Electrospinning: fundamentals, methods, and applications
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Weinheim
Wiley-VCH
[2024]
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Schlagworte: | |
Online-Zugang: | http://www.wiley-vch.de/publish/dt/books/ISBN978-3-527-35197-8/ Inhaltsverzeichnis |
Beschreibung: | xvi, 352 Seiten Illustrationen 24.4 cm x 17 cm |
ISBN: | 9783527351978 3527351973 |
Internformat
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005 | 20240416 | ||
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008 | 240304s2024 gw a||| |||| 00||| eng d | ||
015 | |a 23,N15 |2 dnb | ||
016 | 7 | |a 1285610350 |2 DE-101 | |
020 | |a 9783527351978 |c : circa EUR 159.00 (DE) (freier Preis), circa EUR 163.50 (AT) (freier Preis) |9 978-3-527-35197-8 | ||
020 | |a 3527351973 |9 3-527-35197-3 | ||
035 | |a (OCoLC)1429559495 | ||
035 | |a (DE-599)DNB1285610350 | ||
040 | |a DE-604 |b ger | ||
041 | 0 | |a eng | |
044 | |a gw |c XA-DE-BW | ||
049 | |a DE-898 |a DE-29T |a DE-862 | ||
084 | |a ZN 3700 |0 (DE-625)157333: |2 rvk | ||
084 | |8 1\p |a 540 |2 23sdnb | ||
245 | 1 | 0 | |a Electrospinning |b fundamentals, methods, and applications |c edited by Liming Wang and Xiaohong Qin |
264 | 1 | |a Weinheim |b Wiley-VCH |c [2024] | |
300 | |a xvi, 352 Seiten |b Illustrationen |c 24.4 cm x 17 cm | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
653 | |a Components & Devices | ||
653 | |a Electrical & Electronics Engineering | ||
653 | |a Elektrospinnen | ||
653 | |a Elektrotechnik u. Elektronik | ||
653 | |a Komponenten u. Bauelemente | ||
653 | |a Materials Processing | ||
653 | |a Materials Science | ||
653 | |a Materialverarbeitung | ||
653 | |a Materialwissenschaften | ||
653 | |a Polymer Science & Technology | ||
653 | |a Polymer Synthesis | ||
653 | |a Polymersynthese | ||
653 | |a Polymerwissenschaft u. -technologie | ||
653 | |a EE60: Komponenten u. Bauelemente | ||
653 | |a MSE0: Materialverarbeitung | ||
653 | |a PY30: Polymersynthese | ||
700 | 1 | |a Wang, Liming |d 1960- |4 edt | |
700 | 1 | |a Qin, Xiaohong |4 edt | |
710 | 2 | |a Wiley-VCH |0 (DE-588)16179388-5 |4 pbl | |
776 | 0 | 8 | |i Erscheint auch als |n Online-Ausgabe, PDF |z 978-3-527-84145-5 |
776 | 0 | 8 | |i Erscheint auch als |n Online-Ausgabe, EPUB |z 978-3-527-84146-2 |
776 | 0 | 8 | |i Erscheint auch als |n Online-Ausgabe, oBook |z 978-3-527-84147-9 |
856 | 4 | 2 | |m X:MVB |u http://www.wiley-vch.de/publish/dt/books/ISBN978-3-527-35197-8/ |
