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Metal-Metal Bonding [electronic resource] / edited by Gerard Parkin.

By: Parkin, Gerard [editor.].
Contributor(s): SpringerLink (Online service).
Material type: materialTypeLabelBookSeries: Structure and Bonding: 136Publisher: Berlin, Heidelberg : Springer Berlin Heidelberg, 2010Description: XI, 240p. online resource.Content type: text Media type: computer Carrier type: online resourceISBN: 9783642052439.Subject(s): Chemistry | Chemistry, inorganic | Chemistry | Inorganic ChemistryDDC classification: 546 Online resources: Click here to access online
Contents:
Metal–Metal Bonds in Chains of Three or More Metal Atoms: From Homometallic to Heterometallic Chains -- Electronically Coupled MM Quadruple Bonded Complexes of Molybdenum and Tungsten -- Transition Metal Complexes Stabilized by Bulky Terphenyl Ligands: Application to Metal–Metal Bonded Compounds -- Metal–Metal Bonding in Bridging Hydride and Alkyl Compounds -- Structure and Bonding of Metal-Rich Coordination Compounds Containing Low Valent Ga(I) and Zn(I) Ligands -- Homocatenation of Metal and Metalloid Main Group Elements -- Aromaticity/Antiaromaticity in “Bare” and “Ligand-Stabilized” Rings of Metal Atoms -- All-Transition Metal Aromaticity and Antiaromaticity.
In: Springer eBooksSummary: John Berry: Metal-Metal Bonds in Chains of Three or More Metal Atoms: From Homometallic to Heterometallic Chains.- Malcolm Chisholm: Electronically Coupled MM Quadruple Bonded Complexes of Molybdenum and Tungsten.- Philip Power: Transition Metal Complexes Stabilized by Bulky Terphenyl Ligands: Applications to Metal–Metal Bonded Compounds.- Gerard Parkin: Metal–Metal Bonding in Bridging Hydride and Alkyl Compounds.- Roland Fischer and Gernot Frenking: Structure and Bonding of Metal Rich Coordination Compounds Containing Low Valent Ga(I) and Zn(I) Ligands.- Mike Hill: Homocatenation of Metal and Metalloid Main Group Elements.- Constandinos A. Tsipis: Aromaticity/Antiaromaticity in "Bare" and ‘‘Ligand-Stabilized’’ Rings of Metal Atoms.- Alexander Boldyrev: All-Transition Metal Aromaticity and Antiaromaticity.
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Metal–Metal Bonds in Chains of Three or More Metal Atoms: From Homometallic to Heterometallic Chains -- Electronically Coupled MM Quadruple Bonded Complexes of Molybdenum and Tungsten -- Transition Metal Complexes Stabilized by Bulky Terphenyl Ligands: Application to Metal–Metal Bonded Compounds -- Metal–Metal Bonding in Bridging Hydride and Alkyl Compounds -- Structure and Bonding of Metal-Rich Coordination Compounds Containing Low Valent Ga(I) and Zn(I) Ligands -- Homocatenation of Metal and Metalloid Main Group Elements -- Aromaticity/Antiaromaticity in “Bare” and “Ligand-Stabilized” Rings of Metal Atoms -- All-Transition Metal Aromaticity and Antiaromaticity.

John Berry: Metal-Metal Bonds in Chains of Three or More Metal Atoms: From Homometallic to Heterometallic Chains.- Malcolm Chisholm: Electronically Coupled MM Quadruple Bonded Complexes of Molybdenum and Tungsten.- Philip Power: Transition Metal Complexes Stabilized by Bulky Terphenyl Ligands: Applications to Metal–Metal Bonded Compounds.- Gerard Parkin: Metal–Metal Bonding in Bridging Hydride and Alkyl Compounds.- Roland Fischer and Gernot Frenking: Structure and Bonding of Metal Rich Coordination Compounds Containing Low Valent Ga(I) and Zn(I) Ligands.- Mike Hill: Homocatenation of Metal and Metalloid Main Group Elements.- Constandinos A. Tsipis: Aromaticity/Antiaromaticity in "Bare" and ‘‘Ligand-Stabilized’’ Rings of Metal Atoms.- Alexander Boldyrev: All-Transition Metal Aromaticity and Antiaromaticity.

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