Surface-functionalized ceramics: for biotechnological and environmental applications
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Format: | Buch |
Sprache: | English |
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Weinheim, Germany
WILEY-VCH
[2023]
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Schlagworte: | |
Online-Zugang: | http://www.wiley-vch.de/publish/dt/books/ISBN978-3-527-33835-1/ Inhaltsverzeichnis Inhaltsverzeichnis |
Beschreibung: | xv, 447 Seiten Illustrationen, Diagramme 25 cm, 1070 g |
ISBN: | 9783527338351 3527338357 |
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245 | 1 | 0 | |a Surface-functionalized ceramics |b for biotechnological and environmental applications |c edited by Laura Treccani and Fabian Meder |
264 | 1 | |a Weinheim, Germany |b WILEY-VCH |c [2023] | |
264 | 4 | |c © 2023 | |
300 | |a xv, 447 Seiten |b Illustrationen, Diagramme |c 25 cm, 1070 g | ||
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653 | |a Biotechnologie i. d. Biowissenschaften | ||
653 | |a Biotechnologie i. d. Chemie | ||
653 | |a Biotechnology | ||
653 | |a Biowissenschaften | ||
653 | |a Ceramics | ||
653 | |a Chemie | ||
653 | |a Chemistry | ||
653 | |a Keramische Werkstoffe | ||
653 | |a Life Sciences | ||
653 | |a Materials Science | ||
653 | |a Materialwissenschaften | ||
653 | |a CH31: Biotechnologie i. d. Chemie | ||
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653 | |a Wasserchemie | ||
653 | |a Keramik (Techn.) | ||
653 | |a CH22: Wasserchemie | ||
653 | |a Water Chemistry | ||
653 | |a Keramik | ||
653 | |a Biotechnologie | ||
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Datensatz im Suchindex
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adam_text |
CONTENTS
PREFACE
XIII
FOREWORD
XV
1
INTRODUCTION
TO
CERAMIC
MATERIALS
1
LAURA
TRECCANI
1.1
INTRODUCTION:
CERAMICS
FOR
BIOTECHNOLOGICAL
AND
ENVIRONMENTAL
APPLICATIONS
1
1.2
1.2.1
1.2.2
1.3
1.3.1
1.3.1.1
1.3.1.2
1.3.2
1.3.2.1
1.3.2.2
1.3.3
1.3.3.1
1.3.3.2
1.3.4
1.3.4.1
1.3.4.2
1.3.5
1.3.6
1.4
1.4.1
1.4.2
1.5
1.6
WHAT
ARE
CERAMIC
MATERIALS?
4
ADVANCED
AND
TRADITIONAL
CERAMICS
4
PROPERTIES
OF
ADVANCED
CERAMICS
6
OXIDE
CERAMICS
7
ALUMINA
7
ALUMINA
STRUCTURE
AND
PROPERTIES
8
APPLICATIONS
OF
ALUMINA:
SOME
EXAMPLES
10
TITANIA
12
TITANIA
STRUCTURE
AND
PROPERTIES
12
APPLICATIONS
OF
TITANIA:
SOME
EXAMPLES
14
ZIRCONIA
16
ZIRCONIA
STRUCTURE
AND
PROPERTIES
17
APPLICATIONS
OF
ZIRCONIA:
SOME
EXAMPLES
18
SILICA
20
PROPERTIES
OF
SILICA
20
APPLICATION
OF
SILICA:
SOME
EXAMPLES
23
IRON
OXIDE
26
BARIUM
TITANATE
26
NONOXIDE
CERAMICS
28
NITRIDES
29
CARBIDES
29
CARBON-BASED
MATERIALS
30
CONCLUSIONS
32
REFERENCES
33
VIII
CONTENTS
2
PROCESSING
METHODS
FOR
ADVANCED
CERAMICS
47
LAURA
TRECCANI
2.1
2.2
2.3
2.3.1
2.3.2
2.3.2.1
2.3.2.2
2.3.3
2.3.3.1
2.3.3.2
2.3.3.3
2.3.3.4
2.3.3.5
2.4
2.5
INTRODUCTION
47
POWDER
SYNTHESIS
AND
PREPARATION
51
SHAPING
METHODS
53
PRESSING
53
PLASTIC
FORMING
54
EXTRUSION
54
INJECTION
MOLDING
56
COLLOIDAL
SHAPING
56
SLIP
CASTING
57
GEL-CASTING
59
FREEZE-CASTING
61
SOL-GEL
PROCESS
65
TAPE
CASTING
68
ADDITIVE
MANUFACTURING
69
CONCLUSIONS
75
REFERENCES
75
3
SURFACE
MODIFICATION
OF
CERAMIC
MATERIALS
85
STEPHEN
KROLL
3.1
3.2
3.2.1
3.2.2
3.2.3
3.3
3.3.1
3.3.2
3.4
INTRODUCTION
85
CHEMICAL
ACTIVATION
STRATEGIES
FOR
INERT
CERAMIC
SURFACES
87
WET
CHEMICAL
HYDROXYLATION:
ACIDIC
VS.
