propylamine is used as a solvent.
Tri-n-propylamine is a tertiary amine that is ammonia in which each hydrogen atom is substituted by a propyl group.
Tri-n-propylamine (TPA od T-N-PA) is available in two grades: TPA normal and TPA +, a special high purity grade of TPA, for example for use as proton scavenger in API production.
Both qualities are available in bulk, drums and ISO-containers.
Tri-n-propylamine (TPA) is an organic compound having the molecular formula C3H9N.
Classified as an amine, which is a type of organic compound characterized by a fundamental nitrogen atom bearing a pair of unshared electrons,
Tri-n-propylamine presents as a colorless liquid emitting a potent ammonia-like fragrance.
This liquid substance readily mixes with water, finding utility across a range of laboratory contexts and organic synthesis procedures.
The versatile nature of Tri-n-propylamine finds application within scientific research realms.
Employed as a catalyst, it facilitates the construction of organic compounds as a reagent, Tri-n-propylamine aids in pharmaceutical production and it serves as an enzyme stabilizer.
Additionally, Tri-n-propylamine's role extends to polymer synthesis, chromatography solvent, and the formulation of dyes and pigments.
Tri-n-propylamine assumes the role of a proton contributor, bestowing a proton upon molecules or ions, thereby engendering novel molecules or ions.
This mechanism governs numerous chemical reactions, inclusive of amide and amine formation, alongside the genesis of organometallic complexes.
Tri-n-propylamine (TPA) is an organic compound having the molecular formula C3H9N.
Classified as an amine, which is a type of organic compound characterized by a fundamental nitrogen atom bearing a pair of unshared electrons, Tri-n-propylamine presents as a colorless liquid emitting a potent ammonia-like fragrance.
This liquid substance readily mixes with water, finding utility across a range of laboratory contexts and organic synthesis procedures.
The versatile nature of Tri-n-propylamine finds application within scientific research realms.
Employed as a catalyst, Tri-n-propylamine facilitates the construction of organic compounds as a reagent, it aids in pharmaceutical production and it serves as an enzyme stabilizer.
Tri-n-propylamine is an organic compound that belongs to the group of alkylamines.
Tri-n-propylamine has a phase transition temperature at -37 °C and can be used as a reagent in chemical synthesis, as well as an intermediate for the production of other compounds.
Tri-n-propylamine can be detected by electrochemical impedance spectroscopy (EIS) with a detection sensitivity of 0.5 ppm.
Kinetic data for Tri-n-propylamine was obtained using methyl ethyl ketone and hydrogen fluoride, which yielded k(M) = 1.2 x 10^-3 and k(S) = 2.4 x 10^-2 M-1s-1 respectively.
The reaction mechanism for Tri-n-propylamine involves the formation of picolinic acid from 3-hydroxypropionic acid and ammonia, followed by decarboxylation to form picolinic acid.
Tri-n-propylamine is a colorless liquid with an odor of amines.
Tri-n-propylamine is a colorless to slightly yellow liquid.
USES and APPLICATIONS of TRI-n-PROPYLAMINE:
The main application for Tri-n-propylamine is the production of quats, which are used as phase transfer catalyst.
Smaller applications are the use of Tri-n-propylamine as proton scavenger or as molecular template in the production of microporous inorganic catalysts.
Tri-n-propylamine is utilized in the production of ammonium and phosphonium salts; these are typically used in the pharmaceutical market.
Tri-n-propylamine is also used as an intermediate for pharmaceuticals and corrosion inhibitors.
Tri-n-propylamine is used as a solvent.
Applications of Tri-n-propylamine: Electronic chemicals, Fungicides int, and Intermediates
Chemical intermediate: Tri-n-propylamine is used in organic synthesis, for example in preparing other amine derivatives, or amine-base catalysis.
Solvent: Less common, but used as a solvent in specialized or research settings (amines can dissolve certain organics and act as base).
Catalyst & additive: In some formulations where a strong, non-sterically hindered tertiary amine is needed.
Laboratory reagent: For example, as a base in reactions, or neutralizer.
