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Brian W. Skelton

Researcher at University of Western Australia

Publications -  1662
Citations -  33374

Brian W. Skelton is an academic researcher from University of Western Australia. The author has contributed to research in topics: Crystal structure & Ligand. The author has an hindex of 69, co-authored 1646 publications receiving 31889 citations. Previous affiliations of Brian W. Skelton include Monash University, Clayton campus & State University of Malang.

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New Chlorinated Diphenyl Ethers from an Aspergillus Species

TL;DR: Two new chlorinated diphenyl ethers have been isolated from the culture broth of an Aspergillus species obtained from leaf litter and the structure of another metabolite, methyl asterrate, was confirmed by single-crystal X-ray structure analysis.
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Organoamido- and Aryloxo-Lanthanoids. XI. Syntheses and Crystal Structures of Nd(Odpp)3, Nd(Odpp)3(thf) and [Nd(Odpp)3(thf)2].2(thf) (Odpp-=2,6-Diphenylphenolate): Variations in Intramolecular π-Ph-Nd Interactions

TL;DR: The X-ray crystal structure of Nd (Odpp)3 ( Odpp- = 2,6-diphenylphenolate), obtained by sublimation of nd( Odpp )3( thf )2 ( thf = tetrahydrofuran ) [triclinic, Pī, a 15.047 showed a near triangular array of oxygens surrounding neodymium { Nd -O} 2.2° with additional, intramolecular Nd-η6-Ph chelate interactions
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Preparation and X-Ray Crystal Structures of Tetrahydrofuran-Complexed Rare Earth Chlorides — a Structurally Rich Series

TL;DR: Anhydrous lanthanoid metal chlorides have been derived from hexachloroethane in tetrahydrofuran (thf) as mentioned in this paper, where the metal is surrounded by two sets of three bridging chlorines and cis thf oxygens.
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Some molecular rods: gold(I) complexes of 1,3-diynes. Crystal structures of Au(CCCCH)(PPh3) and {Cu3(μ-dppm)3}(μ3-I)(μ3-CCCCAuCCCCH)

TL;DR: In this article, the diynyl complexes Au(CCCCH)(PPh3) and AuCl(PPh 3) and (AuCl)2(μ-dppm) were obtained in the presence of base.
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Transition metal alkynyl complexes by transmetallation from Au(CCAr)(PPh3) (Ar = C6H5 or C6H4Me-4)

TL;DR: In this article, the authors investigated the performance of gold-alkynyl transfer reactions between gold-I complexes and a variety of representative inorganic and organometallic complexes featuring metals from groups 8-11, and showed that the reaction products have been characterised by spectroscopic methods.