Record Information
Version1.0
Creation Date2009-04-04 04:37:11 UTC
Update Date2026-04-05 19:10:16 UTC
Accession NumberCHEM000683
Identification
Common NameAmmonium thiocyanate
ClassSmall Molecule
DescriptionAmmonium thiocyanate is a chemical compound of cyanide.
Contaminant Sources
  • Clean Air Act Chemicals
  • HPV EPA Chemicals
  • T3DB toxins
  • ToxCast & Tox21 Chemicals
Contaminant Type
  • Cyanide Compound
  • Household Toxin
  • Industrial/Workplace Toxin
  • Inorganic Compound
  • Nitrile
  • Organic Compound
  • Pollutant
  • Synthetic Compound
Chemical Structure
Thumb
Synonyms
ValueSource
Ammonium thiocyanic acidGenerator
Ammonium thiocyanate, (15)N-labeled CPDMeSH
Thiocyanic acid, magnesium saltMeSH
Thiocyanic acid, ammonium saltMeSH
Ammonium rhodanateMeSH
Thiocyanic acidMeSH
Thiocyanic acid, barium saltMeSH
Chemical FormulaCH4N2S
Average Molecular Mass76.121 g/mol
Monoisotopic Mass76.010 g/mol
CAS Registry Number1762-95-4
IUPAC Nameammonium cyanosulfanide
Traditional Nameammonium thiocyanate
SMILES[NH4+].[S-]C#N
InChI IdentifierInChI=1S/CHNS.H3N/c2-1-3;/h3H;1H3
InChI KeySOIFLUNRINLCBN-UHFFFAOYSA-N
Chemical Taxonomy
Description belongs to the class of organic compounds known as thiocyanates. These are salts or esters of thiocyanic acid, with the general formula RSC#N (R=alkyl, aryl).
KingdomOrganic compounds
Super ClassOrganosulfur compounds
ClassThiocyanates
Sub ClassNot Available
Direct ParentThiocyanates
Alternative Parents
Substituents
  • Thiocyanate
  • Organic nitrogen compound
  • Organopnictogen compound
  • Hydrocarbon derivative
  • Organic salt
  • Organonitrogen compound
  • Aliphatic acyclic compound
Molecular FrameworkAliphatic acyclic compounds
External DescriptorsNot Available
Biological Properties
StatusDetected and Not Quantified
OriginExogenous
Cellular Locations
  • Cytoplasm
  • Extracellular
Biofluid LocationsNot Available
Tissue LocationsNot Available
PathwaysNot Available
ApplicationsNot Available
Biological RolesNot Available
Chemical RolesNot Available
Physical Properties
StateSolid
AppearanceRed crystals.
Experimental Properties
PropertyValue
Melting Point149.6°C
Boiling PointNot Available
Solubility630 mg/mL [SHIU,WY et al. (1990)]
Predicted Properties
PropertyValueSource
Water Solubility41.5 g/LALOGPS
logP0.22ALOGPS
logP0.51ChemAxon
logS-0.26ALOGPS
pKa (Strongest Acidic)0.5ChemAxon
Physiological Charge-1ChemAxon
Hydrogen Acceptor Count1ChemAxon
Hydrogen Donor Count0ChemAxon
Polar Surface Area23.79 ŲChemAxon
Rotatable Bond Count0ChemAxon
Refractivity16.09 m³·mol⁻¹ChemAxon
Polarizability4.75 ųChemAxon
Number of Rings0ChemAxon
Bioavailability1ChemAxon
Rule of FiveYesChemAxon
Ghose FilterNoChemAxon
Veber's RuleYesChemAxon
MDDR-like RuleNoChemAxon
Spectra
Spectra
Spectrum TypeDescriptionSplash KeyView
Predicted LC-MS/MSPredicted LC-MS/MS Spectrum - 10V, Positivesplash10-004i-9000000000-7bfa83f4b38961df73f8Spectrum
Predicted LC-MS/MSPredicted LC-MS/MS Spectrum - 20V, Positivesplash10-004i-9000000000-7bfa83f4b38961df73f8Spectrum
Predicted LC-MS/MSPredicted LC-MS/MS Spectrum - 40V, Positivesplash10-004i-9000000000-7bfa83f4b38961df73f8Spectrum
Predicted LC-MS/MSPredicted LC-MS/MS Spectrum - 10V, Negativesplash10-004i-9000000000-b7c429eba46a048b8162Spectrum
Predicted LC-MS/MSPredicted LC-MS/MS Spectrum - 20V, Negativesplash10-004i-9000000000-b7c429eba46a048b8162Spectrum
Predicted LC-MS/MSPredicted LC-MS/MS Spectrum - 40V, Negativesplash10-004i-9000000000-b7c429eba46a048b8162Spectrum
