Chemical photocatalysis:
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Berlin ; Boston
De Gruyter
[2020]
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Ausgabe: | 2nd edition |
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Beschreibung: | XIX, 512 Seiten Illustrationen, Diagramme (teilweise farbig) |
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245 | 1 | 0 | |a Chemical photocatalysis |c edited by Burkhard König |
250 | |a 2nd edition | ||
264 | 1 | |a Berlin ; Boston |b De Gruyter |c [2020] | |
264 | 4 | |c © 2020 | |
300 | |a XIX, 512 Seiten |b Illustrationen, Diagramme (teilweise farbig) | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
650 | 0 | 7 | |a Fotokatalyse |0 (DE-588)4193873-2 |2 gnd |9 rswk-swf |
653 | |a Chemical Photocatalysis | ||
653 | |a Enantioselective Synthesis | ||
653 | |a Photoactive Materials | ||
653 | |a Sustainable Chemistry | ||
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689 | 0 | |5 DE-604 | |
700 | 1 | |a König, Burkhard |d 1963- |0 (DE-588)143078305 |4 edt | |
710 | 2 | |a Walter de Gruyter GmbH & Co. KG |0 (DE-588)10095502-2 |4 pbl | |
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Datensatz im Suchindex
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adam_text | CONTENTS
PREFACE
*
V
PREFACE
TO
THE
SECOND
EDITION
*
VII
LIST
OF
CONTRIBUTING
AUTHORS
*
XVII
PETER
SCHROLL
1
EARLY
PIONEERS
OF
ORGANIC
PHOTOCHEMISTRY
*
1
REFERENCES
*
14
BERNHARD
DICK
2
PHOTOPHYSICS
OF
PHOTOCATALYSTS
*
17
2.1
SETTING
THE
FRAME
*
19
2.2
THE
EXPERIMENTALIST
*
S
PERSPECTIVE
*
23
2.3
THE
THEORETICIANS
*
PERSPECTIVE:
A
CLOSER
LOOK
*
30
2.3.1
TRANSITION
PROBABILITIES
*
31
2.3.2
ORBITALS
*
35
REFERENCES
*
43
BURKHARD
KDNIG,
SUSANNE
KIIMMEL,
EVA
SVOBODOVA
AND
RADEK
CIBULKA
3
FLAVIN
PHOTOCATALYSIS
*
45
3.1
INTRODUCTION
-----
45
3.1.1
GENERAL
PROPERTIES
*
46
3.2
EARLY
EXAMPLES
OF
FLAVIN
PHOTOCATALYSIS
*
48
3.3
FLAVIN
PHOTOCATALYSIS
IN
SYNTHESIS
APPLICATION
*
52
3.4
FLAVIN-RELATED
COMPOUNDS
IN
PHOTOCATALYSIS
*
59
3.5
ISOMERIZATIONS,
CYCLIZATIONS
AND
CYCLOELIMINATIONS
*
61
3.6
PHOTOOXIDATIONS
VIA
SINGLET
OXYGEN
MECHANISM
*
63
3.7
CONCLUSION
-----
64
REFERENCES
*
65
ANDREAS
BAUER
AND
RAFAEL
ALONSO
RUIZ
4
TEMPLATED
ENANTIOSELECTIVE
PHOTOCATALYSIS
*
73
4.1
INTRODUCTION
-----
73
4.2
EARLY
STUDIES.
