Sustainable catalysis: energy-efficient reactions and applications
Gespeichert in:
Weitere Verfasser: | , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Weinheim
Wiley-VCH
[2018]
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Schlagworte: | |
Online-Zugang: | http://www.wiley-vch.de/publish/dt/books/ISBN978-3-527-33867-2/ Inhaltsverzeichnis |
Beschreibung: | ix, 282 Seiten Illustrationen, Diagramme 24.4 cm x 17 cm |
ISBN: | 9783527338672 3527338675 |
Internformat
MARC
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245 | 1 | 0 | |a Sustainable catalysis |b energy-efficient reactions and applications |c edited by Rafael Luque and Frank Leung-Yuk Lam |
263 | |a 201711 | ||
264 | 1 | |a Weinheim |b Wiley-VCH |c [2018] | |
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653 | |a Erneuerbare Energien | ||
653 | |a Industrial Chemistry | ||
653 | |a Katalyse | ||
653 | |a Nachhaltige u. Grüne Chemie | ||
653 | |a Renewable Energy | ||
653 | |a Sustainable Chemistry & Green Chemistry | ||
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Datensatz im Suchindex
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adam_text | CONTENTS
1 INTRODUCTION TO ROOM-TEMPERATURE CATALYSIS
1
EDUARDO J. GARDA-SUAREZ AND ANDERS RIISAGER
1.1 INTRODUCTION 1
1.2 ROOM-TEMPERATURE HOMOGENEOUS CATALYSTS 2
1.2.1 IONIC-LIQUID-BASED CATALYTIC SYSTEMS AT ROOM TEMPERATURE 2
1.2.2 TRANSITION METAL HOMOGENEOUS CATALYSTS 6
1.2.2.1 GROUP 9-BASED HOMOGENEOUS CATALYSTS (CO, RH, IR) 6
1.2.2.2 GROUP 10-BASED HOMOGENEOUS CATALYSTS (NI, PD, PT) 7
1.2.2.3 GROUP 11-BASED HOMOGENEOUS CATALYSTS (AG, AU) 10
1.3 ROOM-TEMPERATURE HETEROGENEOUS CATALYSTS 10
1.3.1 GROUP 9-BASED HETEROGENEOUS CATALYSTS (CO, RH, IR) 11
1.3.2 GROUP 10-BASED HETEROGENEOUS CATALYSTS (NI, PD, PT) 13
1.3.3 GROUP 11-BASED HETEROGENEOUS CATALYSTS (CU, PT, AU) 23
1.4 CONCLUSIONS AND PERSPECTIVES 29
REFERENCES 31
2
FUNCTIONALIZED IONIC LIQUID-BASED CATALYTIC SYSTEMS WITH
DIVERSIFIED PERFORMANCE ENHANCEMENTS
35
SHIGUO ZHANG AND YANLONG GU
2.1 INTRODUCTION 35
2.2 FUNCTIONALIZED ILS FOR ENHANCING CATALYTIC ACTIVITY 36
2.3 FUNCTIONALIZED ILS FOR IMPROVING REACTION SELECTIVITY 38
2.4 FUNCTIONALIZED ILS FOR FACILITATING CATALYST RECYCLING AND PRODUCT
ISOLATION 40
2.5 FUNCTIONALIZED ILS FOR MAKING RELAY CATALYSIS 43
2.6 CATION AND ANION SYNERGISTIC CATALYSIS IN IONIC LIQUIDS 45
2.7 FUNCTIONALIZED ILS FOR AQUEOUS CATALYSIS 46
2.8 CATALYSIS BY POROUS POLY-ILS 47
2.9 FUNCTIONALIZED IL-BASED CARBON MATERIAL FOR CATALYSIS 49
2.10 SUMMARY AND CONCLUSIONS 54
REFERENCES 54
3 HETEROGENEOUS ROOM TEMPERATURE
CATALYSIS - NANOMATERIALS
59
LIYU CHEN AND YINGWEI LI
3.1 INTRODUCTION 59
3.2 SOLID-ACID-BASED NANOMATERIALS 69