Tri-n-propylamine is a tertiary amine which belongs to the class of trialkylamines.
The main application for Tri-n-propylamine is the production of quats, which are used as phase transfer catalyst.
Smaller volumes of Tri-n-propylamine are used as proton scavenger or as molecular template in the production of microporous inorganic catalysts.
Tri-n-propylamine has been used in electrochemiluminescence as a coreactant.
Tri-n-propylamine was employed as coreactant in sandwich-type electrochemiluminescence biosensor for detection of α-fetoprotein.
Tri-n-propylamine was used as extraction agent for the reactive extraction of succinic acid in various alcohol diluents.
Additionally, Tri-n-propylamine's role extends to polymer synthesis, chromatography solvent, and the formulation of dyes and pigments.
Tri-n-propylamine assumes the role of a proton contributor, bestowing a proton upon molecules or ions, thereby engendering novel molecules or ions.
This mechanism governs numerous chemical reactions, inclusive of amide and amine formation, alongside the genesis of organometallic complexes.
Tri-n-propylamine is used to synthesize carbon nanotubes for research purposes.
Tri-n-propylamine is used as a solvent.
Tri-n-propylamine is used for pharmaceutical products, pesticides, rubber and fiber processing aids
Tri-n-propylamine is a raw material for organic synthesis, can be used for the synthesis of perfluorinated artificial plasma and petrochemical quaternary ammonium molecular sieve catalyst, this product also has important uses in laser technology.
Tri-n-propylamine is used for raw materials of organic synthesis such as pharmaceuticals, pesticides, rubber and fiber processing aids.
Tri-n-propylamine is used for the synthesis of perfluorinated artificial plasma and petrochemical quaternary ammonium molecular sieve catalyst.
Tri-n-propylamine also has important applications in laser technology.
Raw materials for organic synthesis, synthesis of perfluorinated artificial plasma and petrochemical quaternary ammonium molecular sieve catalysts.
Tri-n-propylamine also has important applications in laser technology.
ALTERNATIVE PARENTS of TRI-n-PROPYLAMINE:
*Organopnictogen compounds
*Hydrocarbon derivatives
SUBSTITUENTS of TRI-n-PROPYLAMINE:
*Tertiary aliphatic amine
*Organopnictogen compound
*Hydrocarbon derivative
*Aliphatic acyclic compound
CHEMICAL CHARACTERISTICS / BEHAVIOR of TRI-n-PROPYLAMINE:
*Type of amine:
Tertiary aliphatic amine (three propyl groups on nitrogen).
*Basicity:
Relatively strong among amines; the conjugate acid has pKa ~10.65.
*Hygroscopic:
Tends to absorb moisture from air.
*Incompatibilities:
Reacts with acids, oxidizing agents, metals/alloys (especially copper & copper alloys) etc.
*Reactivity:
Can form salts with acids; acts as base and nucleophile in organic chemistry; can react exothermically with acid.
Heat, ignition sources must be controlled.
BENEFITS / ADVANTAGES of TRI-n-PROPYLAMINE:
Good balance of basicity and organic solubility (soluble in many organic solvents, moderate in water).
Lower volatility and higher boiling point compared to smaller amines (makes handling somewhat easier in terms of vapor loss).
Useful in reactions needing moderate steric hindrance (not as bulky as e.g. triisopropylamine).
Relatively well-documented in safety / regulatory literature (data available).
PRODUCTION METHOD of TRI-n-PROPYLAMINE:
with N-propanol as raw material under the action of Ni-Cu-Al2O3 catalyst, dehydrogenation generates propanal, and then with ammonia addition, dehydration, the hydrogenation generates propylamine, and then generates dipropylamine and Tri-n-propylamine by repeated dehydration and hydrogenation.
The reaction temperature was (210±10) °c and the pressure was 396.66kPa.
The space velocity of N-propanol was 0.25-0.51L/L • h-1.
The raw material ratio is alcohol: Ammonia: Hydrogen = 4:2:4.
The conversion of N-propanol is 75%-83%, and the total yield of di-and Tri-n-propylamine is 75%-80%, wherein dipropylamine is 37%-41% and Tri-n-propylamine is 35%-40%.
