Molecular heterogeneous catalysis: a conceptual and computational approach
Gespeichert in:
Hauptverfasser: | , |
---|---|
Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Weinheim
WILEY-VCH
2006
|
Schlagworte: | |
Online-Zugang: | Beschreibung für Leser Inhaltsverzeichnis |
Beschreibung: | XIII, 474 S. Ill., graph. Darst. |
ISBN: | 352729662X 9783527296620 |
Internformat
MARC
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020 | |a 352729662X |c Gb. : ca. sfr 220.00 (freier Pr.), ca. EUR 139.00 (freier Pr.) |9 3-527-29662-X | ||
020 | |a 9783527296620 |9 978-3-527-29662-0 | ||
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245 | 1 | 0 | |a Molecular heterogeneous catalysis |b a conceptual and computational approach |c Rutger Anthony van Santen and Matthew Neurock |
264 | 1 | |a Weinheim |b WILEY-VCH |c 2006 | |
300 | |a XIII, 474 S. |b Ill., graph. Darst. | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
650 | 4 | |a Heterogene Katalyse - Computational chemistry | |
650 | 4 | |a Heterogeneous catalysis | |
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650 | 0 | 7 | |a Heterogene Katalyse |0 (DE-588)4123377-3 |2 gnd |9 rswk-swf |
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700 | 1 | |a Neurock, Matthew |e Verfasser |0 (DE-588)130880221 |4 aut | |
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999 | |a oai:aleph.bib-bvb.de:BVB01-013353438 |
Datensatz im Suchindex
_version_ | 1804133600210190336 |
---|---|
adam_text | CONTENTS
Preface
..............
ХШ
1
Introduction
1.1
Importance of Catalysis
...........1.
1.1.1
Additional Suggested Textbooks on Heterogeneous Catalysis
... 3
1.2
Molecular Description of Heterogeneous Catalysis
.......4
1.3
Outline of the Book
............8
1.4
Theoretical and Simulation Methods
........ 11
2
Principles of Molecular Heterogeneous Catalysis
2.1
General Introduction
........... 19
2.1.1
The Catalytic Cycle
........... 20
2.1.1.1
The
Sabatici-
Principle
........... 20
2.1.1.2
Reaction Cycles; Intermediate Reagents
....... 25
2.2
Physical Chemistry of Intrinsic Reaction Rates
..... 27
2.2.1
Introduction
............. 27
2.2.2
The Transition-State Theory Definition of the Reaction Rate Constant:
Loose and Tight. Transition States
........ 28
2.2.3
The Bronsted-Evans-Polanyi Reaction Rate Expression Relations
. 32
2.3
The Reactive Surface-
Adsórbate
Complex and the Influence of the
Reaction Environment
........... 35
2.3.1
Introduction
............. 35
2.3.2
The Material- and Pressure-Gap Problem in Heterogeneous Catalysis
. 39
2.3.3
Ensemble Effects and Defect Sites
. ...... 41
2.3.4
Cluster Size Effects and Metal-Support Interaction
..... 47
2.3.4.1
Metal Support. Effects and Promotion; Relation to Catalyst Synthesis
47
2.3.4.2
Cluster Size Dependence
.......... 49
2.3.4.3
Gold Catalysts; an Example of Coordination. Particle Size and Support
Effects
.............. 53
2.3.4.4
Structural Effects
............ 54
2.3.4.5
Quantum Size Effects
........... 57
2.3.4.6
Support Effects
............ 56
2.3.4.7
Elucidating Mechanisms and the Nature of Active Sites
.... 57
2.3.4.8
Electron Transfer Effects
.......... 57
2.3.4.9
Neutral
Au
Clusters
........... 58
2.3.4.10
Negatively Charged An clusters
......... 59
2.3.4.11
Positively Charged
Au
Clusters
......: 60
2.3.5
