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Transition Metal-Dinitrogen Complexes

Transition Metal-Dinitrogen Complexes
Author: Yoshiaki Nishibayashi
Publisher: John Wiley & Sons
Total Pages: 510
Release: 2019-01-25
Genre: Science
ISBN: 3527344276

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A comprehensive book that explores nitrogen fixation by using transition metal-dinitrogen complexes Nitrogen fixation is one of the most prominent fields of research in chemistry. This book puts the focus on the development of catalytic ammonia formation from nitrogen gas under ambient reaction conditions that has been recently repowered by some research groups. With contributions from noted experts in the field, Transition Metal-Dinitrogen Complexes offers an important guide and comprehensive resource to the most recent research and developments on the topic of nitrogen fixation by using transition metal-dinitrogen. The book is filled with the information needed to understand the synthesis of transition metal-dinitrogen complexes and their reactivity. This important book: -Offers a resource for understanding nitrogen fixation chemistry that is essential for explosives, pharmaceuticals, dyes, and all forms of life -Includes the information needed for anyone interested in the field of nitrogen fixation by using transition metal-dinitrogen complexes -Contains state-of-the-art research on synthesis of transition metal-dinitrogen complexes and their reactivity in nitrogen fixation -Incorporates contributions from well-known specialists and experts with an editor who is an innovator in the field of dinitrogen chemistry Written for chemists and scientists with an interest in nitrogen fixation, Transition Metal-Dinitrogen Complexes is a must-have resource to the burgeoning field of nitrogen fixation by using transition metal-dinitrogen complexes.


Transition Metals in Coordination Environments

Transition Metals in Coordination Environments
Author: Ewa Broclawik
Publisher: Springer
Total Pages: 532
Release: 2019-03-16
Genre: Science
ISBN: 3030117146

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This book focuses on the electronic properties of transition metals in coordination environments. These properties are responsible for the unique and intricate activity of transition metal sites in bio- and inorganic catalysis, but also pose challenges for both theoretical and experimental studies. Written by an international group of recognized experts, the book reviews recent advances in computational modeling and discusses their interplay using experiments. It covers a broad range of topics, including advanced computational methods for transition metal systems; spectroscopic, electrochemical and catalytic properties of transition metals in coordination environments; metalloenzymes and biomimetic compounds; and spin-related phenomena. As such, the book offers an invaluable resource for all researchers and postgraduate students interested in both fundamental and application-oriented research in the field of transition metal systems.


Computational Studies of Transition Metal Nanoalloys

Computational Studies of Transition Metal Nanoalloys
Author: Lauro Oliver Paz Borbón
Publisher: Springer Science & Business Media
Total Pages: 162
Release: 2011-04-29
Genre: Science
ISBN: 3642180124

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The focus of this thesis is the computational modelling of transition metal bimetallic (nanoalloy) clusters. More specifically, the study of Pd-Pt, Ag-Pt, Au-Au and Pd-Au as a few tens of atoms in the gas phase. The author used a combination of global optimization techniques - coupled with a Gupta-type empirical many-body potential - and Density Functional Theory (DFT) calculations to study the structures, bonding and chemical ordering, as well as investigate the chemisorptions of hydrogen and carbon monoxide on bimetallic clusters. This research is highly relevant to experimental catalytic studies and has resulted in more than seven publications in international journals.


Computational Modeling for Homogeneous and Enzymatic Catalysis

Computational Modeling for Homogeneous and Enzymatic Catalysis
Author: Keiji Morokuma
Publisher: John Wiley & Sons
Total Pages: 398
Release: 2008-04-09
Genre: Science
ISBN: 3527621970

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Here, the world's most active and productive computational scientists from academia and industry present established, effective and powerful tools for understanding catalysts. With its broad scope -- nitrogen fixation, polymerization, C-H bond activation, oxidations, biocatalysis and much more -- this book represents an extensive knowledge base for designing efficient catalysts, allowing readers to improve the performance of their own catalysts.