BASIC
HYDROXYLATION
88
HYDROTHERMAL
ACTIVATION
90
OXYGEN
PLASMA
TREATMENT
90
DERIVATIZATION
STRATEGIES
BY
WET
CHEMISTRY
FUNCTIONALIZATION
92
WET
CHEMICAL
SILANIZATION
93
WET
CHEMICAL
NONSILANE
FUNCTIONALIZATION
97
CERAMIC
SURFACE
DECORATION
FOR
BIOTECHNOLOGICAL
AND
ENVIRONMENTAL
APPLICATIONS
99
3.4.1
3.4.2
3.5
BIOTECHNOLOGICAL
APPLICATIONS
100
ENVIRONMENTAL
APPLICATIONS
102
SUMMARY
AND
OUTLOOK
104
REFERENCES
105
4
ATOMIC
FORCE
MICROSCOPY
FOR
IMAGING
AND
CHEMICAL
ANALYSIS
OF
CERAMIC
SURFACES
119
HANNES
C.
SCHNIEPP
AND
LAURA
TRECCANI
4.1
4.2
4.2.1
4.3
4.4
INTRODUCTION
119
THE
BASIC
AFM
MODES
OF
OPERATION
121
IMAGING
MODES
122
DRY
AFM
VS.
LIQUID-CELL
AFM
127
TECHNICAL
DETAILS
ABOUT
THE
AFM
IMAGING
PROCESS
128
CONTENTS
IX
4.4.1
4.4.2
4.4.3
4.4.4
4.4.5
4.4.6
4.5
4.5.1
PROPERTIES
OF
PIEZO
TRANSDUCERS
AND
THE
SCANNING
PROCESS
128
PROPERTIES
OF
THE
FEEDBACK
LOOPS
AND
RESULTING
SIGNALS
130
MECHANICAL
STABILITY
AND
TIP
SIZE
EFFECTS
130
IMAGE
PROCESSING,
ANALYSIS
AND
INTERPRETATION
131
SECONDARY
CONTRASTING
TECHNIQUES
132
SUITABILITY
OF
SAMPLES
AND
SAMPLE
PREPARATION
133
APPLICATION OF
AFM
FOR
BIOTECHNOLOGICAL
AND
ENVIRONMENTAL
PURPOSES
134
TESTING
THE
SURFACE
CHARGES
AND
SURFACE
CHEMISTRY
OF
FUNCTIONALISED
CERAMICS
SURFACES
135
4.5.2
4.5.3
4.6
AFM
FOR
ENVIRONMENTAL
APPLICATIONS
138
AFM
BIOFILM
FORMATION
-
MICROBIOLOGY
142
CONCLUSIONS
147
REFERENCES
147
5
SURFACE
CHEMICAL
ANALYSIS
OF
CERAMICS
AND
CERAMIC-ENHANCED
ANALYTICS
159
IVANO
ALESSANDRI
5.1
5.2
5.2.1
5.2.2
5.2.3
5.2.4
5.2.5
5.2.6
5.3
INTRODUCTION
159
METHODS
FOR
SURFACE
CHEMICAL
ANALYSIS
OF
CERAMICS:
AN
OVERVIEW
160
ELECTRON
SPECTROSCOPY
(PES,
AUGER)
160
X-RAY
AND
UV
PHOTOELECTRON
SPECTROSCOPY
(XPS
AND
UPS)
161
AUGER
SPECTROSCOPY
162
SURFACE
CHEMICAL
ANALYSIS
WITH
XPS
AND
AUGER
SPECTROSCOPY
163
SECONDARY
ION
MASS
SPECTROMETRY
(SIMS)
165
RAMAN
AND
INFRARED
SPECTROSCOPY
166
USING
CERAMIC
COLLOIDS
AND
NANOMATERIALS
FOR
ADVANCED
SURFACE
CHEMICAL
ANALYSIS
169
5.3.1
PLAYING
WITH
LIGHT
CONFINEMENT,
MORPHOLOGY-DEPENDENT
RESONANCES