Cooperativity
............. 61
2.3.6
Surface Moderation by Coadsorption of Organic Molecules
... 63
2.3.7
Stereochemistry of Homogeneous Catalysts. Anti-Lock and Key Concept
65
2.4
Surface Kinematics
............ 68
2.4.1
Surface Reconstruction
........... 68
2.4.2
Transient Reaction Intermediates in Oxidation Catalysis
... 73
2.5
Summary. Concepts in Catalysis
......... 75
VIII Contents
3
The Reactivity of Transition-Metal Surfaces
3.1
Genera] Introduction
........... 83
3.2
Quantum Chemistry of the Chemical Bond in Molecules
... 83
3.3
Chemical Bonding to Transition-Metal Surfaces
..... 89
3.3.1
Bonding in Transition-Metal Complexes
....... 101
3.4
Chemisorption of Atoms: Periodic: Trends
....... 105
3.5
Elementary Quantum Chemistry of the Surface Chemical Bond
. . 113
3.5.1
Molecular Orbital View of Chemisorption. A Summary
. . . . 118
3.6
Elementary Reaction Steps on Transition-Metal Surfaces. Trends with
Position of a Metal in the Periodic Table
....... 119
3.6.1
General Considerations
........... 119
3.6.2
Activation of CO and Other
Diatomica
....... 121
3.6.3
Association Reactions; Carbon Carbon Bond Formation
. . . 126
3.7
Organometallic Chemistry of the
Hydroformulation
Reaction
. . 127
3.8
Activation of CH4. NH:j and H2O
........ 128
3.9
Carbon Carbon Bond Cleavage and
Fönnation
Reactions, a Comparison
with CO Oxidation
........... 138
3.1Ü
Lateral Interactions
........... 143
3.10.1
Introduction
. ........... 143
3.10.2
Lateral Interaction Models
.......... 144
3.10.3
Hydrogénation
of
Ethylene;
the Importance of Lateral Interactions
. 146
3.10.4
Lateral Interactions; the Simulation of Overall Surface Reaction Rates
148
3.1.1
Addendum; Hybridization
.......... 155
4
Shape Selective-Microporous Catalysts, the Zeolites
4.1
Zeolite Catalysis, an Introduction
...... . . 161
4.1.1
Zeolite Structural Features
.......... 161
4.2
Activation of Reactant Molecules
........ 165
4.2.1
Proton-Activated Reactivity
.......... 165
4.2.2
Transit ion-State Selectivity. Alkylation of Toluene by
Methanol
Catalyzed by
Mordenitc .......... 177
4.2.3
Lewis Acid Catalysis
........... 178
4.2.3.1
Lewis Acidity in Zeolites; Cations Compared with Oxy-Cations
. . 178
4.3
Redox
Catalysis
............ 187
4.3.1
Selective Oxidation of Alkancs Using the Reducible M,tAli_xPO4
Zeolitic Polymorphs
........... 187
4.3.2
Photo Catalytic Oxidation
.......... 189
4.3.3
The N2O Decomposition Reaction; Self-Organization in Zeolite Catalysis
190
4.3.4
Oxidation of Benzene by N2O, the Panov Reaction
..... 193
4.4
The Zeolite Catalytic Cycle. Adsorption and Catalysis in Zeolites:
the Principle of Least Optimum Fit
........ 195
4.5
Adsorption Equilibria and Catalytic Selectivity
..... 205
4.6
Diffusion in Zeolites
........... 207
5
Catalysis by Oxides and
Sulfides
5.1
General Introduction
........... 213
5.2
Elementary Theory of R-cactivity and Stability of Ionic Surfaces
. . 214
5.3
The Contribution of Covalency to the Ionic Surface Chemical Bond
. 223
Contants
IX
Γ).
3.1
CO Oxidation by RuO2
........... 223
5.3.2
Atomic Orbital Hybridization at Surfaces;
Hydration
Energies
. . 226
5.4
Medium, Effects on Bronsted Acidity
........ 230
5.5
Acidity of Heteropolyacids
.......... 234
5.6
Oxidation Catalysis
........... 238
5.
G.I
Introduction
............. 238
5.
G.