Raw material consumption quota: propanol 3500kg/t, ammonia 500kg/t, hydrogen 1200.
NATURE of TRI-n-PROPYLAMINE:
colorless transparent flammable liquid, ammonia odor.
Soluble in ethanol, soluble in ether, water-soluble.
The relative density was 0.7558.
Boiling point 156 °c.
Melting Point -93.5 °c.
Flash point 40. 55 °c (Open Cup).
Refractive index 4181.
PREPARATION METHOD of TRI-n-PROPYLAMINE:
with N-propanol as raw material under the action of Ni-CLi-Al2 03 catalyst, dehydrogenation generates propanal, and then with ammonia addition, dehydration, hydrogenation to produce propylamine, and then by repeated dehydration, hydrogenation to produce dipropylamine and Tri-n-propylamine.
The reaction temperature was (210±10)℃, the pressure was 396. 66kPa, and the space velocity of N-propanol was 0. 25-0.51L/L.h-I.
The raw material ratio is alcohol: Ammonia: hydrogen -4:2:4.
The conversion of N-propanol is 75% ~ 83%, and the total yield of di-and Tri-n-propylamine is 75% ~ 80%, in which dipropylamine is 37% ~ 41% and Tri-n-propylamine is 35% ~ 40%.
PROPERTIES of TRI-n-PROPYLAMINE:
Tri-n-propylamine is a clear, colourless liquid with strong ammoniacal odour with tendency to turn pale yellow on prolonged storage.
Tri-n-propylamine is slightly miscible in water.
PHYSICAL and CHEMICAL PROPERTIES of TRI-n-PROPYLAMINE:
Appearance: Colorless liquid
Odor: Amine-type / fishy / typical tertiary amine smell
Density: ~ 0.75-0.76 g/cm³ at ~20–25 °C
Melting point (freezing point): ~ –93.5 °C
Boiling point: ~ 155-158 °C (at 1 atm)
Flash point: Closed cup ~ 32-33 °C
Vapor pressure: ~ 4.3 hPa at 20 °C
Vapor density: ~ 4.9 (air = 1)
Solubility in water: Poor: ~ 2.5-3 g/L at 20-25 °C
Partition coefficient (log P, n-octanol/water): ~ 0.9
pKa of the conjugate acid: ~ 10.65 at 20 - 25 °C
Freezing point: ~ –94 °C
Viscosity: ≈ 0.63-0.68 mPa·s at 20-25 °C
Appearance: colorless liquid
Density: 0.7558 g/cm3
Melting point: −93.5 °C (−136.3 °F; 179.7 K)
Boiling point: 156 °C (313 °F; 429 K)
Molecular Weight: 143.27 g/mol
XLogP3: 2.8
Hydrogen Bond Donor Count: 0
Hydrogen Bond Acceptor Count: 1
Rotatable Bond Count: 6
Exact Mass: 143.167399674 Da
Monoisotopic Mass: 143.167399674 Da
Topological Polar Surface Area: 3.2 Ų
Heavy Atom Count: 10
Formal Charge: 0
Complexity: 47.5
Isotope Atom Count: 0
Defined Atom Stereocenter Count: 0
Undefined Atom Stereocenter Count: 0
Defined Bond Stereocenter Count: 0
Undefined Bond Stereocenter Count: 0
Covalently-Bonded Unit Count: 1
Compound Canonicalized: Yes
Linear Formula: (CH3CH2CH2)3N
CAS Number: 102-69-2
Molecular Weight: 143.27
Beilstein: 1098331
EC Number: 203-047-7
MDL number: MFCD00009363
UNSPSC Code: 12352100
PubChem Substance ID: 24848619
NACRES: NA.22
Molecular Formula / Molecular Weight: C9H21N = 143.27
Physical State (20 deg.C): Liquid
Storage Temperature: Room Temperature (Recommended in a cool and dark place, <15°C)
Store Under Inert Gas: Store under inert gas
Condition to Avoid: Hygroscopic
CAS RN: 102-69-2
Reaxys Registry Number: 1098331
PubChem Substance ID: 87576449
SDBS (AIST Spectral DB): 2947
MDL Number: MFCD00009363
Appearance: colorless to pale yellow clear liquid (est)
Assay: 95.00 to 100.00
Food Chemicals Codex Listed: No
Specific Gravity: 0.75400 to 0.76000 @ 25.00 °C.