Transition Metal Dinitrogen Complexes

Transition Metal Dinitrogen Complexes
Author:
Publisher:
Total Pages:
Release: 1973
Genre:
ISBN:

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The central concern of this Thesis is the basic character of transition metal dinitrogen complexes towards Lewis acid moieties, with which they may give adducts containing the structural unit M-N-N-M' (M' is a Lewis acid moiety). This study was prompted by an interest in the problem of nitrogen fixation, since adduct formation is one of the few reactions of coordinated dinitrogen.Nitrogen fixation and certain aspects of base behaviour among transition metal complexes are reviewed in Chap. 1.The formation of adducts of dinitrogen and carbonyl complexes with AIR^ (R = Me, Ph and Cl) is described in Chap.2 and a base ranking of some of these complexes is drawn up from p.m.r. studies of equilibria involving the adducts (R = Me) and diethyl ether (Chap. 3 )* Adducts of trans -[ReCl(XY)(PMe2Ph)^] (l) (XY = N 2 ) with Mo- and W-(lv),-(V) and -(VI) acceptor moieties are described in Chap. Z*. The reactions of certain of the Re(l) dinitrogen complexes with the halogen acids HX are also discussed (Chap. 6).The bonding of N 2 and CO to transition metals is discussed (Chap. 7 )» with reference both to published physical measurements on their complexes, and to measurements of the dipole moments of the analogous complexes I (XY = N 2 and CO), described in Chap. 5.The preparation of some novel dinitrogen and carbonyl complexes is described in Chap. 8.


Reductive Functionalization of 3D Metal-Methyl Complexes and Characterization of a Novel Dinitrogen Dicopper (I) Complex

Reductive Functionalization of 3D Metal-Methyl Complexes and Characterization of a Novel Dinitrogen Dicopper (I) Complex
Author: Hengameh Fallah
Publisher:
Total Pages: 105
Release: 2017
Genre: Catalysis
ISBN:

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Reductive functionalization of methyl ligands by 3d metal catalysts and two possible side reactions has been studied. Selective oxidation of methane, which is the primary component of natural gas, to methanol (a more easily transportable liquid) using organometallic catalysis, has become more important due to the abundance of domestic natural gas. In this regard, reductive functionalization (RF) of methyl ligands in [M(diimine)2(CH3)(Cl)] (M: VII (d3) through CuII (d9)) complexes, has been studied computationally using density functional techniques. A SN2 mechanism for the nucleophilic attack of hydroxide on the metal-methyl bond, resulting in the formation of methanol, was studied. Similar highly exergonic pathways with very low energy SN2 barriers were observed for the proposed RF mechanism for all complexes studied. To modulate RF pathways closer to thermoneutral for catalytic purposes, a future challenge, paradoxically, requires finding a way to strengthen the metal-methyl bond. Furthermore, DFT calculations suggest that for 3d metals, ligand properties will be of greater importance than metal identity in isolating suitable catalysts for alkane hydroxylation in which reductive functionalization is used to form the C--O bond. Two possible competitive reactions for RF of metal-methyl complexes were studied to understand the factors that lower the selectivity of C--O bond forming reactions. One of them was deprotonation of the methyl group, which leads to formation of a methylene complex and water. The other side reaction was metal-methyl bond dissociation, which was assessed by calculating the bond dissociation free energies of M3d--CH3 bonds. Deprotonation was found to be competitive kinetically for most of the 1st row transition metal-methyl complexes (except for CrII, MnII and CuII), but less favorable thermodynamically as compared to reductive functionalization for all of the studied 1st row transition metal complexes. Metal-carbon bond dissociation was found to be less favorable than the RF reactions for most 3d transition metal complexes studied. The first dinitrogen dicopper (I) complex has been characterized using computational and experimental methods. Low temperature reaction of the tris(pyrazolyl)borate copper(II) hydroxide {iPr2TpCu}2(μ-OH)2 with triphenylsilane under a dinitrogen atmosphere gives the μ -N2 complex, {iPr2TpCu}2(μ -N2). X-ray crystallography reveals an only slightly activated N2 ligand (N-N: 1.111(6) Å) that bridges between two iPr2TpCuI fragments. While DFT studies of mono- and dinuclear copper dinitrogen complexes suggest a weak μ-backbonding between the d10 CuI centers and the N2 ligand, they reveal a degree of cooperativity in the dinuclear Cu-N2-Cu interaction.


Nuclear Science Abstracts

Nuclear Science Abstracts
Author:
Publisher:
Total Pages: 840
Release: 1973-04
Genre: Nuclear energy
ISBN:

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