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Metallic molecular

Transition metal molecular clusters. B. F. G. Johnson and J. Lewis, Adv. Inorg. Chem. Radio-chem., 1981, 24, 225-355 (262). [Pg.27]

Figure 6.14. CO chemisorption on a transition metal. Molecular orbitals and density of states before (a,b) and after (c and d) adsorption. Effect of varying 0 and EF on electron backdonation (c) and donation (d). Based on Fig. 4 of ref. 98. See text for discussion. Reprinted with permission from Elsevier Science. Figure 6.14. CO chemisorption on a transition metal. Molecular orbitals and density of states before (a,b) and after (c and d) adsorption. Effect of varying 0 and EF on electron backdonation (c) and donation (d). Based on Fig. 4 of ref. 98. See text for discussion. Reprinted with permission from Elsevier Science.
One of the interesting examples is the metal molecular cluster, like Os3(CO)i2 in which during decomposition a dramatic change in the metal core-level BE occurs... [Pg.81]

In 2003, Finke [6a] and Dyson [9] have reviewed tests commonly used to evaluate the nature of the catalyst starting with metallic molecular pre-catalysts, in order to estimate the in situ formation of heterogeneous active catalysts, in particular for hydrogenation processes. [Pg.427]

Orbitals on metal Molecular orbitals Ligand group orbitals... [Pg.639]

Figure 3.18. Thin TTF-TCNQ film (thickness 1 um) HV-grown on a KCl(lOO) substrate, (a) Topography and (b) amplitude TMAFM images. The scale is 5 p.m x 5 ]xm. (c) FTIR spectra of the CN stretching mode in neutral TCNQ (powder) and in a TTF-TCNQ thin film (thickness 1 um) HV-grown on KBr(lOO). Reprinted from Surface Science, Vol. 482 85, C. Rojas, J. Caro, M. Grioni and J. Fraxedas, Surface characterization of metallic molecular organic thin films tetrathiaful-valene tetracyanoquinodimethane, 546-551, Copyright (2001), with permission from Elsevier. Figure 3.18. Thin TTF-TCNQ film (thickness 1 um) HV-grown on a KCl(lOO) substrate, (a) Topography and (b) amplitude TMAFM images. The scale is 5 p.m x 5 ]xm. (c) FTIR spectra of the CN stretching mode in neutral TCNQ (powder) and in a TTF-TCNQ thin film (thickness 1 um) HV-grown on KBr(lOO). Reprinted from Surface Science, Vol. 482 85, C. Rojas, J. Caro, M. Grioni and J. Fraxedas, Surface characterization of metallic molecular organic thin films tetrathiaful-valene tetracyanoquinodimethane, 546-551, Copyright (2001), with permission from Elsevier.
Sandman DJ, Ceasar GP (1986) Donors for organic metals molecular aspects. Israel J Chem... [Pg.108]

The structural diversity associated with bicyclic 5-5 fused heterocyclic systems containing two heteroatoms in each ring has been noted previously in both CHEC(1984) <1984CHEC(6)1027> and CHEC-II(1996) <1996CHEC-11(7)115>. In recent years this diversity has also been reflected in the number of applications that have been found for these compounds which include organic metals, molecular clips and receptors and molecular magnets. These fields will be examined in due course through this chapter. [Pg.162]

Ali, M.M. and MacDonnell, F.M. (2000) Topospecific self assembly of mixed-metal molecular hexagons with diameters of 5.5 nm using chiral control. J. Am. Chem. Soc., 122 (46), 11527-11528. [Pg.110]

Several mixed-metal molecular cluster carbonyls that have recently been used as precursors for heterogeneous catalysts (e.g. Nasher et al.2 and Shephard et al.,3 In the former... [Pg.790]

TABLE I. Comparisons of Substrates for the Liquid Metal Molecular SIMS and Glycerol... [Pg.179]

The general problem for using these metal molecular precursors is the necessity of (i) using water- and air-free conditions, and (ii) synthesizing them when they are not commercially available. [Pg.177]


See other pages where Metallic molecular is mentioned: [Pg.287]    [Pg.340]    [Pg.380]    [Pg.256]    [Pg.93]    [Pg.37]    [Pg.142]    [Pg.86]    [Pg.188]    [Pg.234]    [Pg.330]    [Pg.356]    [Pg.358]    [Pg.360]    [Pg.362]    [Pg.364]    [Pg.227]    [Pg.267]    [Pg.434]    [Pg.239]    [Pg.241]    [Pg.162]    [Pg.37]    [Pg.248]    [Pg.240]    [Pg.185]    [Pg.745]    [Pg.337]    [Pg.194]   
See also in sourсe #XX -- [ Pg.167 ]




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Adsorption of atomic, molecular, and cluster particles on metal oxides

Advantages of metal-coordination interactions in molecular recognition

Alkylidyne-metal complexes molecular structure

Central atom concepts molecular metals

Chemical bonds Metallic bonding Molecular orbital

Diboraheterocycle metal complexes molecular structures

Effect on metal aluminophosphate molecular

Effect on metal aluminophosphate molecular sieve synthesis

Extended Huckel molecular orbital calculations, transition metal

Group 5 metal halide clusters molecular structure

Highest occupied molecular orbital transition-metal complexes

Hquids, ionic, metallic, molecular

ID molecular metals

Lowest unoccupied molecular orbital transition-metal complexes

Metal Ion Mediated Molecular Imprinting

Metal alkoxides molecular complexity

Metal aluminophosphate molecular

Metal aluminophosphate molecular sieves

Metal atom Molecular orbitals

Metal binding sites, molecular recognition

Metal cations, molecular sensors

Metal cluster molecular

Metal complexes, of molecular

Metal discrete molecular systems

Metal enolates molecular aggregates

Metal enolates molecular structure

Metal ions, molecular imprinting

Metal organic frameworks molecular sieves

Metal oxide-adsorbate interactions molecular adsorption

Metal redox molecular sieves

Metal salts Molecular sieves

Metal surface molecular orbital description

Metal surfaces, molecular orbitals

Metal-Substituted Mesoporous Silica Molecular Sieves

Metal-ligand complexes molecular orbitals

Metal-organic molecular beam epitaxy

Metal-oxide frameworks molecular materials

Metal-solution interface molecular approach

Metal-substituted Molecular Sieves as Catalysts for Allylic and Benzylic Oxidations