AND
EVANESCENT
FIELDS:
OPPORTUNITIES
FOR
OPTICAL
SENSING
AND
VIBRATIONAL
SPECTROSCOPY
169
5.3.2
5.3.3
5.3.3.1
5.3.3.2
5.3.3.3
5.3.4
5.4
SURFACE
SENSING
BY
WHISPERING
GALLERY
MODES
171
APPLICATIONS
IN
RAMAN
MICROSPECTROSCOPY
173
MICROLENSES
FOR
RAMAN
MICROSPECTROSCOPY
173
SIO
2
/TIO
2
AND
HOLLOW-SHELL
TITANIA
RESONATORS:
PLASMON-FREE
SERS
175
PROBING
SURFACE
CHEMICAL
REACTIONS
IN
METAL/CERAMIC
COMPOSITES
179
CERAMICS
FOR
MATRIX-ASSISTED
LASER
DESORPTION
MASS
SPECTROMETRY
180
CONCLUDING
REMARKS
AND
OUTLOOK
182
REFERENCES
182
6
METHODS
FOR
ELECTROKINETIC
SURFACE
CHARACTERISTICS
193
ZBIGNIEW
ADAMCZYK,
MONIKA
WASILEWSKA,
AND
MARIA
MORGA
6.1
6.2
6.3
INTRODUCTION
193
THE
ELECTRIC
DOUBLE-LAYER
194
ELECTROKINETIC
PHENOMENA-THEORY
200
CONTENTS
6.3.1
6.3.2
6.3.3
6.4
6.4.1
6.4.2
6.4.3
6.4.4
6.4.5
6.4.6
6.4.7
6.4.8
6.5
ELECTROPHORESIS
201
STREAMING
CURRENT-STREAMING
POTENTIAL
205
PARTICLE
COVERED
SURFACES
209
EXPERIMENTAL
EVIDENCES,
APPLICATIONS
212
ELECTROPHORETIC
CHARACTERISTICS OF
SURFACES
212
NANO
AND
MICROPARTICLE
SUSPENSIONS
212
PROTEIN
COVERED
PARTICLES
219
STREAMING
CURRENT/STREAMING
POTENTIAL
CHARACTERISTICS
OF
SURFACES
224
BARE
SUBSTRATES
225
POLYELECTROLYTE
MODIFIED
SURFACES
229
PARTICLE
COVERED
SURFACES
234
PROTEIN
COVERED
SURFACES
245
CONCLUDING
REMARKS
250
ACKNOWLEDGMENTS
251
REFERENCES
251
7
FUNCTIONALIZED
SURFACES
AND
INTERACTIONS
WITH
BIOMOLECULES
259
FABIAN
MEDER
AND
LAURA
TRECCANI
7.1
7.2
INTRODUCTION
259
FUNDAMENTALS
OF
BIOMOLECULE
INTERACTIONS
WITH
FUNCTIONALIZED
MATERIAL
SURFACES
261
7.2.1
7.2.1.1
7.2.1.2
7.2.1.3
7.2.1.4
7.2.1.5
7.2.1.6
7.2.1.7
7.2.1.8
7.2.2
FORCES
BETWEEN
BIOMOLECULES
AND
FUNCTIONALIZED
SURFACES
261
VAN
DER
WAALS
FORCES
261
ELECTROSTATIC
INTERACTION
FORCES
262
HYDROGEN
BONDS
263
HYDRATION
AND
HYDROPHOBIC
INTERACTION
FORCES
264
STERIC
INTERACTION
FORCES
264
SPECIFIC
INTERACTION
FORCES
264
NONEQUILIBRIUM
INTERACTION
FORCES
265
OTHER
FORCES
265
WHICH
BIOMOLECULE,
MEDIA,
AND
MATERIAL
PROPERTIES
INFLUENCE
BIOMOLECULE-MATERIAL
INTERACTIONS?