856 | 4 | 2 | |m DNB Datenaustausch |q application/pdf |u http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=034938894&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |3 Inhaltsverzeichnis |
883 | 1 | |8 1\p |a vlb |d 20230406 |q DE-101 |u https://d-nb.info/provenance/plan#vlb | |
943 | 1 | |a oai:aleph.bib-bvb.de:BVB01-034938894 |
Datensatz im Suchindex
_version_ | 1812671861852471296 |
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adam_text |
CONTENTS
PREFACE
XV
1
ELECTROSPINNING
THEORY
1
LIANG
WEI
1.1
1.1.1
1.1.2
1.1.3
1.2
1.3
1.3.1
1.3.2
NANOTECHNOLOGY
AND
NANOFIBERS
1
DEVELOPMENT
HISTORY
OF
NANOTECHNOLOGY
1
INTRODUCTION
TO
NANOFIBERS
2
MAIN
CHARACTERISTICS
OF
NANOFIBERS
3
RESEARCH
HISTORY
OF
ELECTROSPINNING
3
DEVELOPMENT
PROSPECT
OF
ELECTROSPINNING
10
APPLICATION
OF
ELECTROSTATIC
SPINNING
TECHNOLOGY
10
DEVELOPMENT
DIRECTION
OF
ELECTROSPINNING
TECHNOLOGY
12
REFERENCES
12
2
REGULATION
OF
ELECTROSPUN
FIBER
STRUCTURE
15
JIATAI
GU
AND
LIMING
WANG
2.1
2.2
2.2.1
2.2.2
2.2.3
2.2.4
2.3
2.3.1
2.3.2
2.3.3
2.3.4
2.4
2.5
2.6
INTRODUCTION
15
SOLUTION
PROPERTIES
15
CONCENTRATION
OF
POLYMER
SOLUTION
16
MOLECULAR
WEIGHT
16
SOLUTION
CONDUCTIVITY
17
SOLVENT
18
SPINNING
PARAMETERS
19
VOLTAGE
19
SPINNING
DISTANCE
20
FLOW
RATE
20
TEMPERATURE
AND
HUMIDITY
21
NOZZLES
22
COLLECTORS
23
CONCLUSIONS
24
REFERENCES
25
VI
CONTENTS
3
MASS
PRODUCTION
OF
ELECTROSPUN
NANOFIBERS
29
XIAN
WEN
AND
LIMING
WANG
3.1
3.2
3.3
3.4
3.4.1
3.4.2
3.4.3
3.5
3.6
3.7
INTRODUCTION
29
MULTIPLE-NEEDLE
ELECTROSPINNING
30
MULTIPLE-HOLE
ELECTROSPINNING
31
FREE-SURFACE
ELECTROSPINNING
32
STATIC
ELECTRODE
FREE-SURFACE
ELECTROSPINNING
32
ROTATING
ELECTRODE
FREE-SURFACE
ELECTROSPINNING
34
SLIT-SURFACE
ELECTROSPINNING
35
MELT
ELECTROSPINNING
36
MULTIFIELD-ASSISTED
ELECTROSPINNING
38
FUTURE
AND
PROSPECTS
38
REFERENCES
39
4
MANUFACTURING
AND
APPLICATION
OF
ELECTROSPINNING
NANOFIBER
YARN
45
AILIN
LI,
LIMING
WANG,
AND
XIAOHONG
QIN
4.1
4.2
4.2.1
4.2.1.1
4.2.1.2
4.2.1.3
INTRODUCTION
45
ELECTROSPUN
PURE
NANOFIBER
YARNS
46
PROCESSING
OF
ELECTROSPUN
PURE
NANOFIBER
YARNS
46
PURE
NANOFIBER
YARN
BUNDLING
BY
PARALLEL
COLLECTOR
46
PURE
NANOFIBER
YARN-PRODUCING
METHODS
BY
ROTATING
COLLECTORS
47
PURE
NANOFIBER
YARN
PRODUCING
METHODS
BY
WATER
BATH
COLLECTING
SYSTEM
48
4.2.1.4
4.2.1.5
4.2.1.6
4.2.2
4.2.2.1
4.2.2.2
4.2.2.3
4.3
4.3.1
4.3.1.1
4.3.1.2
PURE
NANOFIBER
YARN
BY
ELECTRIC
FIELD-ASSISTED
SYSTEM
49
TWISTED
NANOFIBER
YARN
BY
CONJUGATE