PATERND-BUCHI
CYCLOADDITIONS
OF
A
CHIRAL
AROMATIC
ALDEHYDE
AND
CYCLIC
ENAMINES
*
75
4.3
ENANTIOSELECTIVE
NORRISH-YANG
CYCLIZATION
REACTION
OF
PROCHIRAL
IMIDAZOLIDINONES
*
76
4.4
ENANTIOSELECTIVE
PHOTOCHEMICAL
[4
+
4]-CYCLOADDITIONS
AND
ELECTROCYCLIC
[4N]-RING
CLOSURE
OF
2-PYRIDONES
*
77
X
*
*
CONTENTS
4.5
ENANTIOSELECTIVE
[6N]-PHOTOCYCLIZATION
OF
ACRYLANILIDES
*
78
4.6
ENANTIOSELECTIVE
DIELS-ALDER
REACTION
OF
A
PHOTOCHEMICALLY
GENERATED
ORTHO-QUINODIMETHANE
*
79
4.7
FORMAL
[3
+
2]-PHOTOCYCLOADDITIONS
OF
2-SUBSTITUTED
NAPHTHOQUINONES
*
80
4.8
INTRAMOLECULAR
[2
+
2]-PHOTOCYCLOADDITIONS
OF
SUBSTITUTED
5,6-
DIHYDRO-LH-PYRIDIN-2-ONES
*
80
4.9
ENANTIOSELECTIVE
RADICAL
CYCLIZATIONS
*
81
4.9.1
REDUCTIVE
RADICAL
CYCLIZATION
REACTIONS
OF
3-(W-IODOALKYLIDENE)-
PIPERIDIN-2-ONES
*
81
4.9.2
REDUCTIVE
RADICAL
CYCLIZATION
OF
3-(3-IODOPROPOXY)PROPENOIC
ACID
DERIVATIVES
*
82
4.9.3
RADICAL
CYCLIZATION
REACTIONS
OF
4-SUBSTITUTED
QUINOLONES
*
82
4.10
[2
+
2]-PHOTOCYCLOADDITION
REACTIONS
OF
ISOQUINOLONES
*
83
4.11
[2
+
2]-PHOTOCYCLOADDITION
REACTIONS
OF
SUBSTITUTED
QUINOLONES
*
85
4.11.1
INTERMOLECULAR
[2
+
2]-PHOTOCYDOADDITION
REACTIONS
OF
QUINOLONES
*
85
4.11.2
INTER-
AND
INTRAMOLECULAR
[2
+
2]-PHOTOCYCLOADDITIONS
OF
4-(2 -
AMINOETHYOQUINOLONES
*
86
4.11.3
INTRAMOLECULAR
[2
+
2]-PHOTOCYCLOADDITIONS
OF
4-(W-ALKENYLOXY)-
QUINOL-2-ONES
-----
87
4.12
LIGHT-INDUCED
ENANTIOSELECTIVE
CATALYSIS
*
88
4.12.1
ENANTIOSELECTIVE
TYPE
II
PHOTOOYGENATIONS
OF
2-PYRIDONES
*
90
4.12.2
ENANTIOSELECTIVE
ADDITION
OF
A-AMINO
RADICALS
TO
3-ALKYLIDENE
INDOLIN-2-ONES
*
91
4.12.3
CATALYZED
ENANTIOSELECTIVE
PHOTO-INDUCED
ELECTRON
TRANSFER
REACTIONS
*
92
4.12.4
XANTHONE-CATALYZED
ENANTIOSELECTIVE
[2
+
2]-PHOTOCYCLOADDITIONS
OF
QUINOLONES
*
92
4.12.5
INTERMOLECULAR
ENANTIOSELECTIVE
[2
+
2]-PHOTOCYCLOADDITIONS
OF
PYRIDONES
*
95
4.12.6 ENANTIOSELECTIVE
[2
+
2]-PHOTOCYCLOADDITIONS
USING
VISIBLE
LIGHT
*
95
4.13
CONCLUSION
-----
97
REFERENCES
*
97
ARTHUR
KUHLMANN,
SERGEJ
HERMANN,
MICHAEL
WEINBERGER,
ALEXANDER
PENNER
AND
HANS-ACHIM
WAGENKNECHT
5
PHOTOCATALYSIS
WITH
NUCLEIC
ACIDS
AND
PEPTIDES
*
103
5.1
INTRODUCTION
*
103
5.2
DNA-ASSISTED
ENANTIOSELECTIVE
REACTIONS
*
104
5.2.1
PHOTOCATALYTICALLY
ACTIVE
DMA
(PHOTODNAZYMES)
*
106
CONTENTS
*
XI
5.2.2
BENZOPHENONE
AS
PHOTOSENSITIZERS
FOR
PHOTODNAZYMES
*
106
5.3
SMALL
PEPTIDES
AS
ORGANOCATALYSTS
*
112
5.3.1
DEVELOPMENT
OF
PEPTIDES
FOR
PHOTOCATALYTIC
ADDITION
TO
STYRENES
*
114
5.4
CONCLUSION
*
117
REFERENCES
*
118
JOHANNA
SCHWARZ
6
PHOTOCATALYTIC
DECARBOXYLATIONS
*
123
6.1
INTRODUCTION
*
123
6.2
DECARBOXYLATIVE
REACTIONS
*
126
6.2.1
REACTIONS
VIA
SP
3
-HYBRIDIZED
RADICALS
FROM
ALKYL
CARBOXYLIC
ACIDS
*
126
6.2.2
REACTIONS
VIA
SP
2
-HYBRIDIZED
RADICALS
*
135
6.3
CONCLUSION
------
142
REFERENCES
*
143
MAGNUS
RILPING,
RENE
M.