3.3 GRAFTED-METAL-IONS-BASED NANOMATERIAL 65
3.4 METAL NPS-BASED NANOMATERIAL 67
3.4.1 METAL NPS STABILIZED BY LIGANDS 67
3.4.2 METAL NPS@POLYMERS 68
3.4.3 METAL NPS@METAL OXIDES 79
3.4.4 METAL NPS@CARBONACEOUS SUPPORT 72
3.4.5 METAL NPS@SILICEOUS BASE SUPPORT 74
3.4.6 METAL NPS@MOF NANOCOMPOSITES 77
3.5 METAL OXIDE NPS-BASED NANOMATERIAL 82
3.6 SUMMARY AND CONCLUSIONS 83
REFERENCES 84
4 BIOCATALYSIS AT ROOM TEMPERATURE
89
IVALDO ITABAIANA JR AND RODRIGO 0. M A. DE SOUZA
4.1 INTRODUCTION 89
4.2 TRANSAMINASES 99
4.2.1 GENERAL FEATURES 99
4.2.2 TRANSAMINASE APPLICATIONS AT ROOM TEMPERATURE 99
4.3 HYDROLASES 98
4.3.1 GENERAL FEATURES 98
4.3.2 APPLICATION OF HYDROLASES AT ROOM TEMPERATURE 100
4.3.2.1 LIPASES 100
4.3.2.2 ALDOL ADDITIONS 101
4.3.2.3 MICHAEL ADDITION 102
4.3.2.4 MANNICH REACTION 102
4.3.2.5 C-HETEROATOM AND HETEROATOM-HETEROATOM BOND
FORMATIONS 103
4.3.2.6 EPOXIDATION 103
4.3.2.7 SYNTHESIS OF HETEROCYCLES 104
4.3.2.S KINETIC RESOLUTIONS 105
4.3.3 CUTINASES 107
4.4 LACCASES 108
4.4.1 GENERAL FEATURES 108
4.4.2 APPLICATIONS OF LACCASES 110
4.5 ENZYMES IN IONIC LIQUIDS 115
4.5.1 GENERAL FEATURES 115
REFERENCES 125
5 ROOM TEMPERATURE CATALYSIS ENABLED BY LIGHT
135
TIMOTHY NOEL
5.1 INTRODUCTION 135
5.2 UV PHOTOCHEMISTRY 136
5.3 VISIBLE LIGHT PHOTOREDOX CATALYSIS 139
5.4 ROOM TEMPERATURE CROSS-COUPLING ENABLED BY LIGHT 141
5.5 PHOTOCHEMISTRY AND MICROREACTOR TECHNOLOGY - A PERFECT
MATCH? 144
5.6 THE USE OF PHOTOCHEMISTRY IN MATERIAL SCIENCE 146
5.7 SOLAR FUELS 149
5.8 CONCLUSION 151
REFERENCES 151
6 MECHANOCHEMICALLY ENHANCED ORGANIC TRANSFORMATIONS
155
DAVIN TAN AND TOMISLAV FRISCIC
6.1 INTRODUCTION 155
6.2 MECHANOCHEMICAL TECHNIQUES AND MECHANISMS: NEAT VERSUS
LIQUID-ASSISTED GRINDING (LAG) 156
6.3 OXIDATION AND REDUCTION USING MECHANOCHEMISTRY 160
6.3.1 DIRECT OXIDATION OF ORGANIC SUBSTRATES USING OXONE 160
6.3.2 MECHANOCHEMICAL HALOGENATIONS AIDED BY OXONE 162
6.3.3 REDUCTION REACTIONS BY MECHANOCHEMISTRY 163
6.4 ELECTROCYCLIC REACTIONS: EQUILIBRIUM AND TEMPLATING IN
MECHANOCHEMISTRY 165
6.4.1 THE DIELS-ALDER REACTION: MECHANOCHEMICAL EQUILIBRIUM IN
REVERSIBLE C*C BOND FORMATION 165
6.4.2 PHOTOCHEMICAL [2+2] CYCLOADDITION DURING GRINDING: SUPRAMOLECULAR
CATALYSIS AND STRUCTURE TEMPLATING 167
6.5 RECENT ADVANCES IN METAL-CATALYZED MECHANOCHEMICAL
REACTIONS 168
6.5.1 COPPER-CATALYZED [2+3] CYCLOADDITION (HUISGEN COUPLING) 168
6.5.2 OLEFIN METATHESIS BY BALL MILLING 169
6.5.3 MECHANOCHEMICAL C*H BOND ACTIVATION 170
6.5.4 CYCLOPROPANATION OF ALKENES USING SILVER FOIL AS A CATALYST
SOURCE 171
6.6 NEW FRONTIERS IN ORGANIC SYNTHESIS ENABLED BY
MECHANOCHEMISTRY 171
6.6.1 SYNTHESIS OF ACTIVE PHARMACEUTICAL INGREDIENTS (APIS) 172
