Diethylamine
- IUPAC name
- N-ethylethanamine
- Molecular formula
- C4H11N
- Molecular weight
- 73.14 g/mol
- Exact mass
- 73.089149355 Da
- XLogP3
- 0.6
- Topological polar surface area
- 12.0 Ų
- Hydrogen-bond donors
- 1
- Hydrogen-bond acceptors
- 1
- Covalent units
- 1
- Defined stereocentres
- 0
Also known as
16 more reported names
External database identifiers
- ChEBI:CHEBI:85259
- ChEMBL:CHEMBL1189
- EPA DTXSID:DTXSID6021909
- PubMed:23125777
- PubMed:22981763
- PubMed:22971778
- PubMed:22969612
- PubMed:22963600
- PubMed:22893517
- PubMed:22821066
- PubMed:22796174
- PubMed:22784696
- PubMed:22769012
- PubMed:22741777
- PubMed:22622350
Evidence from additional scientific databases
NIH PubChem PUG-View
Attributed physical-property, hazard, environmental and use annotations.
- Autoignition Temperature: 594 °F (USCG, 1999) Source: CAMEO Chemicals
- Autoignition Temperature: 594 °F (312 °C) (closed cup) Source: Hazardous Substances Data Bank (HSDB)
- Autoignition Temperature: 312 °C Source: ILO-WHO International Chemical Safety Cards (ICSCs)
- Boiling Point: 131.9 °F at 760 mmHg (NTP, 1992) Source: CAMEO Chemicals
- Boiling Point: 55.5 °C Source: Hazardous Substances Data Bank (HSDB)
- Boiling Point: 55.00 to 58.00 °C. @ 760.00 mm Hg Source: Human Metabolome Database (HMDB)
- Boiling Point: 55.5 °C Source: ILO-WHO International Chemical Safety Cards (ICSCs)
- Boiling Point: 132 °F Source: Occupational Safety and Health Administration (OSHA)
- Boiling Point: 55.5 °C @760 [mm Hg] Source: PAC Chemical Database, U.S. Department of Energy
- Boiling Point: 132 °F Source: The National Institute for Occupational Safety and Health (NIOSH)
- Color/Form: Colorless liquid Source: Hazardous Substances Data Bank (HSDB)
- Density: 0.708 at 68 °F (USCG, 1999) - Less dense than water; will float Source: CAMEO Chemicals
- Density: 0.7056 g/cu cm at 20 °C Source: Hazardous Substances Data Bank (HSDB)
- Density: Critical density: 0.246 g/cc Source: Hazardous Substances Data Bank (HSDB)
- Density: Saturated liquid density: 44.090 lb/cu ft; liquid heat capacity: 0.601 Btu/lb-F; liquid thermal conductivity: 0.850 Btu-inch/hr-sq ft-F; saturated vapor pressure: 3.933 lb/sq in; saturated vapor density: 0.05059 lb/cu ft (all at 70 °F) Source: Hazardous Substances Data Bank (HSDB)
- Density: Relative density (water = 1): 0.7 Source: ILO-WHO International Chemical Safety Cards (ICSCs)
- Density: 0.71 Source: Occupational Safety and Health Administration (OSHA)
- Density: 1.39 @ 20°C Source: PAC Chemical Database, U.S. Department of Energy
- Density: 0.71 Source: The National Institute for Occupational Safety and Health (NIOSH)
- Dissociation Constants: pKa = 11.09 at 20 °C (conjugate acid) Source: Hazardous Substances Data Bank (HSDB)
- Flash Point: -20 °F (NTP, 1992) Source: CAMEO Chemicals
- Flash Point: -20 °F Source: Haz-Map, Information on Hazardous Chemicals and Occupational Diseases
- Flash Point: -22.99 °C (-9.38 °F) - closed cup Source: Hazardous Substances Data Bank (HSDB)
- Flash Point: < -26 °C, closed cup Source: Hazardous Substances Data Bank (HSDB)
- Flash Point: 5 °F open cup Source: Hazardous Substances Data Bank (HSDB)
- Flash Point: Less than - 17.8 °C closed cup Source: Hazardous Substances Data Bank (HSDB)
- Flash Point: -28 °C c.c. Source: ILO-WHO International Chemical Safety Cards (ICSCs)
- Flash Point: -15 °F Source: Occupational Safety and Health Administration (OSHA)
- Flash Point: -15 °F Source: The National Institute for Occupational Safety and Health (NIOSH)
- LogP: log Kow = 0.58 Source: Hazardous Substances Data Bank (HSDB)
- LogP: 0.580 Source: Human Metabolome Database (HMDB)
- LogP: 0.58 Source: ILO-WHO International Chemical Safety Cards (ICSCs)
- Melting Point: -58 °F (NTP, 1992) Source: CAMEO Chemicals
- Melting Point: -50 °C Source: Hazardous Substances Data Bank (HSDB)
- Melting Point: -50 °C Source: Human Metabolome Database (HMDB)
- Melting Point: -50 °C Source: ILO-WHO International Chemical Safety Cards (ICSCs)
- Melting Point: -58 °F Source: Occupational Safety and Health Administration (OSHA)
- Melting Point: -49.8 °C Source: PAC Chemical Database, U.S. Department of Energy