KONIGS
AND
LULIANA
ATODIRESEI
7
PHOTOREDOX
CATALYZED
A-FUNCTIONALIZATION
OF
AMINES
-
VISIBLE
LIGHT
MEDIATED
CARBON-CARBON
AND
CARBON-HETERO
BOND
FORMING
REACTIONS
*
147
7.1
INTRODUCTION
*
147
7.2
AZA-HENRY
REACTION
*
151
7.3
ADDITION
OF
MALONATES
*
154
7.4
MANNICH
REACTION
*
155
7.5
ALLYLATION
-----
156
7.6
CYANATION
OF
TERTIARY
AMINES
*
157
7.7
ALKYNYLATION
-----
157
7.8
[3+2]
CYCLOADDITION
REACTION
*
158
7.9
ACYLATION
-----
159
7.10
C-HETEROATOM
(C-P,
C-O,
C-N)
BOND
FORMATION
*
159
7.11
CONCLUSION
*
161
REFERENCES
*
161
FILIP
TEPLY
8
VISIBLE-LIGHT
PHOTOREDOX
CATALYSIS
WITH
[RU(BPY)
3
]
2+
:
GENERAL
PRINCIPLES
AND
THE
TWENTIETH-CENTURY
ROOTS
*
163
8.1
INTRODUCTION
*
163
8.2
[RU(BPY)
3
]
2+
AND
ITS
PHOTOREDOX
PROPERTIES
*
164
8.3
APPLICATION
OF
[RU(BPY)
3
]
2+
AS
CATALYST
IN
THE
TWENTIETH
CENTURY
*
166
8.4
CONCLUSIONS
-----
183
REFERENCES
*
184
XII
CONTENTS
LUKAS
TRAUB
AND
OLIVER
REISER
9
HOMOGENEOUS
VISIBLE
LIGHT
MEDIATED
TRANSITION
METAL
CATALYSIS
OTHER
THAN
RUTHENIUM
AND
IRIDIUM
*
193
9.1
INTRODUCTION
*
193
9.2
COPPER
IN
VISIBLE
LIGHT
CATALYSIS
*
194
9.3
CHROMIUM
IN
VISIBLE
LIGHT
CATALYSIS
*
201
9.4
IRON
IN
VISIBLE
LIGHT
CATALYSIS
*
203
9.5
NICKEL
IN
VISIBLE
LIGHT
CATALYSIS
*
207
9.6
ZIRCONIUM
IN
VISIBLE
LIGHT
CATALYSIS
*
207
9.7
MOLYBDENUM
IN
VISIBLE
LIGHT
CATALYSIS
*
209
9.8
CERIUM
IN
VISIBLE
LIGHT
CATALYSIS
*
210
9.9
RHENIUM
AND
PLATINUM
IN
VISIBLE
LIGHT
CATALYSIS
*
212
9.10
URANIUM
IN
VISIBLE
LIGHT
CATALYSIS
*
214
9.11
SUMMARY
*
215
REFERENCES
*
216
BERND
MIIHLDORF,
ULRICH
LENNERT
AND
ROBERT
WOLF
10
COUPLING
PHOTOREDOX
AND
BIOMIMETIC
CATALYSIS
FOR
THE
VISIBLE-LIGHT-
DRIVEN
OXYGENATION
OF
ORGANIC
COMPOUNDS
*
223
10.1
INTRODUCTION
*
223
10.2
COMBINING
PHOTOREDOX
CATALYSIS
WITH
HEME-TYPE
CATALYSTS
*
225
10.3
COMBINING
PHOTOREDOX
CATALYSIS
WITH
BIOMIMETIC
NON-HEME
IRON
CATALYSTS
*