6.6.2 REACTIVITY ENABLED OR FACILITATED BY MECHANOCHEMISTRY 173
6.6.3 TRAPPING UNSTABLE REACTION INTERMEDIATES 175
6.7 CONCLUSION AND OUTLOOK 176
ACKNOWLEDGMENTS 176
REFERENCES 176
1
PALLADIUM-CATALYZED CROSS-COUPLING IN CONTINUOUS FLOW AT
ROOM AND MILD TEMPERATURE
183
CHRISTOPHE LEN
7.1 INTRODUCTION 183
7.2 SUZUKI CROSS-COUPLING IN CONTINUOUS FLOW 184
7.3 HECK CROSS-COUPLING IN CONTINUOUS FLOW 192
7.4 MURAHASHI CROSS-COUPLING IN CONTINUOUS FLOW 199
7.5 CONCLUDING REMARKS 202
REFERENCES 202
8 CATALYSIS FOR ENVIRONMENTAL APPLICATIONS
207
CHANGSEOKHAN, ENDALKACHEW SAHLE-DEMESSIE, AFZAL SHAH, SAIMA NAWAZ,
LATIF-UR-RAHMAN, NIALL B. MCGUINNESS, SURESH C.
PILLAI, HYEOK CHOI, DIONYSIOS
D. DIONYSIOU, AND MALLIKARJUNA N. NADAGOUDA
8.1 INTRODUCTION 207
8.2 FERRATE (FE042-) FOR WATER TREATMENT 208
8.3 MAGNETICALLY SEPARABLE FERRITE FOR WATER TREATMENT 209
8.3.1 MAGNETIC NANOPARTICLES 209
8.3.2 MAGNETIC RECOVERY OF MATERIALS USED FOR WATER TREATMENT 211
8.3.3 FERRITE PHOTOCATALYST FOR WATER TREATMENT 212
8.4 UV, SOLAR, AND VISIBLE LIGHT-ACTIVATED T I02 PHOTOCATALYSTS FOR
ENVIRONMENTAL APPLICATION 212
8.5 CATALYSIS FOR REMEDIATION OF CONTAMINATED GROUNDWATER AND
SOILS 215
8.5.1 CATALYTIC OXIDATIVE PATHWAYS 215
8.5.2 CATALYTIC REDUCTIVE PATHWAYS 217
8.5.3 PROSPECTS AND LIMITATIONS 218
8.6 NOVEL CATALYSIS FOR ENVIRONMENTAL APPLICATIONS 218
8.6.1 GRAPHENE AND GRAPHENE COMPOSITES 219
8.6.2 PEROVSKITES AND PEROVSKITES COMPOSITES 221
8.6.3 GRAPHITIC CARBON NITRIDE (G-C3N4) AND G-C3N4 COMPOSITES 222
8.7 SUMMARY AND CONCLUSIONS 223
ACKNOWLEDGMENTS 224
DISCLAIMER 224
REFERENCES 224
9
FUTURE DEVELOPMENT IN ROOM-TEMPERATURE CATALYSIS AND
CHALLENGES IN THE TWENTY-FIRST CENTURY
231
FANNIE P. Y LAU, R. LUQUE, AND FRANK L. Y. LAM
CASE STUDY 1: MAGNETIC PD CATALYSTS FOR BENZYL ALCOHOL
OXIDATION TO BENZALDEHYDE
237
YINGYING LI, FRANK L.-Y LAM, AND XIJUN HU
1.1 INTRODUCTION 237
1.2 PD/MAGSBA MAGNETIC CATALYST FOR SELECTIVE BENZYL ALCOHOL OXIDATION
TO BENZALDEHYDE 239
1.2.1 RESULTS AND DISCUSSION 239
1.2.1.1 CHARACTERIZATION 239
1.2.1.2 EFFECT OF REACTION TEMPERATURE 240
1.2.1.3 EFFECT OF PD LOADING 241
1.2.1.4 RECYCLING TEST 246
1.3 SUMMARY AND CONCLUSIONS 246
REFERENCES 247
CASE STUDY 2: DEVELOPMENT OF HYDROTHERMALLY STABLE
FUNCTIONAL MATERIALS FOR SUSTAINABLE CONVERSION OF BIOMASS TO
FURAN COMPOUNDS
251
AMRITA CHATTERJEE, XIJUN HU, AND FRANK L-Y LAM
2.1 INTRODUCTION 251
2.2 METAL-ORGANIC-FRAMEWORK AS A POTENTIAL CATALYST FOR BIOMASS
VALORIZATION 254
2.3 XYLOSE DEHYDRATION TO FURFURAL USING METAL-ORGANIC-FRAMEWORK,
MIL-LOL(CR) 255
2.3.1 XYLOSE DEHYDRATION CATALYZED BY ORGANOSILANE COATED
MIL-LOL(CR) 255
2.3.2 XYLOSE TO FURFURAL TRANSFORMATION CATALYZED BY FLY-ASH AND
MIL-LOL(CR) COMPOSITE 258
