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Mono-and Tetranuclear Complexes Featuring (OSSO)- or Tris(ONNO)-Type Ligands for Selective Catalysis
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Mono-and Tetranuclear Complexes Featuring (OSSO)- or Tris(ONNO)-Type Ligands for Selective Catalysis

Book Details

Format Paperback / Softback
ISBN-10 3958863094
ISBN-13 9783958863095
Publisher Verlag G. Mainz
Imprint Verlag G. Mainz
Country of Manufacture GB
Country of Publication GB
Publication Date Oct 30th, 2019
Print length 160 Pages
Weight 230 grams
Dimensions 20.90 x 14.90 x 1.10 cms
Product Classification: ChemistryPolymer chemistry
Ksh 7,900.00
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Whereas tetradentate (OSSO)-type ligands mostly allow for the preparation of mononuclear transition metal complexes, lignads that feature two or more of the structurally related (ONNO)-type subunits may give access to multinuclear heterometallic complexes. +IV, +V and *VI stabilized by tetradentate (OSSO)-type ligands led to the development of a tris(ONNO)-type ligands revealed a new approach toward heterometallic 3d transition metal complexes that resolves the limitations of core/shell template directed synthesis and avoids metal cooperative effects resulting in magnetic interactions of the paramagnetic center and in enhanced catalytic activity in transformations of heterocumulenes with epoxides. This thesis further contributes to the field of mono- and tetranuclear metal complexes stabilized by (OSSO)- or tris(ONNO)-type ligands. Based on these ligands, the stractural, magnetic and electrochemical propeties of various complexes are reported.

Whereas tetradentate (OSSO)-type ligands mostly allow for the preparation of mononuclear transition metal complexes, lignads that feature two or more of the structurally related (ONNO)-type subunits may give access to multinuclear heterometallic complexes. +IV, +V and *VI stabilized by tetradentate (OSSO)-type ligands led to the development of a tris(ONNO)-type ligands revealed a new approach toward heterometallic 3d transition metal complexes that resolves the limitations of core/shell template directed synthesis and avoids metal cooperative effects resulting in magnetic interactions of the paramagnetic center and in enhanced catalytic activity in transformations of heterocumulenes with epoxides. This thesis further contributes to the field of mono- and tetranuclear metal complexes stabilized by (OSSO)- or tris(ONNO)-type ligands. Based on these ligands, the stractural, magnetic and electrochemical propeties of various complexes are reported.


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