226
10.4 COUPLED
PHOTOREDOX
CATALYSTS
BASED
ON
COPPER
*
229
10.5
DI-
AND
TRINUCLEAR
RUTHENIUM
DYADS
FOR
OXYGENATION
*
231
10.6
BIOCATALYTIC
OXYGENATION
*
234
10.7
SUMMARY
-----
237
REFERENCES
*
239
KIRSTEN
ZEITLER
AND
MATTHIAS
NEUMANN
11
SYNERGISTIC
VISIBLE
LIGHT
PHOTOREDOX
CATALYSIS
*
245
11.1
INTRODUCTION
*
245
11.2
STABILIZED
IMINIUM
IONS
*
248
11.2.1
SECONDARY
AMINE
CATALYZED
MANNICH
REACTIONS
*
249
11.2.2
COINAGE
METAL
CATALYZED
ALKYNYLATION
REACTIONS
*
252
11.2.3
NHC
CATALYZED
ACYLATIONS
*
254
11.3
ELECTROPHILIC
CARBON
CENTERED
RADICALS
*
256
11.3.1
SECONDARY
AMINE
CATALYZED
A-ALKYLATION
OF
ALDEHYDES
*
256
11.3.2
PALLADIUM-CATALYZED
C-H
ARYLATION
*
262
11.3.3
COPPER-CATALYZED
TRIFLUOROMETHYLATION
OF
ARYL
BORONIC
ACIDS
*
264
CONTENTS
*
XIII
11.3.4
GOLD-CATALYZED
INTRA-
AND
INTERMOLECULAR
ARYLATIVE
TRANSFORMATIONS^
ALKENES
AND
ALKYNES
*
265
11.4
11.4.1
11.4.2
11.4.3
11.4.4
NUCLEOPHILIC
CARBON
CENTERED
RADICALS
*
267
CARBONYL
RADICAL
ANION
(KETYL
RADICAL)
AND
RELATED
SPECIES
*
267
A-AMINO
ALKYL
RADICALS
*
270
P-ENAMINYL
RADICALS
*
272
ALKYL
RADICALS
IN
NI/PHOTOREDOX
DUAL
CATALYTIC
CROSS
COUPLING
REACTIONS
*
272
11.5
CONCLUSIONS
AND
FUTURE
OUTLOOK
*
275
REFERENCES
*
276
INDRAJIT
GHOSH
12
EXCITED
RADICAL
ANIONS
AND
EXCITED
ANIONS
IN
VISIBLE
LIGHT
PHOTOREDOX
CATALYSIS
*
285
12.1
12.2
12.2.1
12.2.2
12.2.3
12.2.4
12.3
12.4
INTRODUCTION
*
285
RADICAL
ANIONS
AS
VISIBLE
LIGHT
ABSORBING
PHOTOSENSITIZERS
*
286
PERYLENE
DIIMIDE
RADICAL
ANION
*
286
RHODAMINE
66
(RH-6G)
RADICAL
ANION
*
290
9,10-DICYANOANTHRACENE
(DCA)
RADICAL
ANION
*
294
ANTHRAQUINONE
RADICAL
AND
SEMIQUINONE
ANIONS
*
295
EXCITED
STATE
ANIONS
IN
VISIBLE
LIGHT
PHOTOREDOX
CATALYSIS
*
295
THE
GROUND
STATE
RAM
*
S
RADICAL
ANIONS
IN
VISIBLE
LIGHT
PHOTOREDOX
CATALYSIS
*
296
12.5
CONCLUSION
*
297
REFERENCES
*
298
SVEN
RAU,
MICHAEL
G.