- Melting Point: -58 °F Source: The National Institute for Occupational Safety and Health (NIOSH)
- Odor: Fishy, ammonia-like odor Source: Hazardous Substances Data Bank (HSDB)
- Physical Description: Diethylamine appears as a clear colorless liquid with an ammonia-like odor. Density 5.9 lb / gal. Flash point -15 °F. A respiratory irritant. Corrosive to the eyes and skin. Vapors heavier than air. Toxic oxides of nitrogen produced during combustion. Source: CAMEO Chemicals
- Physical Description: Liquid Source: EPA Chemical Data Reporting (CDR)
- Physical Description: Colorless liquid with a fishy, ammonia-like odor; [NIOSH] Source: Haz-Map, Information on Hazardous Chemicals and Occupational Diseases
- Physical Description: Liquid Source: Human Metabolome Database (HMDB)
- Physical Description: COLOURLESS LIQUID WITH PUNGENT ODOUR. Source: ILO-WHO International Chemical Safety Cards (ICSCs)
- Physical Description: Colorless liquid with a fishy, ammonia-like odor. Source: Occupational Safety and Health Administration (OSHA)
- Physical Description: Colorless liquid with a fishy, ammonia-like odor. Source: The National Institute for Occupational Safety and Health (NIOSH)
- Refractive Index: Index of refraction: 1.3864 at 20 °C/D Source: Hazardous Substances Data Bank (HSDB)
- Solubility: greater than or equal to 100 mg/mL at 63 °F (NTP, 1992) Source: CAMEO Chemicals
- Solubility: In water, infinitely soluble /1X10+6 mg/L/ at 25 °C Source: Hazardous Substances Data Bank (HSDB)
- Solubility: Miscible with water, alcohol Source: Hazardous Substances Data Bank (HSDB)
- Solubility: Soluble in ether and carbon tetrachloride Source: Hazardous Substances Data Bank (HSDB)
- Solubility: Miscible with most organic solvents Source: Hazardous Substances Data Bank (HSDB)
- Solubility: For more Solubility (Complete) data for DIETHYLAMINE (6 total), please visit the HSDB record page. Source: Hazardous Substances Data Bank (HSDB)
- Solubility: Solubility in water: miscible Source: ILO-WHO International Chemical Safety Cards (ICSCs)
- Solubility: Miscible Source: The National Institute for Occupational Safety and Health (NIOSH)
- Vapor Pressure: 195 mmHg at 68 °F ; 200 mmHg at 70 °F (NTP, 1992) Source: CAMEO Chemicals
- Vapor Pressure: 237.0 [mmHg] Source: Haz-Map, Information on Hazardous Chemicals and Occupational Diseases
- Vapor Pressure: 237 mm Hg at 25 °C Source: Hazardous Substances Data Bank (HSDB)
- Vapor Pressure: Vapor pressure, kPa at 20 °C: 25.9 Source: ILO-WHO International Chemical Safety Cards (ICSCs)
- Vapor Pressure: 192 mmHg Source: Occupational Safety and Health Administration (OSHA)
- Vapor Pressure: 237 [mm Hg] @25 °C Source: PAC Chemical Database, U.S. Department of Energy
- Vapor Pressure: 192 mmHg Source: The National Institute for Occupational Safety and Health (NIOSH)
- Viscosity: 0.319 mPa.s at 25 °C; 0.239 mPa.s at 50 °C Source: Hazardous Substances Data Bank (HSDB)
- pH: STRONGLY ALKALINE Source: Hazardous Substances Data Bank (HSDB)
- Substance: Diethylamine Source: NTP Technical Reports
- NTP Technical Report: TR-566: Toxicology and Carcinogenesis Studies of Diethylamine (CASRN 109-89-7) in F344/N Rats and B6C3F1 Mice (Inhalation studies) (2011 ) Source: NTP Technical Reports
- Peer Review Date: 11/19/09 Source: NTP Technical Reports
- Conclusion for Male Rat: No Evidence Source: NTP Technical Reports
- Conclusion for Female Rat: No Evidence Source: NTP Technical Reports
- Conclusion for Male Mice: No Evidence Source: NTP Technical Reports
- Conclusion for Female Mice: No Evidence Source: NTP Technical Reports
- Summary: Under the conditions of these 2-year inhalation studies, there was no evidence of carcinogenic activity of diethylamine in male or female F344/N rats exposed to 31, 62.5, or 125 ppm. There was no evidence of carcinogenic activity of diethylamine in male or female B6C3F1 mice exposed to 16, 31, or 62.5 ppm.; Exposure to diethylamine resulted in increased incidences of nonneoplastic lesions of the nose in male and female rats and mice, of the cornea in male rats, and of the pleura and lung in female rats. Source: NTP Technical Reports
