Chemistry:Lithium phosphide

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Lithium phosphide
Names
Other names
Trilithium phosphide
Identifiers
3D model (JSmol)
ChemSpider
EC Number
  • 235-020-0
Properties
Li3P
Molar mass 51.79 g·mol−1
Appearance Red-brown crystals
Density 1.43 g/cm3
Reacts
Structure
cubic
Related compounds
Other anions
Other cations
Except where otherwise noted, data are given for materials in their standard state (at 25 °C [77 °F], 100 kPa).
Infobox references
Tracking categories (test):

Lithium phosphide is an inorganic compound of lithium and phosphorus with the chemical formula Li
3
P
. This dark colored compound is formally the lithium salt of phosphine, consisting of lithium cations Li+
and phosphide anions P3−. It is hazardous to handle because of its high reactivity toward air.[1]

Synthesis

Heating red phosphorus and lithium in an argon atmosphere:[1]

12 Li + P
4
→ 4 Li
3
P

Reaction of monolithium phosphide and lithium:

LiP + 2 Li → Li
3
P

Physical and chemical properties

Lithium phosphide forms red-brown crystals of hexagonal systems, space group P63/mmc,[2] cell parameters a = 0.4264 nm, c = 0.7579 nm, Z = 2.[3][4]

The compound is a very strong base, and reacts with water to release phosphine:[5]

Li
3
P + 3 H
2
O → 3 LiOH + PH
3

Uses

The compound is proposed to be used as a potential electrolyte for solid-state devices.[6]

Reaction of lithium with red phosphorus at 870 °C gives Li
3
P
7
.[7]

Further reading

Safety

Alkali metal phosphides are dangerous compounds when exposed to oxygen or moisture.[8]

References

  1. ↑ 1.0 1.1 E. Donges (1963). "Phosphides, Arsenides, Antimonides and Bismuthides of Alkali Metals from the Elements". in G. Brauer. Handbook of Preparative Inorganic Chemistry, 2nd Ed.. 2. NY, NY: Academic Press. p. 985. 
  2. ↑ "mp-736: Li3P (hexagonal, P6_3/mmc, 194)". materialsproject.org. https://materialsproject.org/materials/mp-736/. 
  3. ↑ Seel, Max; Pandey, Ravi (1990). "Band Structure and Electronic Properties of Lithium Phosphide Li3P" (in en). MRS Proceedings 210. doi:10.1557/PROC-210-155. https://www.cambridge.org/core/journals/mrs-online-proceedings-library-archive/article/abs/band-structure-and-electronic-properties-of-lithium-phosphide-li3p/1568CFF750019D7E79D485BDD4EAB752. Retrieved 10 December 2021. 
  4. ↑ Donnay, Joseph Désiré Hubert (1963) (in en). Crystal Data; Determinative Tables. American Crystallographic Association. p. 765. https://books.google.com/books?id=x5ghAQAAMAAJ&dq=lithium+phosphide+Li3P&pg=PA765. Retrieved 10 December 2021. 
  5. ↑ Dong, Yongkwan; DiSalvo, Francis J. (15 April 2007). "Reinvestigation of trilithium phosphide, Li 3 P". Acta Crystallographica Section E 63 (4): i97–i98. doi:10.1107/S1600536807008422. http://scripts.iucr.org/cgi-bin/paper?S1600536807008422. 
  6. ↑ Wan, Chaoying; Huang, Xingyi; Bowen, Chris (23 June 2021) (in en). Two-dimensional Inorganic Nanomaterials for Conductive Polymer Nanocomposites. Royal Society of Chemistry. ISBN 978-1-83916-260-2. https://books.google.com/books?id=r7k0EAAAQBAJ&dq=lithium+phosphide+Li3P&pg=PT222. Retrieved 10 December 2021. 
  7. ↑ Manriquez, V.; Hönle, W.; von Schnering, H. G. (1986). "Zur Chemie und Strukturchemie von Phosphiden und Polyphosphiden. 42. Trilithiumheptaphosphid Li3P7: Darstellung, Struktur und Eigenschaften". Zeitschrift für Anorganische und Allgemeine Chemie 539 (8): 95–109. doi:10.1002/zaac.19865390810. 
  8. ↑ (in en) Toxic Substances Control Act (TSCA) Chemical Substance Inventory. U.S. Government Printing Office. 1979. p. 9. https://books.google.com/books?id=EwXoYmUt_B0C&dq=lithium+phosphide+Li3P&pg=RA1-PA46. Retrieved 10 December 2021.