2
Lessons Learned from Surface Science
....... 243
5.6.3
Redox
Considerations
........... 244
5.6.4
Bifimctional Systems
........... 246
5.6.5
Butane Oxidation to Maleic Anhydride
....... 246
5.6.6
Methanol
Oxidation
........... 248
5.6.7
Isobutyric Acid
Oxidat
ive
Dehydrogenation
...... 249
5.6.8 Oxidati
ve
Dehydrogenation of Propane
....... 249
5.6.9
Chemical Reactivity of Reducible Oxides
....... 250
5.6.10
Selective Catalytic Reduction of NO with NH;j
..... 251
5.6.11
Oxidation by
Nou-
Reducible Oxides
........ 253
5.7
Heterogeneous
Sulfide
Catalysts
......... 255
5.7.1
Introduction
............. 255
5.7.2
The
Sulfide
Surface
........... 256
5.7.3
Promoted
Sulfide
Catalysts
.......... 259
5.8
Summary
.............. 262
6
Mechanisms for Aqueous Phase Heterogeneous Catalysis and
Electrocatalysis. A Comparison with Heterogeneous Catalytic
Reactions
6.1
General
introduction
........... 267
6.2
The Chemistry of Water on Transition-Metal Surfaces
.... 268
6.2.1
Reactions in Solutions
........... 268
6.2.2
The Adsorption of Water on Metal Surfaces
...... 268
6.2.3
Influence of Potential
........... 276
6.2.4
Electrochemical Activation of Water
........ 282
6.3
The Synthesis of Vinyl Acetate via the Acetoxylation of
Ethylene
. 286
6.3.1
Homogeneous Catalyzed Vinyl Acetate Synthesis
..... 288
6.3.2
Elementary Reaction Steps of Vinyl Acetate in the Liquid Phase
. . 289
6.3.3
VAM
Synthesis: Homogeneous or Heterogeneous?
..... 293
6.4
Low-Temperature Ammonia Oxidation
....... 294
6.1.1
Ammonia Oxidation with Pt2+ Ion-Exchanged Zeolite Catalysts;
Catalysis Through Coordination Chemistry
...... 300
6.4.2
Elect roeatalytic Nil;) Oxidation
......... 303
6.5
Electrochemical NO Reducton
......... 305
6.6
Eleetrocal.alytic Oxidation of CO
........ 306
6.7
Summary
.............. 307
Addendum: The
Tafel
Slope and Reaction Mechanism in Electrocatalysis
308
7
Mechanisms in Biocatalysis; Relationship with Chemocatalysis
7.1
General Introduction
........... 313
7.2
The Mechanism of Enzyme Action: the Induced Fit Model
. . . 315
7.3
ATP-Synthase Mechanism; a Rotating Carousel with Multiple Catalytic
Sites
............... 320
X
Contents
7.4
Carbonic
Anhydrase........... 322
7.5 ßiomimicking
of
Enzyme
Catalysis
........ 323
7.6 Bio-Electrocatalytic
and Chemocatalytic Reduction Reactions
. . 326
7.6.1
Oxidation Catalysis
........... 326
7.7
Reduction Catalysis
........... 33Ü
7.8
Enzyme Mechanistic Action Summarized
....... 334
8
Self Organization and Self Assembly of Catalytic Systems
8.1
General Introduction
........... 337
8.2
Self Repair in Chemocatalysis
......... 338
8.3
Synchronization of Reaction Centers
........ 341
8.4
The Physical Chemistry of Self Organization
...... 344
8.5
Size Dependence and Cooperative Behavior
...... 349
8.6
Immunoresponse and Evolutionary Catalysis
...... 351
8.7
Inorganic Self Assembly Processes; Zeolite Synthesis
.... 354
8.7.1
General Aspects
............ 354
8.7.2
Mechanism of Zeolite Synthesis
......... 355
8.8
Evolutionary Computational Methods
....... 358
8.9
Summary
.............. 363
9
Heterogeneous Catalysis and the Origin of Life,
Biomineralization
9.1
General
Introduction
........... 367
9.2
The Origin of
Cimali
fy
........... 373
9.3
Artificial Catalytic Chemistry
......... 374
9.3.1
Graded Aut.ocatalysis Replication Domain Model
..... 375
9.4
Control Parameters and the Emergence of Artificial Life
. . . 379
9.4.1
The Logistic Map
............ 379
9.4.2
Life at the Edge of Chaos
.......... 382
9.5
Different Levels of Self Organization in Catalysis; a Summary
. . 385
9.6
Biomineralization, the Synthesis of Mesoporous Silicas
.... 386
9.6.1
Biomimetic Approaches for Amorphous Silica Synthesis
.... 388
9.6.2
Micro-Emulsion Mediated Silica Formation!
