XAFS investigation of [Pd(NH3)4][AuCl4]2 and its thermolysis products
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Springer Science and Business Media LLC
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http://link.springer.com/content/pdf/10.1007/s10973-010-0723-y.pdf
Reference24 articles.
1. Korenev SV, Venediktov AB, Shubin YV, Gromilov SA, Yusenko KV. Synthesis and structure of binary complexes of platinum group metals—precursors of metallic materials. J Struct Chem. 2003;44:46–59.
2. Shubin YV, Filatov EY, Baidina IA. Synthesis of [M(NH3)5Cl](ReO4)2 (M = Cr, Co, Ru, Rh, Ir) and investigation of thermolysis products. Crystal structure of [Rh(NH3)5Cl](ReO4)2. J Struct Chem. 2006;47:1103–10.
3. Shubin YV, Zadesenets AV, Venediktov AB. Double complex salts [M(NH3)5Cl][M′Br4] (M = Rh, Ir, Co, Cr, Ru; M′ = Pt, Pd): synthesis, X-ray diffraction characterization, and thermal properties. Russ J Inorg Chem. 2006;51:202–9.
4. Zadesenets AV, Venediktov AB, Shubin YV. [Zn(NH3)4][PtCl6] and [Cd(NH3)4][PtCl6] as precursors for intermetallic compounds PtZn and PtCd. Russ J Inorg Chem. 2007;52:500–4.
5. Yusenko KV, Filatov EY, Vasilchenko DB, Baidina IA, Zadesenez AV, Shubin YV. Synthesis and thermal decomposition of the oxalatho cuprates(II)-[M(NH3)(4)] [Cu(C2O4)(2)]*3H(2)O, M = Pt, Pd. Z Kristallogr. 2007;26(Suppl):289–95.
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