A
Alexander J. Blake
Researcher at University of Nottingham
Publications - 1136
Citations - 37892
Alexander J. Blake is an academic researcher from University of Nottingham. The author has contributed to research in topics: Crystal structure & Ligand. The author has an hindex of 89, co-authored 1133 publications receiving 35746 citations. Previous affiliations of Alexander J. Blake include University of Illinois at Chicago & University of Wisconsin-Madison.
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Journal ArticleDOI
Crystal structure of trans-bis(acetonitrile)-bis(1,2-bis(diphenylphosphino)ethane)iron(II)-bis-(tetrafluoroborate) bis(dichloromethane), (CH3CN)2(C26H24P2)2Fe(BF4)2(CH2Cl2)2
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Effect of Partial Hydrolysis in Switching the Mode of Inter‐molecular Bonding between Metal Complexes
Dan M. J. Doble,Alexander J. Blake,David E. Hibbs,Matthew Jackson,Wan-Sheung Li,Martin Schröder +5 more
TL;DR: The assembly of [Cd(L1)]-Na(H2O)2 into the tetranuclear cluster in the presence of Na+ is mediated by Na+-carboxylate interactions; in contrast In3+ and Fe3+ induce the partial hydrolysis of [L1]3] to afford the complexes [In(L2)Cl] and [Fe(L 2]2O} which aggregate via intermolecular H-bonding.
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Synthesis, characterization and X-ray structure of Rh6(CO)10(μ3-CO)4(η4-C6H8)
TL;DR: In this article, the tetrahedral cluster Rh 4 (CO) 12 with two molar equivalents of trimethylamine N -oxide in the presence of an excess of cyclohexa-1,3-diene was characterized by spectroscopy and in the solid-state by a single-crystal X-ray diffraction study.
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Aggregation of imino–phosphonate monoester complexes
TL;DR: In this article, the aggregates of imino-phosphonate monoester ligands were assembled from complexes of IMO-carboxylate analogues, and the topology of these materials differing from that of their IMO analogues.
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Synthesis, structural characterisation, electron paramagnetic resonance and magnetic studies of homoleptic copper complexes of pyridonate ligands
Alexander J. Blake,Craig M. Grant,Eric J. L. McInnes,Frank E. Mabbs,Paul E. Y. Milne,Simon Parsons,Jeremy M. Rawson,Richard E. P. Winpenny +7 more
TL;DR: In this paper, three homoleptic copper(II) complexes have been prepared which feature 6-halogen-substituted 2-pyridonate ligands [Cu2(xhp)4]n], where xhp ligands are arranged to give a dimeric unit with idealised D2d symmetry.