PFEFFER
AND
ROBERT
STAEHLE
13
METAL
COMPLEXES
FOR
PHOTOHYDROGENATION
AND
HYDROGEN
EVOLUTION
*
301
13.1
ANALYSIS
OF
CONSTRUCTION
COMPONENTS
OF
ARTIFICIAL
PHOTOCATALYTIC
SYSTEMS
*
303
13.1.1
13.1.2
13.1.3
13.1.4
13.1.5
13.1.6
13.1.7
13.1.8
13.2
CHROMOPHORE
*
303
ELECTRON
RELAY
*
304
REDOX
EQUIVALENTS
*
304
REDUCTION
CATALYSTS
*
304
INTRAMOLECULAR
HYDROGEN
EVOLVING
PHOTOCATALYSTS
*
305
OXIDATION
CATALYSTS
*
306
INTRAMOLECULAR
OXIDATION
CATALYSTS
*
307
COMPARISON
OF
INTER-
AND
INTRAMOLECULAR
PHOTOCATALYSIS
*
307
INTRAMOLECULAR
PHOTOCATALYSTS
FOR
HYDROGEN
PRODUCTION
AND
HYDROGENATION
*
309
XIV
*
CONTENTS
13.2.1
HYDROGEN
PRODUCTION
*
310
13.2.2
PHOTOHYDROGENATION
-----
312
13.2.3
PHOTOPHYSICS
-----
313
13.2.4
RU(TPPHZ)PD-TYPE
CATALYSTS
AS
PHOTOCHEMICAL
MOLECULAR
DEVICES
(PMD)
-----
318
13.3
CONCLUSION
------
320
REFERENCES
*
321
ARNO
PFITZNER,
STEPHAN
DANKESREITER,
ANNA
EISENHOFER
AND
MARIA
CHEREVATSKAYA
14
HETEROGENEOUS
SEMICONDUCTOR
PHOTOCATALYSIS
*
327
14.1
INORGANIC
SEMICONDUCTORS
*
327
14.1.1
GENERAL
FEATURES
OF
A
PHOTOCATALYST
*
327
14.1.2
HOW
TO
TUNE
A
PHOTOCATALYST
*
333
14.1.3
SELECTED
EXAMPLES
OF
PHOTOCATALYSTS
AND
THEIR
APPLICATION
TO
ORGANIC
SYNTHESIS
*
337
14.2
ORGANIC
SEMICONDUCTORS
*
346
14.2.1
BASIC
PROPERTIES
OF
ORGANIC
SEMICONDUCTORS
*
347
14.2.2
APPLICATION
OF
CONJUGATED
POLYMERS
IN
PHOTOCATALYSIS
*
348
REFERENCES
*
355
CARSTEN
STREB,
KATHARINA
KASTNER
AND
JOHANNES
TUCHER
15
POLYOXOMETALATES
IN
PHOTOCATALYSIS
*
363
15.1
INTRODUCTION
*
363
15.1.1
POLYOXOMETALATES
-
MOLECULAR
METAL
OXIDE
CLUSTERS
*
363
15.1.2
CONCEPTS
IN
POLYOXOMETALATE
PHOTOCHEMISTRY
*
364
15.1.3
THE
BASICS
OF
POM
PHOTOCHEMISTRY
*
366
15.1.4
TRADITIONAL
PHOTOOXIDATION
OF
ORGANIC
SUBSTRATES
*
366
15.2
RECENT
DEVELOPMENTS
IN
POM
PHOTOCHEMISTRY
*
366
15.2.1
WATER
OXIDATION
BY
RU-
AND
CO-POLYOXO
METALATES
*
367
15.2.2
POLYOXONIOBATE
WATER
OXIDATION
*
367
15.2.3
WATER
OXIDATION
BY
DAWSON
ANIONS
IN
IONIC
LIQUIDS
*
369
15.2.4
PHOTOREDUCTIVE
C0
2
-ACTIVATION
*
369
15.2.5
PHOTOREDUCTIVE
H
2
GENERATION
*
370
15.3
OPTIMIZING
PHOTOCATALYTIC
PERFORMANCE
OF
POLYOXOMETALATES
*
371
15.3.1
STRUCTURALLY
ADAPTIVE
SYSTEMS
*
371
15.3.2
OPTIMIZED
PHOTOACTIVITY
BY
METAL
SUBSTITUTION
*
372
15.3.3
INSPIRATION
FROM
THE
SOLID-STATE
WORLD
*
373
15.4
CONCLUSION
-----
374
REFERENCES
*
375
CONTENTS
-----
XV
THOMAS
MERZ,
GENARO
BIERHANCE,
ERNST-CHRISTIAN
FLACH,
DANIEL
KATS,
DENIS
USVYAT
AND
MARTIN
SCHUTZ
16
DESCRIPTION
OF
EXCITED
STATES
IN
PHOTOCHEMISTRY
WITH
THEORETICAL
METHODS
*
379
16.1
INTRODUCTION
*
379
16.2
THE
CONCEPT
OF
PESS