265
7.2.2.1
7.2.2.2
7.2.2.3
7.2.3
7.3
MATERIAL
PROPERTIES
INFLUENCING
BIOMOLECULE-MATERIAL
INTERACTIONS
265
BIOMOLECULE
PROPERTIES
INFLUENCING
BIOMOLECULE-MATERIAL
INTERACTIONS
266
MEDIA
PROPERTIES
INFLUENCING
BIOMOLECULE-MATERIAL
INTERACTIONS
266
EVENTS
OCCURRING
AFTER
ADSORPTION
267
INFLUENCE
OF
SURFACE
FUNCTIONALITY,
MULTIFUNCTIONALITY,
AND
HETEROGENEOUS
SURFACE
CHEMISTRY
268
7.3.1
7.3.2
7.3.3
7.3.4
7.4
CHARGED
AND
ZWITTERIONIC
GROUPS
268
POLYMERIC
SURFACE
FUNCTIONALIZATION
271
MULTIFUNCTIONALITY
AND
HETEROGENEITY
273
SPECIFIC-BINDING
SURFACE
CHEMISTRIES
275
CONCLUSIONS
AND
OUTLOOK
276
ACKNOWLEDGMENTS
276
REFERENCES
276
CONTENTS
XI
8
INTERACTIONS
BETWEEN
SURFACE
MATERIAL
AND
BACTERIA:
FROM
BIOFILM
FORMATION
TO
SUPPRESSION
283
LAURA
TRECCANI
8.1
8.2
8.3
8.3.1
8.3.2
8.3.3
8.4
8.5
8.5.1
8.5.2
8.6
8.6.1
8.7
INTRODUCTION
283
BIOFILM
FORMATION
284
THEORETICAL
MODELS
OF
BACTERIA-SURFACE
INTERACTIONS
289
THE
THERMODYNAMIC
THEORY
289
DLVO
MODEL
292
EXTENDED
DLVO-THEORY
294
DETRIMENTAL
EFFECTS
OF
BIOFILMS:
SOME
EXAMPLES
295
PREVENTION
OF
BIOFILM
FORMATION
299
STIMULI
RESPONSIVE
COATINGS
306
DRUG
RELEASE
ANTIBACTERIAL
MATERIALS
309
CHARACTERIZATION
OF
ANTIMICROBIAL
MATERIALS
AND
COATINGS
311
STANDARDS
FOR
BIOFILM
GROWTH
AND
ANALYSIS
316
CONCLUSIONS
AND
OUTLOOK
324
REFERENCES
324
9
CARBON
NANOMATERIALS
FOR
ANTIBACTERIAL
APPLICATIONS
337
MICHAEL
MAAS
AND
JULIA
WEHLING
9.1
9.1.1
9.1.2
9.1.3
9.1.4
9.2
9.2.1
9.2.2
9.2.3
9.2.4
9.2.5
9.3
INTRODUCTION
337
IMPORTANT
MATERIAL
PROPERTIES
THAT
GOVERN
ANTIBACTERIAL
ACTIVITY
339
EFFECT
OF
NANOMATERIAL
SIZE
ON
BACTERIAL
VIABILITY
339
EFFECT
OF
NANOMATERIAL
SURFACE
FUNCTIONALITIES
ON
CELLULAR
VIABILITY
340
PROPOSED
MECHANISMS
FOR
ANTIBACTERIAL
ACTIVITY
341
INHERENT
ANTIBACTERIAL
PROPERTIES
OF
CARBON
NANOMATERIALS
341
GRAPHENE
343
CARBON
NANOTUBES
346
FULLERENES
348
NANODIAMONDS
350
DIAMOND-LIKE
CARBON,
DIAMOND
THIN
FILMS
351
FUNCTIONALIZATION
OF
CARBON
NANOMATERIALS
FOR
TAILORING
ANTIBACTERIAL
PROPERTIES
353
9.3.1
9.3.2
9.3.3
9.3.4
9.3.5
9.4
GRAPHENE
353
CARBON
NANOTUBES
354
FULLERENES
354
NANODIAMONDS
355
DIAMOND-LIKE
CARBON,
DIAMOND
THIN
FILMS
355
SUMMARY
AND
OUTLOOK
356
REFERENCES
357
10
MESOPOROUS
SILICA
AND
ORGANOSILICA
BIOSENSORS
FOR
WATER QUALITY
AND
ENVIRONMENTAL
MONITORING
369
MADHAPPAN
S.
