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Dive into the research topics where Bruce E. Hodson is active.

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Featured researches published by Bruce E. Hodson.


Inorganic Chemistry | 2008

Formation of Intramolecular Rings in Ferramonocarbollide Complexes

Andreas Franken; Bruce E. Hodson; Thomas D. McGrath; F. Gordon A. Stone

Addition of PPh 2Cl and Tl[PF 6] to CH 2Cl 2 solutions of [N(PPh 3) 2][6,6,6-(CO) 3- closo-6,1-FeCB 8H 9] ( 1) affords the isomeric B-substituted species [6,6,6-(CO) 3- n-(PHPh 2)- closo-6,1-FeCB 8H 8] [ n = 7 ( 2a) or 10 ( 2b)]. Deprotonation (NaH) of the phosphine ligand in 2a, with subsequent addition of [IrCl(CO)(PPh 3) 2] and Tl[PF 6], yields the neutral, zwitterionic complex [6,6,6-(CO) 3-4,7-mu-{Ir(H)(CO)(PPh 3) 2PPh 2}- closo-6,1-FeCB 8H 7] ( 3), which contains a B-P-Ir- B ring. Alternatively, deprotonation using NEt 3, followed by addition of HC[triple bond]CCH 2Br, affords [6,6,6-(CO) 3-7-(PPh 2CCMe)- closo-6,1-FeCB 8H 8] ( 4). Addition of [Co 2(CO) 8] to CH 2Cl 2 solutions of the latter gives [6,6,6-(CO) 3-7-(PPh 2-{(mu-eta (2):eta (2)-CCMe)Co 2(CO) 6})- closo-6,1-FeCB 8H 8] ( 5), which contains a {C 2Co 2} tetrahedron. In the absence of added substrates, deprotonation of the PHPh 2 group in compounds 2, followed by reaction of the resulting anions with CH 2Cl 2 solvent, affords [6,6,6-(CO) 3- n-(PPh 2CH 2Cl)- closo-6,1-FeCB 8H 8] [ n = 7 ( 6a) or 10 ( 6b)] plus [6,6-(CO) 2-6,7-mu-{PPh 2CH 2PPh 2}- closo-6,1-FeCB 8H 8] ( 7, formed from 2a), of which the latter species possesses an intramolecular B-P-C-P- Fe ring. Addition of Me 3NO to CH 2Cl 2 solutions of 2a causes loss of an Fe-bound CO ligand and formation of [6,6-(CO) 2-6,7-mu-{NMe 2CH 2PPh 2}- closo-6,1-FeCB 8H 8] ( 8), which incorporates a B-P-C-N- Fe ring. A similar reaction in the presence of ligands L yields [6,6-(CO) 2-6-L-7-(PPh 2CH 2Cl)- closo-6,1-FeCB 8H 8] [L = PEt 3 ( 9) or CNBu (t) ( 10)], in addition to 8.


Angewandte Chemie | 2003

Beyond the Icosahedron: The First 13‐Vertex Carborane

Anthony Burke; David Ellis; Barry T. Giles; Bruce E. Hodson; Stuart A. Macgregor; Georgina M. Rosair; Alan J. Welch


Organometallics | 2005

Synthesis of the 13-vertex rhodacarborane anion [4-(1,2:5,6-η-cod )-closo -4,1,6-RhC2B10H12]- and its reactions with electrophiles

Bruce E. Hodson; Thomas D. McGrath; F. Gordon A. Stone


Inorganica Chimica Acta | 2005

Towards the mechanism of heteroborane isomerisation : 1,2 → 1,2 and 1,2 → 1,7 low-temperature isomerisations from metallations of [5-I-7,8-Ph2-7,8-nido-C2B9H8]2-

Susan Robertson; Rhona M. Garrioch; David Ellis; Thomas D. McGrath; Bruce E. Hodson; Georgina M. Rosair; Alan J. Welch


Journal of the American Chemical Society | 2007

The Conformations of 13-Vertex ML2C2B10 Metallacarboranes: Experimental and Computational Studies

Kelly J. Dalby; David J. Ellis; Stefan Erhardt; Ruaraidh D. McIntosh; Stuart A. Macgregor; Karen Rae; Georgina M. Rosair; Volker Settels; Alan J. Welch; Bruce E. Hodson; Thomas D. McGrath; F. Gordon A. Stone


Inorganic Chemistry | 2004

Synthesis, structure, and dynamics of nickelacarboranes incorporating the [nido-7,9-C(2)B(9)H(11)](2)(-) ligand.

Bruce E. Hodson; Thomas D. McGrath; F. Gordon A. Stone


Inorganic Chemistry | 2007

Penta- and Hexaruthenium Carbonyl ‘Raft' Complexes Supported by Monocarborane Cage Ligands

Shaowu Du; Bruce E. Hodson; Peng Lei; Thomas D. McGrath; F. Gordon A. Stone


Organometallics | 2006

Construction of Metal Butterflies on a Metallacarborane Scaffold. 2. Synthesis and Structures of Hetero-tri- and -tetrametallic Clusters

Thomas D. McGrath; Shaowu Du; Bruce E. Hodson; F. Gordon A. Stone


Organometallics | 2006

Construction of metal butterflies on a metallacarborane scaffold. 1. Synthesis and structures of bimetallic precursors

Thomas D. McGrath; Shaowu Du; Bruce E. Hodson; Xiu Lian Lu; F. Gordon A. Stone


Angewandte Chemie | 2001

[{Rh(η5‐Ph2C2B9H9)(μ3‐OH)}4]: A Tetrameric Icosahedral Metallacarborane Containing an {Rh(OH)}4 Cubane Cluster

Bruce E. Hodson; David Ellis; Thomas D. McGrath; John J. Monaghan; Georgina M. Rosair; Alan J. Welch

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David Ellis

Heriot-Watt University

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