ELECTROSPINNING
METHOD
52
TWISTED
NANOFIBER
YARN
BY
AIRFLOW
SYSTEM
54
APPLICATION
OF
ELECTROSPUN
PURE
NANOFIBER
YARNS
54
PURE
NANOFIBER
YARNS
IN
FUNCTIONAL
TEXTILES
55
PURE
NANOFIBER
YARNS
IN
BIOMEDICAL
ENGINEERING
56
PURE
NANOFIBER
YARNS
IN
OTHER
FIELDS
57
ELECTROSPUN
CORE-SPUN
YARNS
57
PROCESSING
OF
ELECTROSPUN
CORE-SPUN
YARNS
57
SINGLE-NEEDLE
ELECTROSPUN
CORE-SPUN
YARN-PRODUCING
SYSTEM
57
CONJUGATE
ELECTROSPUN
CORE-SPUN
NANOFIBER
YARN-PRODUCING
SYSTEM
58
4.3.2
4.3.2.1
4.3.2.2
4.3.2.3
4.3.2.4
4.4
4.4.1
4.4.2
4.5
APPLICATION
OF
ELECTROSPUN
CORE-SPUN
YARNS
60
ELECTROSPUN
CORE-SPUN
YARNS
IN
THE
BIOMEDICAL
ENGINEERING
FIELD
60
ELECTROSPUN
CORE-SPUN
YARNS
IN
THE
WEARABLE
ELECTRONICS
60
ELECTROSPUN
CORE-SPUN
YARNS
IN
THE
FUNCTIONAL
TEXTILES
61
ELECTROSPUN
CORE-SPUN
YARNS
IN
GAS
SENSORS
61
MICRO-/NANOFIBER
COMPOSITE
YARNS
62
PROCESSING
OF
MICRO-/NANOFIBER
COMPOSITE
YARNS
62
APPLICATION
OF
MICRO-/NANOFIBER
COMPOSITE
YARNS
64
CONCLUSIONS
AND
FUTURE
PERSPECTIVES
64
REFERENCES
65
CONTENTS
VII
5
APPLICATION
OF
ELECTROSPINNING
IN
AIR
FILTRATION
71
YUNPU
LIU
AND
XIAOHONG
QIN
5.1
5.2
INTRODUCTION
71
CHARACTERIZATION
OF
FILTRATION
EFFECT
OF
ELECTROSPUN
NANOFIBROUS
MEMBRANES
73
5.2.1
5.2.2
5.2.3
5.2.4
5.3
5.3.1
5.3.2
5.4
5.4.1
5.4.1.1
5.4.1.2
5.4.1.3
5.4.1.4
5.4.2
5.4.2.1
5.4.2.2
5.4.2.3
5.4.2.4
5.4.2.5
5.5
5.5.1
5.5.2
5.5.3
5.5.4
FILTRATION
EFFICIENCY
73
PRESSURE
DROP
74
QUALITY
FACTOR
74
DUST
HOLDING
CAPACITY
75
FILTRATION
MECHANISM
OF
ELECTROSPUN
NANOFIBROUS
MEMBRANES
75
SINGLE-FIBER
FILTRATION
MECHANISM
75
FIBROUS
MEMBRANE
FILTRATION
MECHANISM
77
ELECTROSPUN
NANOFIBROUS
MEMBRANES
FOR
AIR
FILTRATION
77
FIBER-MORPHOLOGY-BASED
MEMBRANES
78
BEADED
FIBERS
78
ROUGH
SURFACE
FIBERS
80
POROUS
FIBERS
82
CURLY
FIBERS
83
STRUCTURE-BASED
MEMBRANES
84
BIMODAL
STRUCTURE
84
BONDING
STRUCTURE
86
NANO-SPIDER
WEB
STRUCTURE
87
GRADIENT
STRUCTURE
87
MULTILAYER
COMPOSITE
STRUCTURE
90
FUNCTIONAL
NANOFIBROUS
MEMBRANES
FOR
FILTRATION
95
HEAT-RESISTING
MEMBRANES
95
HARMFUL
GAS
ADSORBING
MEMBRANES
97
ANTIMICROBIAL
MEMBRANES
98
HIGH
HUMIDITY
AND
GREASY
SMOKE
ENVIRONMENT-RESISTANT
MEMBRANES
99
5.5.5
5.6
BIODEGRADABLE
MEMBRANES
100
SUMMARY
AND
PROSPECT
101
REFERENCES
102
6
ELECTROSPUN
NANOFIBERS
FOR
SEPARATION
APPLICATIONS
IN
OIL-WATER
SYSTEMS
109
CHENGDONG
XIONG
AND
RONGWU
WANG
6.1
6.2
6.2.1
6.2.2
6.3
6.3.1
6.3.2
INTRODUCTION
109
CURRENT
SITUATION
OF
OILY
WASTEWATER
109
SOURCE
OF
OILY
WASTEWATER
AND
ITS
HAZARDS
110
TREATMENT
METHODS
FOR
OILY
WASTEWATER
112
