Ammonium bifluoride

Chemical compound From Wikipedia, the free encyclopedia

Ammonium bifluoride is an inorganic compound with the formula [NH4][HF2] or [NH4]F·HF. In solid form, it is a white, crystalline salt. It is typically produced from ammonia and hydrogen fluoride.

Quick facts Names, Identifiers ...
Ammonium bifluoride
Space fill model of the ammonium cation
Space fill model of the ammonium cation
Space fill model of the bifluoride anion
Space fill model of the bifluoride anion
Sample of Ammonium bifluoride
Sample of Ammonium bifluoride
Names
IUPAC name
Ammonium bifluoride
Other names
  • Ammonium acid fluoride
  • Ammonium hydrofluoride
  • Ammonium difluoride
  • Ammonium hydrogendifluoride
  • Ammonium hydrogen difluoride
Identifiers
3D model (JSmol)
ChemSpider
ECHA InfoCard 100.014.252 Edit this at Wikidata
EC Number
  • 215-676-4
UNII
UN number 1727
  • InChI=1S/F2H.H3N/c1-3-2;/h;1H3/q-1;/p+1 X markN
    Key: XIONBZYFLSJNBW-UHFFFAOYSA-O X markN
  • InChI=1/2FH.H3N/h2*1H;1H3
    Key: KVBCYCWRDBDGBG-UHFFFAOYAG
  • [NH4+].F[H-]F
  • [F-].F.[NH4+]
Properties
[NH4][HF2]
Molar mass 57.044 g·mol−1
Appearance Colourless crystals
Density 1.50 g cm−3
Melting point 126 °C (259 °F; 399 K)
Boiling point 240 °C (464 °F; 513 K)(decomposes)
63g/(100 ml) (20 °C)
Solubility in alcohol slightly soluble
1.390
Structure
Cubic, related to the CsCl structure
[NH4]+ cation: tetrahedral
[HF2] anion: linear
Hazards
GHS labelling:
GHS05: CorrosiveGHS06: Toxic[1]
H301, H314[1]
P280, P301+P310, P305+P351+P338, P310[1]
NFPA 704 (fire diamond)
NFPA 704 four-colored diamondHealth 3: Short exposure could cause serious temporary or residual injury. E.g. chlorine gasFlammability 0: Will not burn. E.g. waterInstability 0: Normally stable, even under fire exposure conditions, and is not reactive with water. E.g. liquid nitrogenSpecial hazards (white): no code
3
0
0
Related compounds
Other cations
potassium bifluoride
Related compounds
ammonium fluoride
Except where otherwise noted, data are given for materials in their standard state (at 25 °C [77 °F], 100 kPa).
X markN verify (what is checkYX markN ?)
Close

Ammonium bifluoride is toxic and corrosive. In industry, it etches glass and has been considered as a chemical intermediate for hydrofluoric acid production.

Structure

Ammonium bifluoride, as its name indicates, contains an ammonium cation ([NH4]+), and a bifluoride (or hydrogen difluoride) anion ([HF2]). The triatomic bifluoride anion features a strong three-center four-electron bond (specifically, a symmetrical hydrogen bond) with a bond energy greater than 155 kJ/mol,[2] and an H-F length of 114 pm.[3]

In solid form ([NH4][HF2]), ammonium bifluoride is similar to other fluoride salts.[4] Its crystal system is orthorhombic,[5] with each cation coordinated with four anions in a tetrahedron (and vice versa). Hydrogen atoms in the ammonium ion form hydrogen bonds with the fluorine atoms, and in the resulting structure, N-H-F are roughly colinear.[6][7] As a result of these hydrogen bonds, this crystal structure varies from those of other bifluoride salts, such as potassium bifluoride and rubidium bifluoride.[5]

Production and applications

Ammonium bifluoride is a component of some etchants. It attacks the silica component of glass:

SiO2 + 4 [NH4][HF2] → SiF4 + 4 [NH4]F + 2 H2O

Potassium bifluoride is a related, more commonly used etchant.

Ammonium bifluoride has been considered as an intermediate for the production of hydrofluoric acid from hexafluorosilicic acid. Hexafluorosilicic acid ammonolyzes to give ammonium fluoride, which thermally decomposes to the bifluoride:

H2[SiF6] + 6 NH3 + 2 H2O → SiO2 + 6 [NH4]F
2 [NH4]F → NH3 + [NH4][HF2]

The resulting ammonium bifluoride is converted to sodium bifluoride, which thermally decomposes to release HF.[8]

Ammonium bifluoride is also used as an additive in tin-nickel plating processes as the fluoride ion acts as a complexing agent with the tin, allowing for greater control over the resulting composition and finish.[citation needed]

Stability and toxicity

Ammonium bifluoride crystals are unstable, and decompose rapidly when exposed to air.[6]

Ammonium bifluoride is toxic to consume and a skin corrosion agent. Upon exposure to skin, rinsing with water followed by a treatment of calcium gluconate is required.[1] In water, ammonium bifluoride exists in chemical equilibrium with hydrofluoric acid and heating releases hydrogen fluoride gas.[9] Consequently, there is an equivalent toxicological risk as is present with hydrofluoric acid, and the same safety precautions apply.[10][9]

Ammonium bifluoride is used in some automotive wheel cleaning products. Ammonium bifluoride products are often considered a safer alternative to hydrofluoric acid, yet still pose clear risks to the handler.[10] Many users unaware of the danger have experienced injuries.[11] Professional Car Washing and Detailing magazine considers ammonium bifluoride, ammonium fluoride, and hydrofluoric acid all "too dangerous for any use in a car wash environment,"[12] and a 2015 report from the U.S. Centers for Disease Control and Prevention concurs.[13]

References

Related Articles

Wikiwand AI