*
381
16.3
COMPUTATIONAL
METHODS
FOR
EXCITED
STATES
*
385
16.3.1
QM
METHODS
-----
385
16.3.2
SOLVENT
DESCRIPTION
VIA
THE
QM/MM
APPROACH
*
387
16.4
PROCEDURE
*
391
16.5
EXAMPLES
*
392
16.6
ROSEOFLAVIN
-----
394
16.7
BENZOPHENONE
IN
DINUCLEOTIDES
*
399
16.8
PHOTOINDUCED
RING
CLOSURE
IN
DAE
-------
405
16.9
CONCLUSION
-----
408
REFERENCES
*
409
BERNHARD
DICK,
UWE
KENSY,
AND
ROGER
JAN
KUTTAAND
17
TRANSIENT
ABSORPTION
WITH
A
STREAK
CAMERA
*
415
17.1
INTRODUCTION
*
415
17.2
EXPERIMENTAL
SETUP
*
418
17.3
DATA
ANALYSIS
-----
420
17.3.1
SVD
AND
RANK
ANALYSIS
*
421
17.3.2
GLOBAL
LIFETIME
ANALYSIS
*
422
17.3.3
ELIMINATING
INVALID
DATA
*
423
17.3.4
MAXIMUM
ENTROPY
ANALYSIS
-----
424
17.4
PERFORMANCE
*
428
17.4.1
RFTA
ALONE
-----
428
17.4.2
PHOTOOXIDATION
OF
MBA
WITH
RFTA
-----
432
17.5
DISCUSSION
-----
434
17.6
CONCLUSION
----
437
REFERENCES
*
438
EBERHARD
RIEDLE
AND
MATTHIAS
WENNINGER
18
TIME
RESOLVED
SPECTROSCOPY
IN
PHOTOCATALYSIS
*
443
18.1
UV/VIS
ABSORPTION
SPECTROSCOPY:
MORE
THAN
JUST
E!
*
443
18.2
TIME-RESOLVED
SPECTROSCOPIC
METHODS
FROM
FS
TO
PS
TO
ELUCIDATE
PHOTOCATALYTIC
PROCESSES
*
447
18.2.1
TRANSIENT
ABSORPTION
SPECTROSCOPY:
SIGNALS,
TIME
SCALES,
AND
DATA
PROCESSING
*
447
18.2.2
SPECTROSCOPY
ON
THE
FS
TO
PS
TIME
SCALE
*
450
18.2.3
SPECTROSCOPY
ON
THE
NS
TO
PS
TIME
SCALE
*
455
XVI
CONTENTS
INDEX
*
503
18.2.4
RATE
MODELS
AND
THE
DETERMINATION
OF
THE
SPECIES
ASSOCIATED
SPECTRA
OF
THE
INTERMEDIATE
STATES
*
461
18.3
18.3.1
DIFFUSION
LIMITED
REACTIONS
*
469
DIFFUSION
LIMITED
EXCITED
STATE
QUENCHING
WITH
TIME
DEPENDENT
REACTION
RATE
*
469
18.3.2
18.4
18.4.1
18.4.2
APPLICATION
OF
THE
DIFFUSION
FIT
FUNCTION
TO
EXPERIMENTAL
DATA
*
475
COSTS
OF
PHOTOCATALYSIS:
THE
REACTION
QUANTUM
YIELD
*
481
REQUIREMENTS
FOR
AN
ACCURATE
DEFINITION
OF
THE
QUANTUM
YIELD
*
481
DETERMINATION
OF
THE
QUANTITY
OF
EXCITED
MOLECULES
IN
TRANSIENT
ABSORPTION
MEASUREMENTS
*
486
18.4.3
EXAMPLE
OF
THE
SPECTROSCOPIC
DETERMINATION
OF
REACTION
QUANTUM
YIELDS:
FLAVIN
PHOTOCATALYSIS
*
488
18.5
FROM
LIGHT
ABSORPTION
TO
CHEMISTRY:
SENSITIZING
MECHANISMS
IN
HOMOGENEOUS
PHOTOCATALYSIS
*
493
18.5.1
18.5.2
SENSITIZATION
BY
EXCITATION
ENERGY
TRANSFER
*
493
PHOTOREDOX
CATALYSIS:
REQUIREMENTS
ON
CATALYST
AND
SUBSTRATE
*
494
18.6
EPILOGUE
-----
498
REFERENCES
*
500
|
any_adam_object | 1 |
author2 | König, Burkhard 1963- |
author2_role | edt |
author2_variant | b k bk |
author_GND | (DE-588)143078305 |
author_facet | König, Burkhard 1963- |
building | Verbundindex |
bvnumber | BV045519338 |
classification_rvk | VK 5600 |