1D NMR13C NMR SpectrumNot AvailableSpectrum
Toxicity Profile
Route of ExposureInhalation (1) ; oral (1) ; dermal (1)
Mechanism of ToxicityOrganic nitriles decompose into cyanide ions both in vivo and in vitro. Consequently the primary mechanism of toxicity for organic nitriles is their production of toxic cyanide ions or hydrogen cyanide. Cyanide is an inhibitor of cytochrome c oxidase in the fourth complex of the electron transport chain (found in the membrane of the mitochondria of eukaryotic cells). It complexes with the ferric iron atom in this enzyme. The binding of cyanide to this cytochrome prevents transport of electrons from cytochrome c oxidase to oxygen. As a result, the electron transport chain is disrupted and the cell can no longer aerobically produce ATP for energy. Tissues that mainly depend on aerobic respiration, such as the central nervous system and the heart, are particularly affected. Cyanide is also known produce some of its toxic effects by binding to catalase, glutathione peroxidase, methemoglobin, hydroxocobalamin, phosphatase, tyrosinase, ascorbic acid oxidase, xanthine oxidase, succinic dehydrogenase, and Cu/Zn superoxide dismutase. Cyanide binds to the ferric ion of methemoglobin to form inactive cyanmethemoglobin. (2)
MetabolismOrganic nitriles are converted into cyanide ions through the action of cytochrome P450 enzymes in the liver. Cyanide is rapidly absorbed and distributed throughout the body. Cyanide is mainly metabolized into thiocyanate by either rhodanese or 3-mercaptopyruvate sulfur transferase. Cyanide metabolites are excreted in the urine. (1)
Toxicity ValuesLD50: 500 mg/kg (Oral, Mouse) (3) LD50: 500 mg/kg (Intraperitoneal, Mouse) (3)
Lethal Dose200 to 300 milligrams for an adult human (cyanide salts). (4)
Carcinogenicity (IARC Classification)No indication of carcinogenicity to humans (not listed by IARC).
Uses/SourcesNot Available
Minimum Risk LevelNot Available
Health EffectsExposure to high levels of cyanide for a short time harms the brain and heart and can even cause coma, seizures, apnea, cardiac arrest and death. Chronic inhalation of cyanide causes breathing difficulties, chest pain, vomiting, blood changes, headaches, and enlargement of the thyroid gland. Skin contact with cyanide salts can irritate and produce sores. (1, 2)
SymptomsCyanide poisoning is identified by rapid, deep breathing and shortness of breath, general weakness, giddiness, headaches, vertigo, confusion, convulsions/seizures and eventually loss of consciousness. (1, 2)
TreatmentAntidotes to cyanide poisoning include hydroxocobalamin and sodium nitrite, which release the cyanide from the cytochrome system, and rhodanase, which is an enzyme occurring naturally in mammals that combines serum cyanide with thiosulfate, producing comparatively harmless thiocyanate. Oxygen therapy can also be administered. (2)
Concentrations
Not Available
DrugBank IDNot Available
HMDB IDNot Available
FooDB IDNot Available
Phenol Explorer IDNot Available
KNApSAcK IDNot Available
BiGG IDNot Available
BioCyc IDNot Available
METLIN IDNot Available
PDB IDNot Available
Wikipedia LinkAmmonium thiocyanate
Chemspider IDNot Available
ChEBI IDNot Available
PubChem Compound ID15666
Kegg Compound IDNot Available
YMDB IDNot Available
ECMDB IDNot Available
References
Synthesis ReferenceNot Available
MSDSNot Available
General ReferencesNot Available