ELECTROSPUN
NANOFIBROUS
MEMBRANES
FOR
OIL-WATER
SEPARATION
114
PREPARATION
TECHNOLOGY
OF
ELECTROSPUN
NANOFIBROUS
MEMBRANE
115
DESIGN
MECHANISM
OF
NANOFIBROUS
MEMBRANE
FOR
OIL-WATER
SEPARATION
116
6.3.2.1
OIL-WATER
SEPARATION
MEMBRANES
BASED
ON
DIFFERENT
PORE
SIZES
116
VIII
CONTENTS
6.3.2.2
6.3.3
6.3.3.1
6.3.3.2
6.4
OIL-WATER
SEPARATION
MEMBRANES
BASED
ON
DIFFERENT
WETTABILITY
119
OIL-WATER
SEPARATION
MODES
120
HYDROPHOBIC
AND
OLEOPHILIC
MEMBRANES
121
HYDROPHILIC
AND
OLEOPHOBIC
MEMBRANES
122
SUMMARY
AND
FUTURE
PERSPECTIVES
124
REFERENCES
126
7
ELECTROSPUN
NANOFIBER-BASED
EVAPORATORS
FOR
INTERFACIAL
SOLAR-DRIVEN
STEAM
GENERATION
135
HUIJIE
LIU
AND
XIAOHONG
QIN
7.1
7.2
7.3
INTRODUCTION
135
INTERFACIAL
SOLAR
STEAM
GENERATION
(ISSG)
SYSTEM
135
THE
PHOTOTHERMAL
CONVERSION
MATERIALS
AND
STEAM
GENERATION
EFFICIENCY
CALCULATION
136
7.3.1
7.3.2
7.3.2.1
7.3.2.2
7.3.2.3
7.4
7.4.1
7.4.2
7.5
7.5.1
7.5.2
7.5.3
7.6
PHOTOTHERMAL
MATERIALS
136
STEAM
GENERATION
EFFICIENCY
CALCULATION
137
EFFICIENT
SOLAR
ABSORPTION
137
EFFICIENT
LIGHT-TO-HEAT
CONVERSION
137
EFFICIENT
HEAT-TO-VAPOR
GENERATION
138
THE
PREPARATION
OF
THE
ELECTROSPUN
NANOFIBER-BASED
EVAPORATORS
138
TWO-DIMENSIONAL
(2D)
PHOTOTHERMAL
MEMBRANE
138
3D
ELECTROSPUN
NANOFIBER-BASED
EVAPORATORS
139
APPLICATIONS
141
DESALINATION
141
WASTEWATER
PURIFICATION
142
POWER
GENERATION
145
CONCLUSION
AND
FUTURE
PERSPECTIVE
146
REFERENCES
147
8
ELECTROSPINNING
WATERPROOF
AND
BREATHABLE
MEMBRANE
153
LU
ZHANG,
LEI
ZHANG,
AND
LI
LIU
8.1
8.2
8.2.1
8.2.1.1
8.2.1.2
8.2.2
8.2.2.1
INTRODUCTION
153
WATERPROOF
AND
BREATHABLE
THEORY
154
WATERPROOF
MECHANISM
154
WETTING
THEORY
154
PENETRATION
THEORY
155
BREATHABLE
MECHANISM
155
"
ADSORPTION-DIFFUSION-DESORPTION
"
MECHANISM
OF
POLYMER
HYDROPHILIC
GROUPS
155
8.2.2.2
8.3
8.3.1
8.3.2
8.4
8.4.1
MICROPORE
DIFFUSION
MECHANISM
156
CLASSIFICATION
OF
WATERPROOF
AND
BREATHABLE
MEMBRANES
156
HYDROPHILIC
NONPOROUS
MEMBRANE
156
HYDROPHOBIC
MICROPOROUS
MEMBRANE
158
METHODS
OF
FABRICATING
WATERPROOF
AND
BREATHABLE
MEMBRANE
159
BIAXIAL
STRETCHING
159
CONTENTS
IX
8.4.2
8.4.3
8.4.4
8.4.5
8.4.5.1
8.4.5.2
8.5
8.5.1
8.5.2
8.5.3
8.5.4
8.5.5
8.6
MELT
EXTRUSION
159
PHASE
SEPARATION
160
FLASH
METHOD
160
ELECTROSPINNING
160
DIRECT
SPINNING
161
POST-TREATMENT
MODIFICATION
161
APPLICATIONS
OF
WATERPROOF
AND
BREATHABLE
MEMBRANE
162
CLOTHING
162
CONSTRUCTION
164
HEALTHCARE
165
ELECTRONIC
AND
ELECTRICAL
166
OTHERS
167
SUMMARY
167
REFERENCES
167
9
PREPARATION
AND
APPLICATION
OF