MOORTHY,
SARAVANAN
NAGAPPAN,
AND
CHANG-SIK
HA
10.1
10.2
INTRODUCTION
369
MESOPOROUS
SILICA
MATERIALS
FOR
BIOSENSOR
DEVELOPMENT
370
XII
CONTENTS
INDEX
439
10.3
FUNCTIONALIZATION
OF
MESOPOROUS
SILICA
AND
ORGANOSILICA-BASED
BIOSENSORS
373
10.3.1
10.3.2
SURFACE
FUNCTIONALIZATION
373
IMMOBILIZATION OF
ENZYMES
ON
SILICA-BASED
MESOPOROUS
MATERIALS
FOR
BIOSENSORS
375
10.3.3
10.4
10.4.1
10.4.2
ELECTROCHEMICAL
BIOSENSOR
379
APPLICATIONS
OF
MESOPOROUS
SILICA
AND
ORGANOSILICA-BASED
BIOSENSORS
381
GLUCOSE
SENSING
381
HEMOGLOBIN
AND
MYOGLOBIN
SENSING
USING
MOLECULARLY
IMPRINTED
POLYMERS
382
10.4.3
10.4.4
10.4.5
10.5
MESOPOROUS
SILICA-BASED
BIOSENSORS
FOR
WATER
QUALITY
MONITORING
384
MESOPOROUS
SILICA
AND
ORGANOSILICA-BASED
MATERIALS
FOR
TOXIC
GAS
SENSING
386
MESOPOROUS
SILICA
AND
ORGANOSILICA-BASED
IMMUNOSENSORS
389
CONCLUSIONS
AND
OUTLOOK
392
ACKNOWLEDGMENTS
392
ABBREVIATIONS
393
REFERENCES
394
11
CERAMIC-BASED
ADSORBENTS
IN
BIOPRODUCT
RECOVERY
AND
PURIFICATION
407
MARCELO
FERNANDEZ-LAHORE,
VIKAS
YELEMANE,
TUHIDUL
ISLAM,
AND
MARIA
LAURA
CARBAJAL
11.1
11.2
11.3
11.3.1
11.3.2
11.3.3
11.4
11.4.1
11.4.2
11.5
11.6
11.6.1
11.6.2
11.6.3
11.7
INTRODUCTION
407
CHROMATOGRAPHY
AND
CHROMATOGRAPHY
SUPPORT
409
FUNCTIONALIZATION
OF
CERAMIC-BASED
ADSORBENTS
412
CHEMOBIOLOGICAL
FUNCTIONALIZATION
412
SELF-ASSEMBLED
SYSTEMS
414
COMPOSITE
STRUCTURES
415
CHARACTERIZATION
OF
CERAMIC
ADSORBENT
PARTICLES
416
PHYSICOCHEMICAL
ANALYSIS
416
SURFACE
ENERGETICS
417
FUNDAMENTALS
OF
BIOPRODUCT
ADSORPTION
ONTO
CERAMIC
BEADS
418
APPLICATION
OF
CERAMIC-BASED
ADSORBENTS
419
GENERAL
CHROMATOGRAPHY
419
FACILITATED
PROTEIN
PURIFICATION
424
INTEGRATED
DOWNSTREAM
BIOPROCESSING
424
CONCLUSIONS
AND
OUTLOOK
426
REFERENCES
426 |
any_adam_object | 1 |
author2 | Treccani, Laura Meder, Fabian 1984- |
author2_role | edt edt |
author2_variant | l t lt f m fm |
author_GND | (DE-588)128695570X (DE-588)104491355X |
author_facet | Treccani, Laura Meder, Fabian 1984- |
building | Verbundindex |
bvnumber | BV049940671 |
classification_rvk | UQ 8500 |
ctrlnum | (DE-599)DNB1262170494 |
dewey-full | 660.630284 681.75 666.04 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 660 - Chemical engineering 681 - Precision instruments and other devices 666 - Ceramic & allied technologies |
dewey-raw | 660.630284 681.75 666.04 |
dewey-search | 660.630284 681.75 666.04 |
dewey-sort | 3660.630284 |
dewey-tens | 660 - Chemical engineering 680 - Manufacture of products for specific uses |
discipline | Chemie / Pharmazie Physik Handwerk und Gewerbe / Verschiedene Technologien |
format | Book |
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id | DE-604.BV049940671 |
illustrated | Illustrated |
indexdate | 2024-11-28T11:00:47Z |
institution | BVB |
institution_GND | (DE-588)16179388-5 |