- Carcinogen Classification: No indication of carcinogenicity to humans (not listed by IARC). Source: Toxin and Toxin Target Database (T3DB)
- Exposure Routes: The substance can be absorbed into the body by inhalation of its vapour, through the skin and by ingestion. Source: ILO-WHO International Chemical Safety Cards (ICSCs)
- Exposure Routes: inhalation, skin absorption, ingestion, skin and/or eye contact Source: The National Institute for Occupational Safety and Health (NIOSH)
- First Aid: EYES: First check the victim for contact lenses and remove if present. Flush victim's eyes with water or normal saline solution for 20 to 30 minutes while simultaneously calling a hospital or poison control center. Do not put any ointments, oils, or medication in the victim's eyes without specific instructions from a physician. IMMEDIATELY transport the victim after flushing eyes to a hospital even if no symptoms (such as redness or irritation) develop.; SKIN: IMMEDIATELY flood affected skin with water while removing and isolating all contaminated clothing. Gently wash all affected skin areas thoroughly with soap and water. IMMEDIATELY call a hospital or poison control center even if no symptoms (such as redness or irritation) develop. IMMEDIATELY transport the victim to a hospital for treatment after washing the affected areas.; INHALATION: IMMEDIATELY leave the contaminated area; take deep breaths of fresh air. If symptoms (such as wheezing, coughing, shortness of breath, or burning in the mouth, throat, or chest) develop, call a physician and be prepared to transport the victim to a hospital. Provide proper respiratory protection to rescuers entering an unknown atmosphere. Whene Source: CAMEO Chemicals
- ERG2024, Guide 132 (Diethylamine): General First Aid:; · Call 911 or emergency medical service.; · Ensure that medical personnel are aware of the material(s) involved, take precautions to protect themselves and avoid contamination.; · Move victim to fresh air if it can be done safely.; · Administer oxygen if breathing is difficult.; · If victim is not breathing:; -- DO NOT perform mouth-to-mouth resuscitation; the victim may have ingested or inhaled the substance.; -- If equipped and pulse detected, wash face and mouth, then give artificial respiration using a proper respiratory medical device (bag-valve mask, pocket mask equipped with a one-way valve or other device).; -- If no pulse detected or no respiratory medical device available, provide continuous compressions. Conduct a pulse check every two minutes or monitor for any signs of spontaneous respirations.; · Remove and isolate contaminated clothing and shoes.; · For minor skin contact, avoid spreading material on unaffected skin.; · In case of contact with substance, remove immediately by flushing skin or eyes with running water for at least 20 minutes.; · For severe burns, immediate medical attention is required.; · Effects of exposure (inhalation, ingestion, Source: Emergency Response Guidebook (ERG)
- First Aid: (General first aid procedures); Eye: Irrigate immediately - If this chemical contacts the eyes, immediately wash (irrigate) the eyes with large amounts of water, occasionally lifting the lower and upper lids. Get medical attention immediately.; Skin: Water flush immediately - If this chemical contacts the skin, immediately flush the contaminated skin with water. If this chemical penetrates the clothing, immediately remove the clothing and flush the skin with water. Get medical attention promptly.; Breathing: Respiratory support; Swallow: Medical attention immediately - If this chemical has been swallowed, get medical attention immediately. Source: The National Institute for Occupational Safety and Health (NIOSH)
- Signal: Danger Source: Regulation (EC) No 1272/2008 of the European Parliament and of the Council
- GHS Hazard Statements: H225: Highly Flammable liquid and vapor [Danger Flammable liquids]; H302: Harmful if swallowed [Warning Acute toxicity, oral]; H312: Harmful in contact with skin [Warning Acute toxicity, dermal]; H314: Causes severe skin burns and eye damage [Danger Skin corrosion/irritation]; H332: Harmful if inhaled [Warning Acute toxicity, inhalation] Source: Regulation (EC) No 1272/2008 of the European Parliament and of the Council
