Sodium thiocyanate

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Sodium thiocyanate
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The sodium cation
The thiocyanate anion (space-filling model)
Names
IUPAC name
Sodium thiocyanate
Other names
Sodium rhodanide
Sodium sulfocyanate
Sodium rhodanate
Thiocyanic acid, sodium salt
Identifiers
540-72-7 YesY
ChEBI CHEBI:30952 YesY
ChEMBL ChEMBL1644028 N
ChEMBL84336 YesY
ChEMBL1078613 YesY
ChemSpider 10443 YesY
EC Number 208-754-4
Jmol 3D model Interactive image
PubChem 516871
RTECS number XL2275000
UNII 5W0K9HKA05 YesY
  • InChI=1S/CHNS.Na/c2-1-3;/h3H;/q;+1/p-1 YesY
    Key: VGTPCRGMBIAPIM-UHFFFAOYSA-M YesY
  • InChI=1S/CHNS.Na/c2-1-3;/h3H;/q;+1/p-1
    Key: VGTPCRGMBIAPIM-REWHXWOFAB
  • Key: VGTPCRGMBIAPIM-UHFFFAOYSA-M
  • [Na+].[S-]C#N
Properties
NaSCN
Molar mass 81.072 g/mol
Appearance deliquescent colorless crystals
Density 1.735 g/cm3
Melting point 287 °C (549 °F; 560 K)
Boiling point 307 °C (585 °F; 580 K) decomposes
139 g/100 mL (21 °C)
225 g/100 mL (100 °C)
Solubility soluble in acetone, alcohols, ammonia, SO2
Acidity (pKa) -1.28
1.545
Structure
orthorhombic
Vapor pressure {{{value}}}
Related compounds
Other anions
Sodium cyanate
Sodium cyanide
Other cations
Potassium thiocyanate
Ammonium thiocyanate
Except where otherwise noted, data are given for materials in their standard state (at 25 °C [77 °F], 100 kPa).
N verify (what is YesYN ?)
Infobox references

Sodium thiocyanate(sometimes called Sodium sulphocyanide) is the chemical compound with the formula NaSCN. This colorless deliquescent salt is one of the main sources of the thiocyanate anion. As such, it is used as a precursor for the synthesis of pharmaceuticals and other specialty chemicals.[1] Thiocyanate salts are typically prepared by the reaction of cyanide with elemental sulfur:

8 NaCN + S8 → 8 NaSCN

Sodium thiocyanate crystallizes in an orthorhombic cell. Each Na+ center is surrounded by three sulfur and three nitrogen ligands provided by the triatomic thiocyanate anion.[2] It is commonly used in the laboratory as a test for the presence of Fe3+ ions.

Applications in chemical synthesis

Sodium thiocyanate is employed to convert alkyl halides into the corresponding alkylthiocyanates. Closely related reagents include ammonium thiocyanate and potassium thiocyanate, which has twice the solubility in water. Silver thiocyanate may be used as well; the precipitation of insoluble silver halides help simplify workup. Treatment of isopropyl bromide with sodium thiocyanate in a hot ethanolic solution affords isopropyl thiocyanate.[3] Protonation of sodium thiocyanate affords isothiocyanic acid, S=C=NH (pKa = -1.28).[4] This species is generated in situ from sodium thiocyanate; it adds to organic amines to afford derivatives of thiourea.[5]

References

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