ELECTROSPUN
NANOFIBERS
IN
HEAT
INSULATION
173
MANTANG
HE
AND
XIAOHONG
QIN
9.1
9.2
INTRODUCTION
173
HEAT
TRANSFER
MECHANISMS
IN
NANOFIBER-BASED
INSULATION
MATERIALS
174
9.2.1
9.2.2
9.2.3
9.2.4
9.3
9.4
9.4.1
9.4.2
9.4.3
9.4.4
9.4.5
9.5
HEAT
CONDUCTION
175
THERMAL
RADIATION
175
HEAT
CONVECTION
176
WATER
TRANSPORT
176
2D
ELECTROSPUN
NANOFIBROUS
MEMBRANE
FOR
HEAT
INSULATION
177
3D
ELECTROSPUN
NANOFIBER-BASED
AEROGELS
FOR
HEAT
INSULATION
178
NONDIRECTIONAL
FREEZE-DRYING
AEROGEL
179
DIRECTIONAL
FREEZE-DRYING
AEROGEL
181
INSULATION
FOR
BUILDINGS
AND
CONSTRUCTIONS
183
HIGH-TEMPERATURE-PROTECTIVE
CLOTHING
184
INSULATION
FOR
SKI
RESORTS
184
CONCLUSION
185
REFERENCES
185
10
RESEARCH
PROGRESS
ON
SOUND
ABSORPTION
OF
ELECTROSPUN
FIBROUS
MATERIALS
189
JINYU
HE
AND
XINXIN
LI
10.1
10.2
10.3
10.4
10.4.1
10.4.2
10.4.3
INTRODUCTION
189
MECHANISM
OF
SOUND
ABSORPTION
190
CLASSIFICATION
OF
SOUND-ABSORBING
MATERIALS
191
ELECTROSPUN
FIBROUS
MATERIALS
FOR
SOUND
ABSORPTION
194
ELECTROSPUN
NANOFIBROUS
MEMBRANE
FOR
SOUND
ABSORPTION
195
NANOCOMPOSITE
MATERIALS
FOR
SOUND
ABSORPTION
195
NANOFIBROUS
AEROGEL
FOR
SOUND
ABSORPTION
197
CONTENTS
10.5
10.6
EFFECT
OF
ELECTROSPINNING
PARAMETERS
ON
SOUND
ABSORPTION
197
FUTURE
DEVELOPMENT
OF
SOUND-ABSORBING
ELECTROSPUN
MATERIALS
198
REFERENCES
199
11
ELECTROSPUN
NANOFIBER-BASED
TRIBOELECTRIC
NANOGENERATOR
205
CHENTIAN
ZHANG
AND
XUEPING
ZHANG
11.1
11.2
11.2.1
11.2.2
11.2.2.1
11.2.2.2
11.2.2.3
11.2.2.4
11.3
11.3.1
11.3.2
11.3.2.1
11.3.2.2
11.3.2.3
11.3.3
11.3.3.1
11.3.3.2
11.4
11.4.1
11.4.1.1
11.4.1.2
11.4.2
11.4.2.1
11.4.2.2
11.4.2.3
11.4.3
11.5
INTRODUCTION
205
TRIBOELECTRIC
NANOGENERATOR
205
WORKING
MECHANISM
206
FOUR
FUNDAMENTAL
WORKING
MODES
206
VERTICAL
CONTACT-SEPARATION
MODE
206
LATERAL-SLIDING
MODE
207
SINGLE-ELECTRODE
MODE
207
FREESTANDING
TRIBOELECTRIC-LAYER
MODE
207
ELECTROSPUN
NANOFIBER-BASED
TENG
207
ENHANCEMENT
OF
THE
OUTPUT
PERFORMANCE
208
ENHANCEMENT
OF
THE
CHARGE
GENERATION
209
PHYSICAL
MODIFICATION
209
CHEMICAL
MODIFICATION
209
ENHANCEMENT
OF
THE
DIELECTRIC
POLARIZATION
209
REDUCE
THE
CHARGE
LOSS
210
INTRODUCE
THE
CHARGE
TRAP
LAYER
210
CIRCUIT
FINISHING
211
ELECTROSPUN
NANOFIBER-BASED
TENG
FOR
ENERGY
HARVESTING
211
HUMAN
MOTION
ENERGY
211
BODY
MOVEMENT
212
HUMAN
BREATH
213
RENEWABLE
ENERGY
213
AIRFLOW
ENERGY
213
RAIN
DROPLET
ENERGY
214
SOUND
ENERGY
214
MECHANICAL
VIBRATION
ENERGY
215
CONCLUSION
AND
PROSPECT
215
REFERENCES
216
12
PREPARATION
AND
APPLICATION
OF
THERMOELECTRIC
MATERIALS
AND
DEVICES