- Precautionary Statement Codes: P210, P233, P240, P241, P242, P243, P260, P261, P264, P270, P271, P280, P301+P317, P301+P330+P331, P302+P352, P302+P361+P354, P303+P361+P353, P304+P340, P305+P354+P338, P316, P317, P321, P330, P362+P364, P363, P370+P378, P403+P235, P405, and P501 (click each P-code to see the statement) Source: Regulation (EC) No 1272/2008 of the European Parliament and of the Council
- Signal: Danger Source: European Chemicals Agency (ECHA)
- GHS Hazard Statements: H225 (100%): Highly Flammable liquid and vapor [Danger Flammable liquids]; H301+H311+H331 (17%): Toxic if swallowed, in contact with skin or if inhaled [Danger Acute toxicity, oral; acute toxicity, dermal; acute toxicity, inhalation]; H301 (27.6%): Toxic if swallowed [Danger Acute toxicity, oral]; H302 (72.4%): Harmful if swallowed [Warning Acute toxicity, oral]; H311 (31.3%): Toxic in contact with skin [Danger Acute toxicity, dermal]; H312 (68.7%): Harmful in contact with skin [Warning Acute toxicity, dermal]; H314 (100%): Causes severe skin burns and eye damage [Danger Skin corrosion/irritation]; H318 (30.8%): Causes serious eye damage [Danger Serious eye damage/eye irritation]; H331 (17%): Toxic if inhaled [Danger Acute toxicity, inhalation]; H332 (83%): Harmful if inhaled [Warning Acute toxicity, inhalation]; H335 (31.2%): May cause respiratory irritation [Warning Specific target organ toxicity, single exposure; Respiratory tract irritation] Source: European Chemicals Agency (ECHA)
- Precautionary Statement Codes: P210, P233, P240, P241, P242, P243, P260, P261, P262, P264, P264+P265, P270, P271, P280, P301+P316, P301+P317, P301+P330+P331, P302+P352, P302+P361+P354, P303+P361+P353, P304+P340, P305+P354+P338, P316, P317, P319, P321, P330, P361+P364, P362+P364, P363, P370+P378, P403+P233, P403+P235, P405, and P501 (click each P-code to see the statement) Source: European Chemicals Agency (ECHA)
- ECHA C&L Notifications Summary: Aggregated GHS information provided per 2588 reports by companies from 27 notifications to the ECHA C&L Inventory. Each notification may be associated with multiple companies.; Information may vary between notifications depending on impurities, additives, and other factors. The percentage value in parenthesis indicates the notified classification ratio from companies that provide hazard codes. Only hazard codes with percentage values above 10% are shown. For more detailed information, please visit ECHA C&L website. Source: European Chemicals Agency (ECHA)
- Signal: Danger Source: NITE-CMC
- GHS Hazard Statements: H225: Highly Flammable liquid and vapor [Danger Flammable liquids]; H301: Toxic if swallowed [Danger Acute toxicity, oral]; H311: Toxic in contact with skin [Danger Acute toxicity, dermal]; H314: Causes severe skin burns and eye damage [Danger Skin corrosion/irritation]; H318: Causes serious eye damage [Danger Serious eye damage/eye irritation]; H332: Harmful if inhaled [Warning Acute toxicity, inhalation]; H370: Causes damage to organs [Danger Specific target organ toxicity, single exposure]; H372: Causes damage to organs through prolonged or repeated exposure [Danger Specific target organ toxicity, repeated exposure] Source: NITE-CMC
- Precautionary Statement Codes: P210, P233, P240, P241, P242, P243, P260, P261, P262, P264, P264+P265, P270, P271, P280, P301+P316, P301+P330+P331, P302+P352, P302+P361+P354, P303+P361+P353, P304+P340, P305+P354+P338, P308+P316, P316, P317, P319, P321, P330, P361+P364, P363, P370+P378, P403+P235, P405, and P501 (click each P-code to see the statement) Source: NITE-CMC
- GHS Hazard Statements: H225: Highly Flammable liquid and vapor [Danger Flammable liquids]; H301: Toxic if swallowed [Danger Acute toxicity, oral]; H311: Toxic in contact with skin [Danger Acute toxicity, dermal]; H314: Causes severe skin burns and eye damage [Danger Skin corrosion/irritation]; H318: Causes serious eye damage [Danger Serious eye damage/eye irritation]; H332: Harmful if inhaled [Warning Acute toxicity, inhalation]; H371: May cause damage to organs [Warning Specific target organ toxicity, single exposure]; H372: Causes damage to organs through prolonged or repeated exposure [Danger Specific target organ toxicity, repeated exposure] Source: NITE-CMC