2.3.3 XYLOSE TO FURFURAL TRANSFORMATION CATALYZED BY TIN PHOSPHATE AND
MIL-LOL(CR) COMPOSITE 262
2.3.4 ROLE OF ACID SITES, TEXTURAL PROPERTIES AND HYDROTHERMAL STABILITY
OF
CATALYST IN XYLOSE DEHYDRATION REACTION 264
2.4 CONCLUSION 267
REFERENCES 268
INDEX
273
|
any_adam_object | 1 |
author2 | Luque, Rafael Lam, Frank Leung-yuk |
author2_role | edt edt |
author2_variant | r l rl f l y l fly flyl |
author_facet | Luque, Rafael Lam, Frank Leung-yuk |
building | Verbundindex |
bvnumber | BV044414570 |
classification_rvk | VE 7040 VK 5550 VN 7340 |
classification_tum | CIT 980f CIT 680f CHE 167f CHE 050f |
ctrlnum | (OCoLC)1028538687 (DE-599)DNB1131729412 |
dewey-full | 540 |
dewey-hundreds | 500 - Natural sciences and mathematics |
dewey-ones | 540 - Chemistry and allied sciences |
dewey-raw | 540 |
dewey-search | 540 |
dewey-sort | 3540 |
dewey-tens | 540 - Chemistry and allied sciences |
discipline | Chemie / Pharmazie Physik Chemie Chemie-Ingenieurwesen Biotechnologie |
format | Book |
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id | DE-604.BV044414570 |
illustrated | Illustrated |
indexdate | 2024-07-10T07:52:20Z |
institution | BVB |
institution_GND | (DE-588)16179388-5 |
isbn | 9783527338672 3527338675 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-029816294 |
oclc_num | 1028538687 |
open_access_boolean | |
owner | DE-91S DE-BY-TUM DE-M347 DE-29T DE-19 DE-BY-UBM DE-83 DE-11 |
owner_facet | DE-91S DE-BY-TUM DE-M347 DE-29T DE-19 DE-BY-UBM DE-83 DE-11 |
physical | ix, 282 Seiten Illustrationen, Diagramme 24.4 cm x 17 cm |
publishDate | 2018 |
publishDateSearch | 2018 |
publishDateSort | 2018 |
publisher | Wiley-VCH |
record_format | marc |
spelling | Sustainable catalysis energy-efficient reactions and applications edited by Rafael Luque and Frank Leung-Yuk Lam 201711 Weinheim Wiley-VCH [2018] © 2018 ix, 282 Seiten Illustrationen, Diagramme 24.4 cm x 17 cm txt rdacontent n rdamedia nc rdacarrier Grüne Chemie (DE-588)7563215-9 gnd rswk-swf Biomaterial (DE-588)4267769-5 gnd rswk-swf Erneuerbare Ressourcen (DE-588)4152831-1 gnd rswk-swf Katalyse (DE-588)4029921-1 gnd rswk-swf Energieeffizienz (DE-588)7660153-5 gnd rswk-swf Erneuerbare Energien (DE-588)4068598-6 gnd rswk-swf Nachhaltigkeit (DE-588)4326464-5 gnd rswk-swf Catalysis Chemie Chemistry Energie Energieeffizienz Energy Energy Efficiency Erneuerbare Energien Industrial Chemistry Katalyse Nachhaltige u. Grüne Chemie Renewable Energy Sustainable Chemistry & Green Chemistry Technische u. Industrielle Chemie Biomaterial (DE-588)4267769-5 s Erneuerbare Ressourcen (DE-588)4152831-1 s Erneuerbare Energien (DE-588)4068598-6 s Katalyse (DE-588)4029921-1 s Energieeffizienz (DE-588)7660153-5 