...... 390
9.7
Aging of Silica Gels
........... 394
9.7.1
Silica Gel Synthesis
........... 394
9.7.2
Fractals
.............. 396
9.7.3
Simulation of Aggregation Processes
........ 398
9.8
Expressions for Aging of Fractal Systems
....... 402
9.9
In Conclusion: Self Organization and Self Assembly
.... 403
10
Postscript
............. 409
Appendices: Computational Methods
Introduction
............. 423
A: ELECTRONIC STRUCTURE METHODS
...... 424
B: ATOMIC/MOLECULAR SIMULATION
....... 447
C: SIMULATING KINETICS
.......... 456
Index
.............. 465
|
any_adam_object | 1 |
author | Santen, Rutger A. van 1945- Neurock, Matthew |
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dewey-ones | 541 - Physical chemistry |
dewey-raw | 541.395 |
dewey-search | 541.395 |
dewey-sort | 3541.395 |
dewey-tens | 540 - Chemistry and allied sciences |
discipline | Chemie / Pharmazie Physik Chemie |
format | Book |
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institution | BVB |
isbn | 352729662X 9783527296620 |
language | English |
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spelling | Santen, Rutger A. van 1945- Verfasser (DE-588)130880175 aut Molecular heterogeneous catalysis a conceptual and computational approach Rutger Anthony van Santen and Matthew Neurock Weinheim WILEY-VCH 2006 XIII, 474 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Heterogene Katalyse - Computational chemistry Heterogeneous catalysis Computational chemistry (DE-588)4290091-8 gnd rswk-swf Heterogene Katalyse (DE-588)4123377-3 gnd rswk-swf Heterogene Katalyse (DE-588)4123377-3 s Computational chemistry (DE-588)4290091-8 s DE-604 Neurock, Matthew Verfasser (DE-588)130880221 aut http://deposit.dnb.de/cgi-bin/dokserv?id=2620797&prov=M&dok_var=1&dok_ext=htm Beschreibung für Leser Digitalisierung UB Augsburg application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=013353438&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Santen, Rutger A. van 1945- Neurock, Matthew Molecular heterogeneous catalysis a conceptual and computational approach Heterogene Katalyse - Computational chemistry Heterogeneous catalysis Computational chemistry (DE-588)4290091-8 gnd Heterogene Katalyse (DE-588)4123377-3 gnd |
subject_GND | (DE-588)4290091-8 (DE-588)4123377-3 |
title | Molecular heterogeneous catalysis a conceptual and computational approach |
title_auth | Molecular heterogeneous catalysis a conceptual and computational approach |
title_exact_search | Molecular heterogeneous catalysis a conceptual and computational approach |
title_full | Molecular heterogeneous catalysis a conceptual and computational approach Rutger Anthony van Santen and Matthew Neurock |
title_fullStr | Molecular heterogeneous catalysis a conceptual and computational approach Rutger Anthony van Santen and Matthew Neurock |
title_full_unstemmed | Molecular heterogeneous catalysis a conceptual and computational approach Rutger Anthony van Santen and Matthew Neurock |
title_short | Molecular heterogeneous catalysis |
title_sort | molecular heterogeneous catalysis a conceptual and computational approach |
title_sub | a conceptual and computational approach |
topic | Heterogene Katalyse - Computational chemistry Heterogeneous catalysis Computational chemistry (DE-588)4290091-8 gnd Heterogene Katalyse (DE-588)4123377-3 gnd |
topic_facet | Heterogene Katalyse - Computational chemistry Heterogeneous catalysis Computational chemistry Heterogene Katalyse |
url | http://deposit.dnb.de/cgi-bin/dokserv?id=2620797&prov=M&dok_var=1&dok_ext=htm http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=013353438&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT santenrutgeravan molecularheterogeneouscatalysisaconceptualandcomputationalapproach AT neurockmatthew molecularheterogeneouscatalysisaconceptualandcomputationalapproach |