- Signal: Danger Source: Hazardous Chemical Information System (HCIS), Safe Work Australia
- NFPA Health Rating: 3 - Materials that, under emergency conditions, can cause serious or permanent injury. Source: Hazardous Substances Data Bank (HSDB)
- NFPA Fire Rating: 3 - Liquids and solids that can be ignited under almost all ambient temperature conditions. Materials produce hazardous atmospheres with air under almost all ambient temperatures or, though unaffected by ambient temperatures, are readily ignited under almost all conditions. Source: Hazardous Substances Data Bank (HSDB)
- NFPA Instability Rating: 0 - Materials that in themselves are normally stable, even under fire conditions. Source: Hazardous Substances Data Bank (HSDB)
- Target Organs: Eyes, skin, respiratory system, cardiovascular system Source: The National Institute for Occupational Safety and Health (NIOSH)
- Toxicity Summary: IDENTIFICATION AND USE: Diethylamine (DEN) is a colorless liquid with fishy, ammonia-like odor. It is used in petroleum industry, in flotation agents, dyes, pharmaceuticals. It also used as a selective solvent for the removal of impurities from oils, fats, and waxes, and as a corrosion inhibitor in iron, steel, and metal industries. HUMAN EXPOSURE AND TOXICITY: Adult volunteers were exposed to 25 ppm (75 mg/cu m) diethylamine in a climate chamber for 15 min in order to study the acute nasal reactions to an exposure equivalent to the present threshold limit value-short-term exposure limit. Exposure to a concentration increasing from 0 to 12 ppm took place for 60 min, equal to an average concentration of 10 ppm (30 mg/cu m). A moderate to strong olfactory response and distinct nasal and eye irritation were observed. Edema of the epithelium of the cornea, generally without pain, has been produced by diethylamine vapors, causing colored halos to be seen around lights. The edema of the corneal epithelium, which is principally responsible for the disturbance of vision, clears spontaneously by the next day, but after exceptionally intense exposures the edema and blurring have taken severa Source: Hazardous Substances Data Bank (HSDB)
- Environmental Bioconcentration: An estimated BCF of 3 was calculated in fish for diethylamine(SRC), using a log Kow of 0.58(1) and a regression-derived equation(2). According to a classification scheme(3), this BCF suggests the potential for bioconcentration in aquatic organisms is low(SRC). Source: Hazardous Substances Data Bank (HSDB)
- Environmental Fate: TERRESTRIAL FATE: Based on a classification scheme(1), an estimated Koc value of 27(SRC), determined from a structure estimation method(2), indicates that diethylamine is expected to have very high mobility in soil(SRC). The pKa of diethylamine is 11.09(3), indicating that this compound will exist entirely in the cation form in the environment and cations generally adsorb more strongly to soils containing organic carbon and clay than their neutral counterparts(4). Volatilization of diethylamine from moist soil surfaces is not expected to be an important fate process(SRC) given its cationic state(SRC). Diethylamine is expected to volatilize from dry soil surfaces(SRC) based upon a vapor pressure of 237 mm Hg at 25 °C(5). Between 69 and 89% of the Theoretical BOD was achieved for diethylamine using an activated sludge inoculum digested for 4 weeks(6), suggesting biodegradation may be an important fate process in soil(SRC). Source: Hazardous Substances Data Bank (HSDB)
