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Metal-Ligand Co-operativity = Cataly...
~
Moret, Marc-Etienne.
Metal-Ligand Co-operativity = Catalysis and the Pincer-Metal Platform /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Metal-Ligand Co-operativity/ edited by Gerard van Koten, Karl Kirchner, Marc-Etienne Moret.
Reminder of title:
Catalysis and the Pincer-Metal Platform /
other author:
van Koten, Gerard.
Description:
X, 451 p. 170 illus., 144 illus. in color.online resource. :
Contained By:
Springer Nature eBook
Subject:
Organometallic chemistry . -
Online resource:
https://doi.org/10.1007/978-3-030-68916-2
ISBN:
9783030689162
Metal-Ligand Co-operativity = Catalysis and the Pincer-Metal Platform /
Metal-Ligand Co-operativity
Catalysis and the Pincer-Metal Platform /[electronic resource] :edited by Gerard van Koten, Karl Kirchner, Marc-Etienne Moret. - 1st ed. 2021. - X, 451 p. 170 illus., 144 illus. in color.online resource. - Topics in Organometallic Chemistry,681436-6002 ;. - Topics in Organometallic Chemistry,50.
Recent Advances in the Applications of Metal-Ligand Cooperation via Dearomatization and Aromatization of Pincer Complexes -- Metal-Ligand Cooperation at Acceptor Pincer ligands -- Metal-Ligand Cooperativity of Phosphorus Containing Pincer Systems -- Cooperative Reactivity by Pincer-type Complexes Possessing Secondary Coordination Sphere -- Redox-Active Pincer Ligands -- A Pincer Motif Etched into a meta-Benziporphyrin Frame -- The role of Metal-Ligand Cooperation in Manganese(I)-catalyzed Hydrogenation/Dehydrogenation Reactions -- Hydrogenation Reactions Catalyzed by PNP-Type Complexes featuring a HN(CH2CH2PR2)2 Ligand -- Catalytic Conversion of Nitriles by Metal Pincer Complexes -- The Application of Pincer Ligand in Catalytic Water Splitting.
This book provides researchers in the fields of organic chemistry, organometallic chemistry and homogeneous catalysis with an overview of significant recent developments in the area of metal-ligand cooperativity, with a focus on pincer architectures. The various contributions highlight the widespread impact of M–L co-operativity phenomena on modern organometallic chemistry and catalyst development. The development of efficient and selective catalytic transformations relies on the understanding and fine control of the various elementary reactions that constitutes a catalytic cycle. Co-operative ligands, which actively participate in bond making and bond breaking together to the metal they support, open up new avenues in this area. In particular, buttressing a weak or reactive metal-ligand bond by flanking coordinating arms in a pincer ligand design is proving a versatile strategy to access robust metal complexes that exhibit unusual and selective reactivity patterns.
ISBN: 9783030689162
Standard No.: 10.1007/978-3-030-68916-2doiSubjects--Topical Terms:
1254952
Organometallic chemistry .
LC Class. No.: QD410-412.5
Dewey Class. No.: 547.05
Metal-Ligand Co-operativity = Catalysis and the Pincer-Metal Platform /
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Recent Advances in the Applications of Metal-Ligand Cooperation via Dearomatization and Aromatization of Pincer Complexes -- Metal-Ligand Cooperation at Acceptor Pincer ligands -- Metal-Ligand Cooperativity of Phosphorus Containing Pincer Systems -- Cooperative Reactivity by Pincer-type Complexes Possessing Secondary Coordination Sphere -- Redox-Active Pincer Ligands -- A Pincer Motif Etched into a meta-Benziporphyrin Frame -- The role of Metal-Ligand Cooperation in Manganese(I)-catalyzed Hydrogenation/Dehydrogenation Reactions -- Hydrogenation Reactions Catalyzed by PNP-Type Complexes featuring a HN(CH2CH2PR2)2 Ligand -- Catalytic Conversion of Nitriles by Metal Pincer Complexes -- The Application of Pincer Ligand in Catalytic Water Splitting.
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This book provides researchers in the fields of organic chemistry, organometallic chemistry and homogeneous catalysis with an overview of significant recent developments in the area of metal-ligand cooperativity, with a focus on pincer architectures. The various contributions highlight the widespread impact of M–L co-operativity phenomena on modern organometallic chemistry and catalyst development. The development of efficient and selective catalytic transformations relies on the understanding and fine control of the various elementary reactions that constitutes a catalytic cycle. Co-operative ligands, which actively participate in bond making and bond breaking together to the metal they support, open up new avenues in this area. In particular, buttressing a weak or reactive metal-ligand bond by flanking coordinating arms in a pincer ligand design is proving a versatile strategy to access robust metal complexes that exhibit unusual and selective reactivity patterns.
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