Technetium(IV) chloride

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Technetium(IV) chloride
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Names
IUPAC name
Technetium(IV) chloride
Other names
Technetium tetrachloride, Technetium chloride
Identifiers
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3D model (JSmol)
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  • InChI=1S/4ClH.Tc/h4*1H;/q;;;;+4/p-4
    Key: DCEWLADEQKZQQZ-UHFFFAOYSA-J
  • [Cl-].[Cl-].[Cl-].[Cl-].[Tc+4]
Properties
TcCl4
Molar mass 239.718 g/mol
Appearance Red solid
Boiling point 300 °C (572 °F; 573 K)[1]
Structure
Orthorhombic, oP40
Pbca, No. 61
a = 0.603 nm, b = 1.165 nm, c = 1.406 nm
α = 90°, β = 90°, γ = 90°
Related compounds
Other anions
Technetium(VI) fluoride
Other cations
Manganese(II) chloride
Rhenium(V) chloride
Ruthenium(III) chloride
Except where otherwise noted, data are given for materials in their standard state (at 25 °C [77 °F], 100 kPa).

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Technetium(IV) chloride is the inorganic compound with the formula TcCl4. It was discovered in 1957 as the first binary halide of technetium. It is the highest oxidation binary chloride of technetium that has been isolated as a solid. It is volatile at elevated temperatures and its volatility has been used for separating technetium from other metal chlorides.[2] Colloidal solutions of technetium(IV) chloride are oxidized to form Tc(VII) ions when exposed to gamma rays.[3]

Technetium tetrachloride can be synthesized from the reaction of Cl2 with technetium metal at elevated temperatures between 300 and 500 °C:[4]

Tc + 2 Cl2 → TcCl4

Technetium tetrachloride has also been prepared from the reaction of technetium(VII) oxide with carbon tetrachloride in a sealed vessel at elevated temperature:[5]

Tc2O7 + 7 CCl4 → 2 TcCl4 + 7 COCl2 + 3 Cl2

At 450 °C under vacuum, TcCl4 decomposes to TcCl3 and TcCl2.[6]

As verified by X-ray crystallography, the compound is an inorganic polymer consisting of interconnected TcCl6 octahedra.

References

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  1. ^ Page Module:Citation/CS1/styles.css has no content.Lide, D. R., ed. (2005). CRC Handbook of Chemistry and Physics (86th ed.). Boca Raton, Florida: CRC Press. ISBN 0-8493-0486-5.
  2. ^ Page Module:Citation/CS1/styles.css has no content.Schwochau, Klaus (2000). Technetium. Wiley-VCH. p. 67. ISBN 978-3-527-29496-1.
  3. ^ Page Module:Citation/CS1/styles.css has no content.Fattahi, M.; Vichot, L.; Poineau, F.; Houée-Levin, C.; Grambow, B. (2005). "Speciation of technetium(IV) chloride under gamma irradiation". Radiochimica Acta. 93 (7): 409–413. doi:10.1524/ract.2005.93.7.409. S2CID 96640348.
  4. ^ Page Module:Citation/CS1/styles.css has no content.Johnstone, Erik V.; Poineau, Frederic; Forster, Paul M.; Ma, Longzou; Hartmann, Thomas; Cornelius, Andrew; Antonio, Daniel; Sattelberger, Alfred P.; Czerwinski, Kenneth R. (2012-07-09). "Technetium Tetrachloride Revisited: A Precursor to Lower-Valent Binary Technetium Chlorides". Inorganic Chemistry. 51 (15): 8462–8467. doi:10.1021/ic301011c. OSTI 1307429. PMID 22775538.
  5. ^ Page Module:Citation/CS1/styles.css has no content.Housecroft, Catherine E.; Sharpe, A. G. (2005). Inorganic chemistry. Upper Saddle River, N.J.: Pearson Prentice Hall. p. 669. ISBN 0-13-039913-2. OCLC 56834315.
  6. ^ Page Module:Citation/CS1/styles.css has no content.Poineau, Frederic; Johnstone, Erik V.; Czerwinski, Kenneth R.; Sattelberger, Alfred P. (2014). "Recent Advances in Technetium Halide Chemistry". Accounts of Chemical Research. 47 (2): 624–632. doi:10.1021/ar400225b. PMID 24393028.

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