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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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Approaches to cyclopropazulenes : Transannular aldol reactions of some derivatives of 1,10 -dibromobicyclo [8.1.0]undecane -3,8 -dione

TL;DR: In this article, the authors describe synthetic approaches to potential precursors to cyclopropazulenes, a novel class of nonbenzenoid cyclopro-arenes, which are obtained in good yield by ozonolysis of an appropriate cyclic alkene.
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Solution and solid-state structural properties of silver(I) poly(pyrazolyl)borate compounds with bidentate diphosphines

TL;DR: In this article, new silver derivatives containing bidentate tertiary phosphines and anionic poly(pyrazol-1-yl)borates have been prepared from AgNO3 and bis(diphenylphosphino)methane (dppm), 1,2-bis(diphosphino)-ethane, 1,3-bis-phosphinogen-propane (propane)propane(dppp) and 1,4-bis-(diphensylphphosphine)-butane (butane
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Cluster chemistry. Part 19. Crystal and molecular structures of the complexes [Ru3(CO)11{P(C6H11)3}], [Ru3(CO)10{P(OMe)3}2], and [Ru3(CO)9(PMe3)3]: two examples of disordered metal cores within ordered ligand atom polyhedra

TL;DR: The crystal and molecular structures of the title complexes are reported in this paper, and they are triclinic, space group P21/n, with a= 20.474(9), b= 12.339(5), c= 11.976(6)A, β= 90.80(4)°, and Z= 4.049.
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Silver(I), gold(I) and palladium(II) complexes of a NHC-pincer ligand with an aminotriazine core: a comparison with pyridyl analogues

TL;DR: Dinuclear silver, di- and tetra-nuclear gold, and mononuclear palladium complexes with chelating C,N,C diethylaminotriazinyl-bridged bis(NHC) pincer ligands were prepared and characterised for twisted/helical vs. linear forms rationalisation.
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Heterometallic CoIIIZnII Schiff Base Catalyst for Mild Hydroxylation of C(sp3)–H Bonds of Unactivated Alkanes: Evidence for Dual Mechanism Controlled by the Promoter

TL;DR: In this article, the Schiff base complex [CoIIIZnIIL3Cl2]·CH3OH (1) was synthesized by interaction of zinc powder, cobalt(II) chloride and methanol solution of the pre-formed HL in air, and characterized by IR, UV-Vis and NMR spectroscopy, ESI-MS and single crystal X-ray diffraction analysis.