Preparation and structure of [Ru2(O2CMe)4]2[Fe(CN)5NO] and magnetically ordered Hx[Ru2(O2CMe)4]3−x[Cr(CN)5NO] possessing interpenetrating lattices |
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Authors: | Bretni S. Kennon Peter W. Stephens |
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Affiliation: | a Department of Chemistry, 315 S. 1400 E. RM 2124, University of Utah, Salt Lake City, UT 84112-0850, USA b The Department of Physics & Astronomy, Stony Brook University, Stony Brook, NY 11794, USA |
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Abstract: | Reaction of [Ru2(O2CMe)4]Cl with K3[Cr(CN)5NO] in water forms Hx[RuII/III2(O2CMe)4]3−x-[Cr(CN)5NO]·zH2O (x = 0.2) that magnetically orders at 4.0 K and possesses an interpenetrating body centered cubic [a = 13.2509(2) Å] structure with random locations of the bridging nitrosyl ligands, and x/3 vacant cation sites. Similarly, the aqueous reaction of [Ru2(O2CMe)4]Cl with Na2[Fe(CN)5NO] forms paramagnetic [Ru2(O2CMe)4]2[Fe(CN)5NO]·H2O, which has a similar tetragonal interpenetrating structure [a = 13.0186(1) Å, c = 13.0699(2) Å] where the NO ligands are presumably nonbridging and 1/3 of the expected cation sites are unoccupied. The presence of uncoordinated NO sites in addition to missing neighboring [Ru2(O2CMe)4]+ units, results in significant vacancies (or holes) in the lattice. |
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Keywords: | Dinuclear ruthenium(II,III) complex Magnetic ordering Extended 3-D structure Interpenetrating lattices Magnetically order Nitroprusside |
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