BASED
ON
ELECTROSPUN
FIBERS
219
XINYANG
HE
AND
LIMING
WANG
12.1
12.2
INTRODUCTION
219
DESIGN
AND
FABRICATION
OF
THERMOELECTRIC
MATERIALS
BASED
ON
ELECTROSPINNING
220
12.2.1
12.2.2
12.2.3
VACUUM
FILTRATION
220
ALTERNATE
SPRAYING
221
COAGULATION-BATH
ELECTROSPINNING
221
CONTENTS
|
XI
12.2.4
12.2.5
12.2.6
12.3
12.3.1
12.3.2
12.4
HIGH-TEMPERATURE
CALCINATION
225
PHYSICAL
VAPOR
DEPOSITION
225
IN
SITU
SYNTHESIS
226
APPLICATION
OF
ELECTROSPUN
THERMOELECTRIC
SYSTEM
228
FLEXIBLE
THERMOELECTRIC
GENERATOR
228
SELF-POWERED
SENSING
SYSTEM
230
CONCLUSION
AND
PROSPECTS
230
REFERENCES
232
13
ELECTROSPUN
NANOFIBER-BASED
WATER-INDUCED
ELECTRIC
GENERATION
235
ZHAOYANG
SUN
AND
LIMING
WANG
13.1
13.2
13.2.1
13.2.2
13.2.3
INTRODUCTION
235
LIQUID
WATER
SYSTEM
236
DEVICE
SETUP
AND
MATERIALS
SELECTION
PRINCIPLE
236
EFFECT
OF
CHANGING
VARIOUS
STRUCTURAL
PARAMETERS
237
SUGGESTED
MECHANISM
FOR
NANOFIBER-BASED
WATER-INDUCED
ELECTRIC
GENERATOR
237
13.3
13.3.1
13.3.2
13.3.3
13.3.4
13.4
GASEOUS
WATER
SYSTEM
238
DEVICE
SETUP
AND
MATERIALS
SELECTION
PRINCIPLE
238
ESTABLISHED
MECHANISM
FOR
MOIST
ELECTRIC
GENERATION
240
DIFFERENT
TYPES
OF
NANOFIBER-BASED
MEG
241
APPLICATIONS
BASED
ON
ELECTROSPUN
NANOFIBER-BASED
MEG
242
OUTLOOK
242
REFERENCES
244
14
ELECTROSPUN
NANOFIBERS
FOR
FLEXIBLE
SENSORS
247
FEI
WANG
AND
XUEPING
ZHANG
14.1
14.2
14.2.1
14.2.1.1
14.2.1.2
14.2.1.3
14.2.2
14.2.2.1
14.2.2.2
14.2.2.3
14.3
14.3.1
14.3.2
14.4
14.5
14.5.1
14.5.2
INTRODUCTION
247
MECHANICAL
SENSOR
248
STRAIN
SENSOR
248
RESISTIVE
STRAIN
SENSOR
249
CAPACITIVE
STRAIN
SENSOR
249
PIEZOELECTRIC
STRAIN
SENSOR
249
PRESSURE
SENSOR
251
PIEZORESISTIVE
PRESSURE
SENSOR
251
PIEZOCAPACITIVE
PRESSURE
SENSOR
252
PIEZOELECTRIC
PRESSURE
SENSOR
252
TEMPERATURE
AND
HUMIDITY
SENSOR
254
TEMPERATURE
SENSOR
254
HUMIDITY
SENSOR
255
GAS
SENSOR
257
ELECTROCHEMICAL
BIOSENSOR
259
ELECTROCHEMICAL
ENZYME
SENSOR
259
ELECTROCHEMICAL
IMMUNOSENSOR
260
XII
CONTENTS
14.5.3
14.5.3.1
14.5.3.2
14.5.4
14.5.5
14.6
MICROBIAL
ELECTROCHEMICAL
SENSOR
260
ANODIC
MICROBIAL
ELECTROCHEMICAL
SENSORS
261
CATHODIC
MICROBIAL
ELECTROCHEMICAL
SENSORS
261
ELECTROCHEMICAL
DNA
BIOSENSOR
262
ELECTROCHEMICAL
TISSUE
AND
CELL
SENSOR
262
CONCLUSION
AND
PERSPECTIVE
263
REFERENCES
263
15
PREPARATION
AND
APPLICATION
OF
ELECTROSPUN
LIQUID-METAL-BASED
STRETCHABLE
ELECTRONICS
269
MAORONG
ZHENG
AND
LIMING
WANG
15.1
15.2
15.2.1
15.2.1.1
15.2.1.2
15.2.2
15.2.2.1
15.2.2.2
15.2.2.3
15.3
15.3.1
15.3.2
15.4
INTRODUCTION
269
COMBINATION
METHOD
OF
