Insight into the thermal decomposition of ammonium hexahalogenoiridates(iv) and hexachloroiridate(iii)
Author:
Affiliation:
1. BAM Federal Institute for Materials Research and Testing
2. D-12489 Berlin
3. Germany
4. Nikolaev Institute of Inorganic Chemistry
5. 630090 Novosibirsk
6. Russia
7. Synchrotron SOLEIL
8. Saint-Aubin
9. Gilf-sur-Yvette
10. France
Abstract
Decomposition of (NH4)3[IrCl6]·H2O, (NH4)2[IrCl6] and (NH4)2[IrBr6] has been studied. (NH4)2[Ir(NH3)Cl5] and (NH4)2[Ir(NH3)Br5] have been proposed as key intermediates in hydrogen flow. In the inert atmosphere, (NH4)[Ir(NH3)2Cl4] and (NH4)[Ir(NH3)2Br4] were found.
Funder
Russian Union of the Federal Republic of Israel
Agence Nationale de la Recherche
Publisher
Royal Society of Chemistry (RSC)
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://pubs.rsc.org/en/content/articlepdf/2020/CP/D0CP02743J
Reference30 articles.
1. W. W. Wendlandt and J. P.Smith , The Thermal Properties of Transition Metal Ammine Complexes , Elsevier , Amsterdam, London, New York , 1967 , p. 235
2. Thermolysis of ternary ammonium chlorides of rhenium and the noble metals
3. Zum Mechanismus des thermischen Abbaus von Ammonium- und Ammin-Chlorokomplexen des Rutheniums, Rhodiums, Palladiums und Platins
4. The ammonium ion and the ammine ligand as internal reducing agents for platinum-group-metal complexes
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