isbn | 9783527338351 3527338357 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-035278903 |
open_access_boolean | |
owner | DE-703 |
owner_facet | DE-703 |
physical | xv, 447 Seiten Illustrationen, Diagramme 25 cm, 1070 g |
publishDate | 2023 |
publishDateSearch | 2023 |
publishDateSort | 2023 |
publisher | WILEY-VCH |
record_format | marc |
spelling | Surface-functionalized ceramics for biotechnological and environmental applications edited by Laura Treccani and Fabian Meder Weinheim, Germany WILEY-VCH [2023] © 2023 xv, 447 Seiten Illustrationen, Diagramme 25 cm, 1070 g txt rdacontent n rdamedia nc rdacarrier Chromatographie (DE-588)4010153-8 gnd rswk-swf Chemischer Sensor (DE-588)4259288-4 gnd rswk-swf Funktionalisierung Chemie (DE-588)4279323-3 gnd rswk-swf Oberflächenanalyse (DE-588)4172243-7 gnd rswk-swf Umwelttechnik (DE-588)4061650-2 gnd rswk-swf Adsorbens (DE-588)4141454-8 gnd rswk-swf Biotechnologie (DE-588)4069491-4 gnd rswk-swf Trägersubstanz (DE-588)4131813-4 gnd rswk-swf Oberfläche (DE-588)4042907-6 gnd rswk-swf Biosensor (DE-588)4193016-2 gnd rswk-swf Keramischer Werkstoff (DE-588)4030282-9 gnd rswk-swf Biotechnologie i. d. Biowissenschaften Biotechnologie i. d. Chemie Biotechnology Biowissenschaften Ceramics Chemie Chemistry Keramische Werkstoffe Life Sciences Materials Science Materialwissenschaften CH31: Biotechnologie i. d. Chemie LS35: Biotechnologie i. d. Biowissenschaften MS20: Keramische Werkstoffe Wasserchemie Keramik (Techn.) CH22: Wasserchemie Water Chemistry Keramik Biotechnologie Keramischer Werkstoff (DE-588)4030282-9 s Oberfläche (DE-588)4042907-6 s Funktionalisierung Chemie (DE-588)4279323-3 s Oberflächenanalyse (DE-588)4172243-7 s DE-604 Chemischer Sensor (DE-588)4259288-4 s Biosensor (DE-588)4193016-2 s Adsorbens (DE-588)4141454-8 s Trägersubstanz (DE-588)4131813-4 s Chromatographie (DE-588)4010153-8 s Biotechnologie (DE-588)4069491-4 s Umwelttechnik (DE-588)4061650-2 s Treccani, Laura (DE-588)128695570X edt Meder, Fabian 1984- (DE-588)104491355X edt Wiley-VCH (DE-588)16179388-5 pbl Erscheint auch als Online-Ausgabe, PDF 978-3-527-69806-6 Erscheint auch als Online-Ausgabe, EPUB 978-3-527-69805-9 Erscheint auch als Online-Ausgabe 978-3-527-69804-2 X:MVB http://www.wiley-vch.de/publish/dt/books/ISBN978-3-527-33835-1/ B:DE-101 application/pdf https://d-nb.info/1262170494/04 Inhaltsverzeichnis DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=035278903&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p dnb 20240409 DE-101 https://d-nb.info/provenance/plan#dnb 2\p dnb 20240409 DE-101 https://d-nb.info/provenance/plan#dnb |
