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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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Journal ArticleDOI
Synthesis and Photochemical Properties of Manganese(I) Tricarbonyl Diimine Complexes Bound to Tetrazolato Ligands
Matthew J. Stout,Alessandra Stefan,Alessandra Stefan,Brian W. Skelton,Alexandre N. Sobolev,Massimiliano Massi,Alejandro Hochkoeppler,Alejandro Hochkoeppler,Stefano Stagni,Peter V. Simpson +9 more
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Synthesis, spectroscopic and structural characterisation of Cd(II) and Zn(II) derivatives of tris(3,4,5-trimethylpyrazol-1-yl)methane
Augusto Cingolani,D. Martini,Fabio Marchetti,Claudio Pettinari,Massimo Ricciutelli,Brian W. Skelton,Allan H. White +6 more
TL;DR: In this article, the results of single-crystal X-ray studies of octahedral centrosymmetric cations of the form [M(L) 2 ] 2+ with perchlorate or nitrate counterions have been determined.
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Structural Systematics of Rare Earth Complexes. IV. Structural Characterization of Lanthanoid(III) Picrate Hydrates: the Quasi-Undecahydrate of Samarium(III) Picrate
TL;DR: In this article, the structural characterization of a new quasi- undecahydrate of samarium(III) picrate is described, which is monoclinic, C 2/c, a 39.43/4H2O, b 7.951(2), c 24.233(9) Ǻ, β 110.92(2)°, Z = 8, temperature c.295 K; R was 0.047 for 5010 'observed' diffractometer reflections.
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Platinum–Tin Bonded Complexes, Including a Structural Analysis of the Octahedral Tris(pyrazol-1-yl)borate Complex Pt(SnMe3)Me2{(pz)3BH-N,N',N"}
TL;DR: In this article, the Pt-N distance trans to the SnMe3 group [2·237(7) A] is longer than those trans to Me groups [2.127(7), and 2·131(6) A], indicating for the trimethylstannyl group a trans influence which is higher than that for the methyl group.
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The Influence of the Axial Ligand on the Solid-State Structures of Pentacoordinate Manganese Tetraphenylporphyrin Complexes
TL;DR: In this paper, the axial ligand field strength is modulated by crystal packing interactions, which is clearly evident in the structure of Mn(tpp)(I).C7H8 which has two crystallographically independent molecules.