ctrlnum | (OCoLC)1084673574 (DE-599)DNB1176831895 |
discipline | Chemie / Pharmazie |
edition | 2nd edition |
format | Book |
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genre | (DE-588)4143413-4 Aufsatzsammlung gnd-content |
genre_facet | Aufsatzsammlung |
id | DE-604.BV045519338 |
illustrated | Illustrated |
indexdate | 2024-07-10T08:20:22Z |
institution | BVB |
institution_GND | (DE-588)10095502-2 |
isbn | 9783110576542 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-030903657 |
oclc_num | 1084673574 |
open_access_boolean | |
owner | DE-20 DE-29T DE-11 DE-355 DE-BY-UBR DE-19 DE-BY-UBM DE-1102 DE-703 |
owner_facet | DE-20 DE-29T DE-11 DE-355 DE-BY-UBR DE-19 DE-BY-UBM DE-1102 DE-703 |
physical | XIX, 512 Seiten Illustrationen, Diagramme (teilweise farbig) |
publishDate | 2020 |
publishDateSearch | 2020 |
publishDateSort | 2020 |
publisher | De Gruyter |
record_format | marc |
spelling | Chemical photocatalysis edited by Burkhard König 2nd edition Berlin ; Boston De Gruyter [2020] © 2020 XIX, 512 Seiten Illustrationen, Diagramme (teilweise farbig) txt rdacontent n rdamedia nc rdacarrier Fotokatalyse (DE-588)4193873-2 gnd rswk-swf Chemical Photocatalysis Enantioselective Synthesis Photoactive Materials Sustainable Chemistry Visible Light (DE-588)4143413-4 Aufsatzsammlung gnd-content Fotokatalyse (DE-588)4193873-2 s DE-604 König, Burkhard 1963- (DE-588)143078305 edt Walter de Gruyter GmbH & Co. KG (DE-588)10095502-2 pbl Erscheint auch als Online-Ausgabe, PDF 978-3-11-057676-4 Erscheint auch als Online-Ausgabe, EPUB 978-3-11-057664-1 Vorangegangen ist 978-3-11-026916-1 DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=030903657&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Chemical photocatalysis Fotokatalyse (DE-588)4193873-2 gnd |
subject_GND | (DE-588)4193873-2 (DE-588)4143413-4 |
title | Chemical photocatalysis |
title_auth | Chemical photocatalysis |
title_exact_search | Chemical photocatalysis |
title_full | Chemical photocatalysis edited by Burkhard König |
title_fullStr | Chemical photocatalysis edited by Burkhard König |
title_full_unstemmed | Chemical photocatalysis edited by Burkhard König |
title_short | Chemical photocatalysis |
title_sort | chemical photocatalysis |
topic | Fotokatalyse (DE-588)4193873-2 gnd |
topic_facet | Fotokatalyse Aufsatzsammlung |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=030903657&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT konigburkhard chemicalphotocatalysis AT walterdegruytergmbhcokg chemicalphotocatalysis |