Pounds per Gallon - (est).: 6.274 to 6.324
Refractive Index: 1.41100 to 1.41700 @ 20.00 °C.
Melting Point: -94.00 to -92.00 °C. @ 760.00 mm Hg
Boiling Point: 156.00 to 158.00 °C. @ 760.00 mm Hg
Vapor Pressure: 2.663000 mmHg @ 25.00 °C. (est)
Vapor Density: 4.9 ( Air = 1 )
Flash Point: 98.00 °F. TCC ( 36.67 °C. )
logP (o/w): 2.790
Soluble in: alcohol water, 3423 mg/L @ 25 °C (est) water, 748 mg/L @ 25 °C (exp)
Insoluble in: water
Melting Point: -93.0°C
Color: Colorless
Density: 0.7600g/mL
Boiling Point: 156.0°C
Flash Point: 32.5°C
Infrared Spectrum: Authentic
Assay Percent Range: 0.2% max. dipropylamine (GC)
Refractive Index: 1.4155 to 1.4175
Linear Formula: (CH3CH2CH2)3N
Beilstein: 04, II, 623
Specific Gravity: 0.76
Solubility Information: Solubility in water: 2.6g/L (20°C). Other solubilities: soluble in most organic solvents
Viscosity: 0.627 mPa.s (25°C)
Formula Weight: 143.27
Percent Purity: 98%
Physical Form: Liquid
Chemical Name or Material: Tripropylamine
CAS: 102-69-2
Molecular Formula: C9H21N
Molecular Weight (g/mol): 143.27
MDL Number: MFCD00009363
InChI Key: YFTHZRPMJXBUME-UHFFFAOYSA-N
Synonym: tripropylamine, tri-n-propylamine, n,n-dipropyl-1-propanamine, 1-propanamine, n,n-dipropyl, propyldi-n-propylamine, tripropylammonium, tripropyl amine, npr3, n,n-dipropyl-1-propylamine, tripropylamine
PubChem CID: 7616
ChEBI: CHEBI:38880
IUPAC Name: N,N-dipropylpropan-1-amine
SMILES: CCCN(CCC)CCC
Physical state: liquid
Color: colorless
Odor: No data available
Melting point/freezing point: Melting point/range: -93.5 °C - lit.
Initial boiling point and boiling range: 155 - 158 °C - lit. 40 - 42 °C at 15 hPa - lit.
Flammability (solid, gas): No data available
Upper/lower flammability or explosive limits:
Upper explosion limit: 5,6 %(V)
Lower explosion limit: 0,7 %(V)
Flash point: 34 °C - closed cup
Autoignition temperature: No data available
Decomposition temperature: No data available
pH: 11,4 at 2,6 g/l at 20 °C
Viscosity:
Viscosity, kinematic: No data available
Viscosity, dynamic: 0,627 mPa.s at 25 °C
Water solubility: 0,44 g/l at 20 °C - OECD Test Guideline 105
Partition coefficient: n-octanol/water log Pow: 0,9 at 25 °C
Vapor pressure: 4,3 hPa at 20 °C
Density: 0,753 g/cm3 at 25 °C - lit.
Relative vapor density: No data available
Particle characteristics: No data available
Explosive properties: No data available
Oxidizing properties: No data available
Other safety information: Relative vapor density 4,95 - (Air = 1.0)
Physical State: Liquid
Storage: Store at room temperature
Melting Point: -93.5° C (lit.)
Boiling Point: 155-158° C (lit.)
