Norman Greenwood
1925
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2012
country of citizenship: United Kingdom
languages spoken, written or signed: English
educated at: Sidney Sussex College, University of Melbourne, University High School
occupation: chemist, university teacher
Norman Neill Greenwood FRS CChem FRSC (19 January 1925 – 14 November 2012) was an Australian-British chemist and Emeritus Professor at the University of Leeds. Together with Alan Earnshaw, he wrote the textbook Chemistry of the Elements, first published in 1984. Source: Wikipedia (en)
Articles 96
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Metallaborane reaction chemistry. Part 12. Some interactions of acetylenes and isocyanides with selected metallaboranes
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Vanadium to dubnium: from confusion through clarity to complexity
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Main group element chemistry at the millennium
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Polyhedral Azaplatinaborane Chemistry. Reaction of Members of the hypho-Type Family R'H2NB8H11NHR with [PtCl2(PMe2Ph)2] and [PtCl2(PPh3)2]. Formation of Members of the Family of Open Seven-Boron Species [3,3-(PMe2Ph)2-3-PtB7H10-μ-5,6-(NHR)]
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Synthesis, molecular structure and NMR behaviour of [9,9-(PMe2Ph)2-arachno9,6,8-PtS2B7H7]: Direct evidence for the ten-vertex borane vertex-flip mechanism of isomerization
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Organoruthenaborane Chemistry. X. The SM2-catalysed formation of [ l-(?6-C6Me6)-isocloso-RuB9H9], and some B-phenylamino derivatives. NMR and X-ray diffraction studies
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Organoruthenaborane Chemistry. VIII. Reactions of [{(?6-C6Me6)RuCl2}2] and [{(?6-MeC6H4lPr)RuCl2}2] with Cs[arachno-6-SB9H12]: Isolation of ten-, eleven-, and twelve-vertex ruthenathiaboranes and their characterization by N.M.R. spectroscopy
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Polyhedral iridathiaborane chemistry. Reactions of nido-6-SB9H11and of [arachno-6-SB9H12]–with [{Ir(η5-C5Me5)Cl2}2] to give nido-8,7-iridathiaundecarboranes. A nuclear magnetic resonance and structural study
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Polyhedral osmaborane chemistry: the platination of [4,4,4-(CO)(PPh3)2-nido-4-OsB5H9] and the isolation, nuclear magnetic resonance properties, and molecular structures of two seven-vertex nido-type dimetallaheptaboranes [(CO)(PPh3)2HOs(PMe2Ph)ClPtB5
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Ten-vertex metallaborane chemistry: facile, thermally induced, nido→isocloso cluster-closure oxidation reactions in iridadecaborane clusters
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Ten-vertex metallaborane chemistry: synthesis and characterization of some ortho-cycloboronated nido-5- and -6-iridadecaboranes; crystal structures of [5-H-5-(PPh3)-5-(PPh2-o-C6H4)-nido-5-IrB9H12-2] and [5-H-5,7-(PPh3)2-5-(PPh2-o-C6H4)-nido-5-IrB9H12
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An unusual direct conversion of metallaboranes to metallacarbaboranes and the isolation of a novel isoarachno twelve-vertex cluster compound
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Organoruthenaborane chemistry. Part 7. Preparation, molecular structure, and nuclear magnetic resonance properties of eleven-vertex closo-type clusters: [2,4-Me2-1 -(pcym)-1,2,4-RuC2B8H8], [2,3-Me2-1 -(pcym)-1,2,3-RuC2B8H8], [1-(pcym)-1-RuB10H10] and
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Oxarhodaborane chemistry: the formation of [µ-9,9′-O-{5-(η5-C5Me5)-nido-5-RhB9H12}2] and [7-(η5-C5Me5)-10-(NEt3)-nido-7, 12-RhOB10H10] from [nido-(η5-C5Me5)RhB10H13Cl]
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Polyhedral metallacarbaborane chemistry: preparation, molecular structure, and nuclear magnetic resonance investigation of [3-(η5-C5Me5)-closo-3,1,2-MC2B9H11] (M = Rh or Ir)
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Polyhedral metallaphosphaborane chemistry: the preparation, molecular structure, and nuclear magnetic resonance study of [2-Ph-1,1-(PMe2Ph)2-closo-1,2-PtPB10H10], and some related chemistry
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Assigned cluster11B and1H NMR properties of [3-(η6-C6Me6)-closo-3,1,2-RuC2B9H11]
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Direct evidence for N→B π-donation into a polyhedral borane cluster
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Heterobimetallic B-frame complexes: novel isonido eleven-vertex rhodairidaboranes with Rh–H–Ir and B–H–B bridges
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Open cluster configurations of [1,1-(PPh3)2-1-H-1,2,4-IrC2B8H10] and other formally Wadian 24-electron 11-vertex species
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Oxidative and cluster Aufbau reactions of nido-6-metalladeaboranes induced by Lewis bases such as SMe2: high-yield formation of [1-(η6-C6Me6)-isocloso-1-RuB9H9] and the molecular structure of the Rh-commo-(isonido-eleven-vertex)-(closo-ten-vertex)co
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Polyhedral organoiridaborane chemistry. The reaction of MeNC with [6-(η5- C5Me5)-nido-6-IrB9H13]. Nuclear magnetic resonance studies and the crystal and molecular structure of [4,4-(η5-C5Me5)(MeNC)-arachno-4-IrB8H12]
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Stepwise reduction of MeNC to Me2NH on a metallaborane substrate: an interesting reaction sequence and the molecular structure of [µ-6,9-(NMe2)-10-(PMe2Ph)-5-(η6-C6Me6)-arachno-5-RuB9H10]
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The high-yield preparation of arachno-thiaboranes 4-SB8H12 and 4-SB8H−11
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A novel eleven-vertex closo-type azametallaborane: [1-(η6-MeC6H4-4-Pri)-closo-1,2-RuNB9H10]
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Boron-11 and proton nuclear magnetic resonance study of anti-B18H22and its anions, anti-[B18H21]–and anti-[B18H20]2–. The crystal and molecular structure of [NMe4]2[anti-B18H20]
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Comparative metallaborane chemistry: preparation and nuclear magnetic resonance studies of some nido-5-metalladecaboranes of rhodium, iridium, ruthenium, and osmium
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Facile pathway-defined fluxional cluster isomerization in ten-vertex closo-2,1,6-metalladicarbaboranes of ruthenium and rhodium
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Organoruthenaborane chemistry. Part 6. The reaction of [{Ru(η6-C6Me6)Cl2}2] with the closo-[B10H10]2–anion: characterisation of some closo-type eleven-vertex 1-ruthenaundecaboranes and the molecular structure of [5-(η-6-C6Me6)-6-(OMe)-nido-5-RuB9
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Pentamethylcyclopentadienylrhodaborane chemistry. Part 4. The isolation, molecular structure, and nuclear magnetic resonance study of an interesting phosphino-bridged arachno-type nine-vertex rhodaborane [2,5-(µ-PPh2)-1-(PHPh2)-2-(η5-C5Me5)-2-RhB8H
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Pentamethylcyclopentadienylrhodaborane chemistry. Part 5. Preparation, molecular structure, and nuclear magnetic resonance spectra of the arachno ten-vertex rhodadecaboranes [6-(η5-C5Me5)-6,9-(RNC)2-arachno-6-RhB9H11](R = Me or p-MeC6H4)
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Preparation, structure, and nuclear magnetic resonance properties of the nine-vertex nido-rhenaborane [(PMe2Ph)3H2ReB8H11] and some related chemistry
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