- Environmental Fate: AQUATIC FATE: Based on a classification scheme(1), an estimated Koc value of 27(SRC), determined from a structure estimation method(2), indicates that diethylamine is not expected to adsorb to suspended solids and sediment(SRC). A pKa of 11.09(3) indicates diethylamine will exist entirely in the cation form at pH values of 5 to 9 and, therefore, volatilization from water surfaces is not expected to be an important fate process(SRC). Diethylamine is not expected to undergo hydrolysis in the environment due to the lack of functional groups that hydrolyze under environmental conditions(4). According to a classification scheme(5), an estimated BCF of 3(SRC), from its log Kow of 0.58(6) and a regression-derived equation(2), suggests the potential for bioconcentration in aquatic organisms is low(SRC). Diethylamine, present at 10 ppm, reached 38% of its Theoretical BOD in 12 days using freshwater/sediment inoculum(7). The biodegradation half-life of diethylamine in stream water was 0.9 days at an initial concentration of 10 mg/L(8). Source: Hazardous Substances Data Bank (HSDB)
- Environmental Fate: ATMOSPHERIC FATE: According to a model of gas/particle partitioning of semivolatile organic compounds in the atmosphere(1), diethylamine, which has a vapor pressure of 237 mm Hg at 25 °C(2), is expected to exist solely as a vapor in the ambient atmosphere. Vapor-phase diethylamine is degraded in the atmosphere by reaction with photochemically-produced hydroxyl radicals(SRC); the half-life for this reaction in air is estimated to be 5 hours(SRC), calculated from its rate constant of 8.1X10-11 cu cm/molecule-sec at 25 °C(SRC) that was derived using a structure estimation method(3). Diethylamine does not contain chromophores that absorb at wavelengths >290 nm(4) and, therefore, is not expected to be susceptible to direct photolysis by sunlight(SRC). Source: Hazardous Substances Data Bank (HSDB)
- Consumer Uses: Not Known or Reasonably Ascertainable Source: EPA Chemical Data Reporting (CDR)
- Industry Uses: Intermediate; Surface modifier; Not Known or Reasonably Ascertainable Source: EPA Chemical Data Reporting (CDR)
- Sources/Uses: Used in the manufacture of rubber, petroleum products, resins, dyes, and pharmaceuticals; [Merck Index] Used as a corrosion inhibitor, rubber accelerator, and polymerization inhibitor; Also used in electroplating and as an organic intermediate; A metabolite of the drug disulfiram used in the treatment of alcohol abuse; [ACGIH] Source: Haz-Map, Information on Hazardous Chemicals and Occupational Diseases
- Industrial Processes with risk of exposure: Electroplating [Category: Plate]; Plastic Composites Manufacturing [Category: Industry] Source: Haz-Map, Information on Hazardous Chemicals and Occupational Diseases
- Uses: Rubber chemicals, textile specialties, selective solvent, dyes, flotation agents, resins, pesticides, polymerization inhibitors, pharmaceuticals, petroleum chemicals, electroplating, corrosion inhibitors. Source: Hazardous Substances Data Bank (HSDB)
- Uses: In the rubber and petroleum industry. In flotation agents; resins, dyes, buffer formulations, and pharmaceuticals. Source: Hazardous Substances Data Bank (HSDB)
- Uses: CHEMICAL INT IN SYNTH OF RUBBER-PROCESSING CHEMICALS, DIETHYLAMINO ETHANOL FOR MEDICINALS, & 3-DIETHYLAMINO PROPYLAMINE, 2-DIETHYLAMINO ETHYL METHACRYLATE & N,N-DIETHYL- M-TOLUAMIDE (INSECT REPELLENT) Source: Hazardous Substances Data Bank (HSDB)
- Uses: Used for the manufacture of diethyldithiocarbamate and thiurans (rubber processing accelerators) Source: Hazardous Substances Data Bank (HSDB)
- Uses: For more Uses (Complete) data for DIETHYLAMINE (6 total), please visit the HSDB record page. Source: Hazardous Substances Data Bank (HSDB)
Mapped by: Existing checksum-valid CAS to unique PubChem CID match. Retrieved: 2026-08-31. Open source record
Scientific classifications and hazard annotations provide context and do not replace the market-specific regulatory decision shown above.
Additional source coverage and match status
| Source | Result | Checked |
|---|---|---|
| NIH PubChem PUG-View | Exact match | 2026-08-31 |
A recorded no-match is useful evidence that the source was checked; it is not a claim that the substance does not exist elsewhere.
Retrieved from NIH PubChem on 2026-08-31 by checksum-valid CAS matching. Chemical properties do not replace the regulatory decision on this page.