s Grüne Chemie (DE-588)7563215-9 s Nachhaltigkeit (DE-588)4326464-5 s b DE-604 Luque, Rafael edt Lam, Frank Leung-yuk edt Wiley-VCH (DE-588)16179388-5 pbl Erscheint auch als Online-Ausgabe, ePDF 978-3-527-69301-6 Erscheint auch als Online-Ausgabe, EPUB 978-3-527-69302-3 Erscheint auch als Online-Ausgabe, MOBI 978-3-527-69304-7 Erscheint auch als Online-Ausgabe, oBook 978-3-527-69303-0 X:MVB http://www.wiley-vch.de/publish/dt/books/ISBN978-3-527-33867-2/ DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=029816294&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Sustainable catalysis energy-efficient reactions and applications Grüne Chemie (DE-588)7563215-9 gnd Biomaterial (DE-588)4267769-5 gnd Erneuerbare Ressourcen (DE-588)4152831-1 gnd Katalyse (DE-588)4029921-1 gnd Energieeffizienz (DE-588)7660153-5 gnd Erneuerbare Energien (DE-588)4068598-6 gnd Nachhaltigkeit (DE-588)4326464-5 gnd |
subject_GND | (DE-588)7563215-9 (DE-588)4267769-5 (DE-588)4152831-1 (DE-588)4029921-1 (DE-588)7660153-5 (DE-588)4068598-6 (DE-588)4326464-5 |
title | Sustainable catalysis energy-efficient reactions and applications |
title_auth | Sustainable catalysis energy-efficient reactions and applications |
title_exact_search | Sustainable catalysis energy-efficient reactions and applications |
title_full | Sustainable catalysis energy-efficient reactions and applications edited by Rafael Luque and Frank Leung-Yuk Lam |
title_fullStr | Sustainable catalysis energy-efficient reactions and applications edited by Rafael Luque and Frank Leung-Yuk Lam |
title_full_unstemmed | Sustainable catalysis energy-efficient reactions and applications edited by Rafael Luque and Frank Leung-Yuk Lam |
title_short | Sustainable catalysis |
title_sort | sustainable catalysis energy efficient reactions and applications |
title_sub | energy-efficient reactions and applications |
topic | Grüne Chemie (DE-588)7563215-9 gnd Biomaterial (DE-588)4267769-5 gnd Erneuerbare Ressourcen (DE-588)4152831-1 gnd Katalyse (DE-588)4029921-1 gnd Energieeffizienz (DE-588)7660153-5 gnd Erneuerbare Energien (DE-588)4068598-6 gnd Nachhaltigkeit (DE-588)4326464-5 gnd |
topic_facet | Grüne Chemie Biomaterial Erneuerbare Ressourcen Katalyse Energieeffizienz Erneuerbare Energien Nachhaltigkeit |
url | http://www.wiley-vch.de/publish/dt/books/ISBN978-3-527-33867-2/ http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=029816294&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT luquerafael sustainablecatalysisenergyefficientreactionsandapplications AT lamfrankleungyuk sustainablecatalysisenergyefficientreactionsandapplications AT wileyvch sustainablecatalysisenergyefficientreactionsandapplications |