Triphenylphosphine-substituted triruthenaborane clusters: a route to [Ru3(CO)9–x(PPh3)xBH5](x= 1–3)via systematic cluster degradation. Molecular structures of [Ru3H(CO)8-(PPh3)(B2H5)] and [Ru3(CO)6(PPh3)3BH5]·CH2Cl2
Author:
Publisher
Royal Society of Chemistry (RSC)
Subject
General Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/1993/DT/DT9930002727
Reference31 articles.
1. The preparation of the metal-rich ruthenaborane, Ru3(CO)9BH5: a case of isomerisation involving endo-hydrogen migration.
2. Ru3(CO)9B2H6: A metal-rich ruthenaborane analogue of pentaborane(9) and a model for a triruthenium supported unsaturated hydrocarbon
3. HRu3(CO)8(PPh3)B2H5: crystallographic confirmation of the first M3B2-containing analogue of pentaborane(9)
4. The structure and properties of HFe3(CO)9BH3R and the conjugate bases [HFe3(CO)9BH2R]- (R = H and CH3). Inorganometallic analogs of hydrocarbyltriiron clusters
5. Ru3(CO)9BH5 and [Ru3(CO)9BH4]− as precursors to higher nuclearity homo- and heterometallic clusters: molecular structure of a second isomer of HRu6(CO)17B
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