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A New Heteroleptic Complex of Nitrosyl Ruthenium with Ethylenediamine and the NO–Ru–F Trans-Coordinate: Synthesis, Structure, and Photoinduced Linkage Isomerization.

Authors :
Brovko, A. O.
Kuratieva, N. V.
Emelyanov, V. A.
Pishchur, D. P.
Kostin, G. A.
Source :
Journal of Structural Chemistry. Jul2024, Vol. 65 Issue 7, p1404-1411. 8p.
Publication Year :
2024

Abstract

A new method is proposed to synthesize ethylenediamine complex [RuNO(en)2OH]I2 from K2[RuNOCl5], which increases the target product yield to 76%. Subsequent treatment of nitrate salt [RuNO(en)2 OH](NO3)2 with concentrated HF with the precipitation of HClO4 gives [RuNO(en)2F](ClO4)2 with a quantitative yield. According to the single crystal XRD data, in the [RuNO(en)2F]2+ cationic moiety, nitrosyl and fluoride are in the trans-position relative to each other, and in the ruthenium coordination environment, the equatorial plane is composed of four nitrogen atoms from ethylenediamine ligands. The 450 nm light irradiation of the [RuNO(en)2F](ClO4)2 complex at 80 K results in the formation of metastable linkage isomer MS1 with nitrosyl group coordination through the oxygen atom. According to the IR spectroscopic data, the population of MS1 is about 1%, and the respective vibrational band disappears when heated in a temperature range of 280-310 K. The activation parameters of the MS1–GS (ground state) transition according to the DSC data are Ea = 107.1±6.8 kJ/mol, lnk0 = 36.1±2.6. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00224766
Volume :
65
Issue :
7
Database :
Academic Search Index
Journal :
Journal of Structural Chemistry
Publication Type :
Academic Journal
Accession number :
178655114
Full Text :
https://doi.org/10.1134/S0022476624070114