Preparation, Characterisation and Reactivity of Low Oxidation State d-Block Metal Complexes Stabilised by Extremely Bulky Amide Ligands

This thesis describes the synthesis and characterization of numerous metal-metal bonded complexes that are stabilized by extremely bulky amide ligands. It provides a comprehensive overview of the field, including discussions on groundbreaking complexes and reactions, before presenting in detail, exc...

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Bibliographic Details
Main Author Hicks, Jamie (Author)
Corporate Author SpringerLink (Online service)
Format Electronic eBook
LanguageEnglish
Published Singapore : Springer Singapore : Imprint: Springer, 2017.
SeriesSpringer Theses, Recognizing Outstanding Ph.D. Research,
Subjects
Online AccessFull text
ISBN9789811029059
ISSN2190-5053
DOI10.1007/978-981-10-2905-9
Physical Description1 online resource (XXVII, 196 p. 149 illus., 70 illus. in color.)

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245 1 0 |a Preparation, Characterisation and Reactivity of Low Oxidation State d-Block Metal Complexes Stabilised by Extremely Bulky Amide Ligands /  |c by Jamie Hicks. 
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505 0 |a General Introduction -- Extremely Bulky Amido d-Block Metal(II) Halide Complexes -- Preparation of Low Oxidation State Manganese Complexes Stabilised by Bulky Amide Ligands -- Preparation of Low Oxidation State Group 12 Complexes Stabilised by Bulky Amide Ligands -- Preparation of Low Oxidation State Cobalt Complexes Stabilised by Bulky Amide Ligands -- Preparation of Molybdenum Aminogermylene and Amidogermylyne Complexes -- Appendix. 
506 |a Plný text je dostupný pouze z IP adres počítačů Univerzity Tomáše Bati ve Zlíně nebo vzdáleným přístupem pro zaměstnance a studenty 
520 |a This thesis describes the synthesis and characterization of numerous metal-metal bonded complexes that are stabilized by extremely bulky amide ligands. It provides a comprehensive overview of the field, including discussions on groundbreaking complexes and reactions, before presenting in detail, exciting new findings from the PhD studies. The thesis appeals to researchers, professors and chemistry undergraduates with an interest in inorganic and/or organometallic chemistry. 
650 0 |a Chemistry. 
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650 0 |a Catalysis. 
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