Heterobimetallic Metallaborane Chemistry: Synthesis and Characterization of a “Lightly Stabilized” Molybdairidahexaborane, [{Cp*Ir}{(CO)3(THF)Mo}B4H8], and Its Direct Conversion to [{Cp*Ir}{(CO)3(L)Mo}B4H8] (L = CO, PPh3, NCPh, CNBu, NH3, PPh3CHC(O)OMe)
Author:
Affiliation:
1. Department of Chemistry and Biochemistry, University of Notre Dame, Notre Dame, Indiana 46556-5670
Publisher
American Chemical Society (ACS)
Subject
Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry
Link
https://pubs.acs.org/doi/pdf/10.1021/om049308f
Reference34 articles.
1. Fine-Tuning of Metallaborane Geometries: Chemistry of Iridaboranes Derived from the Reaction of [(Cp*Ir)2HxCl4−x] (x=0-2; Cp*=η5-C5Me5) with LiBH4
2. Crystal and molecular structure of [.eta.5-C5(CH3)5]3Co3B4H4, an electron-hyperdeficient cluster with severe intramolecular ligand-ligand crowding
3. Nickel-boron "hybrid" clusters. Synthesis of polyhedral nickelaboranes and nickelacarboranes from small borane and carborane anions. Crystal structure of (.eta.5-C5H5)4Ni4B4H4
4. Isolation and Structure of [(PPh3)3(PPh2)2Pd4B20H16]. A Possible Prognostic for New Globular Borane-Based Cluster Architectures
5. Heterometallic Cluster Assembly on a Rhenium–Monocarborane Substrate
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