ELECTROSPINNING
AND
LMS
270
DIRECT
SPINNING
270
IN
SITU
ASSEMBLY
OF
ELECTROSTATIC
SPRAYING
AND
ELECTROSPINNING
270
DOPE
BLENDING
271
POST
FINISHING
271
COATING
271
STENCIL
PRINTING
275
VACUUM
FILTRATION
275
APPLICATION
OF
LM-BASED
STRETCHABLE
ELECTRONIC
SYSTEM
276
STRETCHABLE
ELECTRONICS
FOR
STRAIN
SENSING
276
STRETCHABLE
STRAIN-INSENSITIVE
ELECTRODE
276
CONCLUSION
AND
PROSPECTS
278
REFERENCES
278
16
PREPARATION
AND
APPLICATION
OF
ELECTROSPUN
PHOTOCATALYSTS
283
WENDI
LIU
AND
HONGNAN
ZHANG
16.1
16.2
16.2.1
16.2.2
16.3
16.3.1
16.3.2
16.3.3
16.3.4
16.3.5
16.4
16.4.1
16.4.1.1
16.4.1.2
16.4.1.3
16.4.2
INTRODUCTION
283
PHOTOCATALYSIS
284
PRINCIPLE
OF
PHOTOCATALYSIS
284
CURRENT
CHALLENGES
OF
PHOTOCATALYSIS
285
ELECTROSPUN
PHOTOCATALYST
285
ELECTROSPUN
METAL
OXIDE
286
ELECTROSPUN
METAL
SULFIDE
286
BI-BASED
ELECTROSPUN
PHOTOCATALYST
287
AG-BASED
ELECTROSPUN
PHOTOCATALYST
288
ELECTROSPUN
GRAPHITIC
CARBON
NITRIDE
PHOTOCATALYST
288
COMPOSITE
ELECTROSPUN
PHOTOCATALYST
289
ELEMENT
DOPING
289
METAL
DOPING
289
NONMETAL
DOPING
290
CO-DOPING
290
MODIFIED
WITH
NOBLE
METALS
290
CONTENTS
XIII
16.4.3
16.4.3.1
16.4.3.2
16.4.4
16.4.5
16.5
16.5.1
16.5.2
SEMICONDUCTOR
COMPOSITE
291
HETEROJUNCTION
291
PHASE
JUNCTION
292
DYE
PHOTOSENSITIZATION
292
GRAFT-CONJUGATED
POLYMER
292
APPLICATION
293
APPLICATIONS
OF
ELECTROSPUN
PHOTOCATALYSTS
IN
ENERGY
293
APPLICATIONS
OF
ELECTROSPUN
PHOTOCATALYSTS
IN
ENVIRONMENTAL
PROTECTION
294
16.5.2.1
16.5.2.2
16.5.3
16.5.4
16.6
WASTEWATER
TREATMENT
294
AIR
PURIFICATION
295
APPLICATIONS
OF
ELECTROSPUN
PHOTOCATALYSTS
IN
DISINFECTION
295
APPLICATIONS
OF
ELECTROSPUN
PHOTOCATALYSTS
IN
CO2
REDUCTION
296
CONCLUSION
AND
PROSPECT
296
REFERENCES
297
17
SMART
ELECTROSPUN
ACTUATORS
301
LI
LIU
AND
LEI
ZHANG
17.1
17.2
17.3
17.4
17.5
17.5.1
17.5.2
17.5.3
17.5.4
17.5.5
17.6
INTRODUCTION
301
MECHANISM
OF
SOFT
ACTUATORS
302
FABRICATION
OF
ELECTROSPUN
ACTUATORS
303
EVALUATION
OF
ELECTROSPUN
ACTUATORS
304
TYPES
OF
ELECTROSPUN
ACTUATORS
306
THERMORESPONSIVE
ELECTROSPUN
ACTUATOR
306
PH-RESPONSIVE
ELECTROSPUN
ACTUATOR
308
LIGHT-RESPONSIVE
ACTUATOR
309
ELECTRIC-FIELD-RESPONSIVE
ACTUATOR
310
MAGNETIC-FIELD-RESPONSIVE
ACTUATOR
311
CONCLUSIONS
AND
PERSPECTIVES
312
REFERENCES
312
18
ELECTROSPUN
NANOFIBERS
FOR
BIOMEDICAL
APPLICATIONS
317
ZHAOXUAN
DING
AND
XINXIN
LI
18.1
18.2
18.2.1
INTRODUCTION
317
WOUND
DRESSING
318
DOUBLE-COMPONENT/MULTICOMPONENT
ELECTROSPUN
MEDICAL
DRESSING
319
18.2.2
18.2.3
18.3
18.3.1
18.3.2
18.3.3
18.4
18.4.1
FUNCTIONAL