Density: .75 g/cm3 at 25° C
Chemical Formula: C9H21N
Average Molecular Weight: 143.2697
Monoisotopic Molecular Weight: 143.167399677
IUPAC Name: tripropylamine
Traditional Name: tripropylamine
CAS Registry Number: 102-69-2
SMILES: CCCN(CCC)CCC
InChI Identifier: InChI=1S/C9H21N/c1-4-7-10(8-5-2)9-6-3/h4-9H2,1-3H3
InChI Key: YFTHZRPMJXBUME-UHFFFAOYSA-N
CAS: 102-69-2
EINECS: 203-047-7
InChI: InChI=1/C9H21N/c1-4-7-10(8-5-2)9-6-3/h4-9H2,1-3H3/p+1
InChIKey: YFTHZRPMJXBUME-UHFFFAOYSA-N
CAS No.: 102-69-2
Molecular Formula: C9H21N
Molecular Weight: 143.27 g/mol
IUPAC Name: N,N-dipropylpropan-1-amine
Standard InChI: InChI=1S/C9H21N/c1-4-7-10(8-5-2)9-6-3/h4-9H2,1-3H3
Standard InChI Key: YFTHZRPMJXBUME-UHFFFAOYSA-N
SMILES: CCCN(CCC)CCC
Canonical SMILES: CCCN(CCC)CCC
Boiling Point: 313 °F at 760 mm Hg 156.0 °C 156 °C
Colorform: Water white liquid Colorless liquid
Flash Point: 98 °F (NTP, 1992) 105 °F (41 °C) OPEN CUP
Melting Point: -136.3 °F (NTP, 1992) -93.5 °C -93.5°C
Molecular Formula / Molecular Weight: C9H21N = 143.27
Physical State (20 deg.C): Liquid
Storage Temperature: Room Temperature (Recommended in a cool and dark place, <15°C)
Store Under Inert Gas: Store under inert gas
Condition to Avoid: Hygroscopic
CAS RN: 102-69-2
Reaxys Registry Number: 1098331
PubChem Substance ID: 87576449
SDBS (AIST Spectral DB): 2947
MDL Number: MFCD00009363
FIRST AID MEASURES of TRI-n-PROPYLAMINE:
-Description of first-aid measures
*General advice:
Show this material safety data sheet to the doctor in attendance.
*If inhaled:
After inhalation:
Fresh air.
*In case of skin contact:
Take off immediately all contaminated clothing.
Rinse skin with
water/ shower.
*In case of eye contact:
After eye contact:
Rinse out with plenty of water.
Call in ophthalmologist.
Remove contact lenses.
*If swallowed:
After swallowing:
Immediately make victim drink water (two glasses at most).
Consult a physician.
-Indication of any immediate medical attention and special treatment needed.
No data available
ACCIDENTAL RELEASE MEASURES of TRI-n-PROPYLAMINE:
-Environmental precautions:
Do not let product enter drains.
-Methods and materials for containment and cleaning up:
Cover drains.
Collect, bind, and pump off spills.
Observe possible material restrictions.
Take up dry.
Dispose of properly.
Clean up affected area.
FIRE FIGHTING MEASURES of TRI-n-PROPYLAMINE:
-Extinguishing media:
*Suitable extinguishing media:
Carbon dioxide (CO2)
Foam
Dry powder
*Unsuitable extinguishing media:
For this substance/mixture no limitations of extinguishing agents are given.
-Further information:
Prevent fire extinguishing water from contaminating surface water or the ground water system.
EXPOSURE CONTROLS/PERSONAL PROTECTION of TRI-n-PROPYLAMINE:
-Control parameters:
--Ingredients with workplace control parameters:
-Exposure controls:
--Personal protective equipment:
*Eye/face protection:
Use equipment for eye protection.
Safety glasses
*Body Protection:
protective clothing
*Respiratory protection:
Recommended Filter type: Filter A
-Control of environmental exposure:
Do not let product enter drains.
HANDLING and STORAGE of TRI-n-PROPYLAMINE:
-Conditions for safe storage, including any incompatibilities:
*Storage conditions:
Tightly closed.
Dry.
STABILITY and REACTIVITY of TRI-n-PROPYLAMINE:
-Chemical stability:
The product is chemically stable under standard ambient conditions (room temperature).
-Possibility of hazardous reactions:
No data available