spellingShingle | Surface-functionalized ceramics for biotechnological and environmental applications Chromatographie (DE-588)4010153-8 gnd Chemischer Sensor (DE-588)4259288-4 gnd Funktionalisierung Chemie (DE-588)4279323-3 gnd Oberflächenanalyse (DE-588)4172243-7 gnd Umwelttechnik (DE-588)4061650-2 gnd Adsorbens (DE-588)4141454-8 gnd Biotechnologie (DE-588)4069491-4 gnd Trägersubstanz (DE-588)4131813-4 gnd Oberfläche (DE-588)4042907-6 gnd Biosensor (DE-588)4193016-2 gnd Keramischer Werkstoff (DE-588)4030282-9 gnd |
subject_GND | (DE-588)4010153-8 (DE-588)4259288-4 (DE-588)4279323-3 (DE-588)4172243-7 (DE-588)4061650-2 (DE-588)4141454-8 (DE-588)4069491-4 (DE-588)4131813-4 (DE-588)4042907-6 (DE-588)4193016-2 (DE-588)4030282-9 |
title | Surface-functionalized ceramics for biotechnological and environmental applications |
title_auth | Surface-functionalized ceramics for biotechnological and environmental applications |
title_exact_search | Surface-functionalized ceramics for biotechnological and environmental applications |
title_full | Surface-functionalized ceramics for biotechnological and environmental applications edited by Laura Treccani and Fabian Meder |
title_fullStr | Surface-functionalized ceramics for biotechnological and environmental applications edited by Laura Treccani and Fabian Meder |
title_full_unstemmed | Surface-functionalized ceramics for biotechnological and environmental applications edited by Laura Treccani and Fabian Meder |
title_short | Surface-functionalized ceramics |
title_sort | surface functionalized ceramics for biotechnological and environmental applications |
title_sub | for biotechnological and environmental applications |
topic | Chromatographie (DE-588)4010153-8 gnd Chemischer Sensor (DE-588)4259288-4 gnd Funktionalisierung Chemie (DE-588)4279323-3 gnd Oberflächenanalyse (DE-588)4172243-7 gnd Umwelttechnik (DE-588)4061650-2 gnd Adsorbens (DE-588)4141454-8 gnd Biotechnologie (DE-588)4069491-4 gnd Trägersubstanz (DE-588)4131813-4 gnd Oberfläche (DE-588)4042907-6 gnd Biosensor (DE-588)4193016-2 gnd Keramischer Werkstoff (DE-588)4030282-9 gnd |
topic_facet | Chromatographie Chemischer Sensor Funktionalisierung Chemie Oberflächenanalyse Umwelttechnik Adsorbens Biotechnologie Trägersubstanz Oberfläche Biosensor Keramischer Werkstoff |
url | http://www.wiley-vch.de/publish/dt/books/ISBN978-3-527-33835-1/ https://d-nb.info/1262170494/04 http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=035278903&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT treccanilaura surfacefunctionalizedceramicsforbiotechnologicalandenvironmentalapplications AT mederfabian surfacefunctionalizedceramicsforbiotechnologicalandenvironmentalapplications AT wileyvch surfacefunctionalizedceramicsforbiotechnologicalandenvironmentalapplications |
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