MULTICOMPONENT
ELECTROSPUN
DRESSING
320
INTELLIGENT
WOUND
DRESSING
321
TISSUE
ENGINEERING
SCAFFOLD
323
VASCULAR
TISSUE
ENGINEERING
SCAFFOLD
323
NERVE
TISSUE
ENGINEERING
SCAFFOLD
325
BONE
TISSUE
ENGINEERING
SCAFFOLD
326
DRUG
RELEASE
CARRIER
328
DIFFUSION-DRIVEN
ELECTROSPUN
NANOMEMBRANES
328
XIV
CONTENTS
18.4.2
18.4.2.1
18.4.2.2
18.4.2.3
18.5
INTELLIGENT
RESPONSIVE
ELECTROSPUN
NANOMEMBRANES
329
PH-RESPONSIVE
ELECTROSPUN
NANOMEMBRANES
329
TEMPERATURE-RESPONSIVE
ELECTROSPUN
NANOMEMBRANES
331
MAGNETIC-RESPONSE
ELECTROSPUN
NANOMEMBRANES
332
CONCLUSION
333
REFERENCES
334
INDEX
339 |
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illustrated | Illustrated |
index_date | 2024-07-03T23:33:48Z |
indexdate | 2024-10-12T04:03:18Z |
institution | BVB |
institution_GND | (DE-588)16179388-5 |
isbn | 9783527351978 3527351973 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-034938894 |
oclc_num | 1429559495 |
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physical | xvi, 352 Seiten Illustrationen 24.4 cm x 17 cm |
publishDate | 2024 |
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publisher | Wiley-VCH |
record_format | marc |
spellingShingle | Electrospinning fundamentals, methods, and applications |
title | Electrospinning fundamentals, methods, and applications |
title_auth | Electrospinning fundamentals, methods, and applications |
title_exact_search | Electrospinning fundamentals, methods, and applications |
title_exact_search_txtP | Electrospinning fundamentals, methods, and applications |
title_full | Electrospinning fundamentals, methods, and applications edited by Liming Wang and Xiaohong Qin |
title_fullStr | Electrospinning fundamentals, methods, and applications edited by Liming Wang and Xiaohong Qin |
title_full_unstemmed | Electrospinning fundamentals, methods, and applications edited by Liming Wang and Xiaohong Qin |
title_short | Electrospinning |
title_sort | electrospinning fundamentals methods and applications |
title_sub | fundamentals, methods, and applications |
url | http://www.wiley-vch.de/publish/dt/books/ISBN978-3-527-35197-8/ http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=034938894&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT wangliming electrospinningfundamentalsmethodsandapplications AT qinxiaohong electrospinningfundamentalsmethodsandapplications AT wileyvch electrospinningfundamentalsmethodsandapplications |
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