Metalization-molecular dissociation

Metalization-molecular dissociation transition

Metallic bond molecular-orbital theory

Metallic bonding molecular orbital theory

Metallic bonds molecular-orbital model

Metallic molecular-orbital model

Metallic substances molecular orbital theory

Metals coordinated molecular, reactions

Metals in the Molecular Environment

Metals molecular orbital model

Metals molecular orbital theory

Metals, band theory Molecular orbital

Microporous metal oxides - octahedral molecular sieves

Mixed-metal clusters, molecular

Mixed-metal clusters, molecular dynamics

Molecular Orbitals for Metal Sandwich Compounds

Molecular Rearrangements in Polynuclear Transition Metal Complexes

Molecular Segregation at Periodic Metal Nano-Architectures on a Solid Surface

Molecular Structures II Compounds of Transition Metals

Molecular Structures of Surface Metal Oxides

Molecular Structures of Transition Metal Complexes

Molecular adsorption on metals

Molecular catalysts designing, with active transition metals

Molecular catalysts designing, with metals

Molecular catalysts designing, with transition metals

Molecular cationic metal complexes

Molecular complexity transition metal alkoxides

Molecular design of supported metal oxide

Molecular distortions in metal-containing compounds W

Molecular distortions in metal-containing compounds bond length and angle changes

Molecular distortions in metal-containing compounds resonance Raman excitation profiles

Molecular distortions in metal-containing compounds spectroscopy

Molecular dynamics simulation coordinated metal ions

Molecular electronics metal-alkyne complexes

Molecular geometry transition metals

Molecular level, metal-electrolyte interface

Molecular mechanics amine metal complexes

Molecular metal

Molecular metal

Molecular metal carbonyl cluster

Molecular metal complexes

Molecular metal oxides , class

Molecular metal, neutral

Molecular metals, structure

Molecular modeling metal complexes with open

Molecular modelling metal complexes

Molecular modelling metal-polymer interactions

Molecular modelling transition metal complexes

Molecular orbital calculations, transition metal

Molecular orbital diagram, octahedral transition metal

Molecular orbital diagram, octahedral transition metal complex

Molecular orbital diagrams metallic bonding

Molecular orbital symmetry conservation in transition metal catalysis

Molecular orbital theory metallic-like bond

Molecular orbitals metal carbonyls

Molecular orbitals metal-carbonyl complexes

Molecular orbitals transition metal complexes

Molecular orbitals transition metal compound

Molecular orbitals transition metal coordination

Molecular precursors for tailored metal

Molecular precursors for tailored metal catalysts

Molecular sieves containing transition metals in the framework

Molecular sieves, chiral metal complex

Molecular transition metal complexes

Molecular transition metal compounds

Molecular transition metal macrocycles

Molecular transition metal siloxide

Molecular transition metal siloxide complex

Molecular transition-metal complexes in solids

Molecular vs. solid-state condensed octahedral transition-metal chalcogenide clusters rule-breakers again

Molecular weight metal coordination polymers

Molecule-metal potentials, molecular

Organic Molecular Beam Deposition of Pentacene on Clean Metal Surfaces

Other Transition Metal-substituted Molecular Sieves

Oxidation with metal substituted molecular sieve

Phthalocyanine molecular metals

Phthalocyanine-based molecular metals

Polymerized species, molecular surface metal oxides

Polynuclear transition metal complexes molecular rearrangements

Principle of Molecular Imprinting for Metal Complexes on Surfaces

Reactions of NHC-coordinated Metal Complexes with Molecular Oxygen

Reactivity of Molecular Silicon-Transition-Metal Compounds

Rotaxanes Containing Transition Metals From Electronic to Molecular Motion

Structural Characteristics of Molecular Metal Clusters

Structural Insight into Transition Metal Oxide Containing Glasses by Molecular Dynamic Simulations

Supported Metal Complexes—Molecular Analogues Bonded to Surfaces

Supported metal oxides molecular structures

Surface metal oxide species molecular structures

Transfer products, polymer-metal systems, molecular

Transition metal catalysis, molecular

Transition metal catalysis, molecular orbital symmetry conservation

Transition metal catalysts molecular weight control

Transition metal ions mesoporous molecular sieves

Transition metal rings 5-type molecular orbitals

Transition metal rings valence molecular orbitals

Transition metal-containing molecular

Transition metal-containing molecular machines

Transition metal-containing molecular sieves

Transition metals Fenske-Hall molecular orbitals

Transition metals designing functional molecular systems

Transition metals molecular structures

Transition-Metal Molecular Clusters

Transition-Metal Molecular Clusters B. F. G. Johnson and J. Lewis

Transition-metal atoms, molecular

Transition-metal atoms, molecular systems

Triflate catalysts, molecular metal

Triflate catalysts, molecular metal reactions

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