Van der Waals heterostructures: fabrications, properties, and applications
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Weinheim
Wiley-VCH
[2023]
|
Schlagworte: | |
Online-Zugang: | http://www.wiley-vch.de/publish/dt/books/ISBN978-3-527-34950-0/ Inhaltsverzeichnis |
Beschreibung: | xii, 323 Seiten Illustrationen, Diagramme 24.4 cm x 17 cm |
ISBN: | 9783527349500 |
Internformat
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015 | |a 22,N18 |2 dnb | ||
016 | 7 | |a 1256113514 |2 DE-101 | |
020 | |a 9783527349500 |c : circa EUR 149.00 (DE) (freier Preis) |9 978-3-527-34950-0 | ||
024 | 3 | |a 9783527349500 | |
028 | 5 | 2 | |a Bestellnummer: 1134950 000 |
035 | |a (OCoLC)1373393902 | ||
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245 | 1 | 0 | |a Van der Waals heterostructures |b fabrications, properties, and applications |
264 | 1 | |a Weinheim |b Wiley-VCH |c [2023] | |
300 | |a xii, 323 Seiten |b Illustrationen, Diagramme |c 24.4 cm x 17 cm | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
650 | 0 | 7 | |a Heterostruktur |0 (DE-588)4123378-5 |2 gnd |9 rswk-swf |
650 | 0 | 7 | |a Van-der-Waals-Kraft |0 (DE-588)4187406-7 |2 gnd |9 rswk-swf |
653 | |a CH92: Festkörperchemie | ||
653 | |a Chemie | ||
653 | |a Chemistry | ||
653 | |a Components & Devices | ||
653 | |a EE60: Komponenten u. Bauelemente | ||
653 | |a Electrical & Electronics Engineering | ||
653 | |a Electronic Materials | ||
653 | |a Elektronische Materialien | ||
653 | |a Elektrotechnik u. Elektronik | ||
653 | |a Festkörperchemie | ||
653 | |a Komponenten u. Bauelemente | ||
653 | |a MS40: Elektronische Materialien | ||
653 | |a Materials Science | ||
653 | |a Materialwissenschaften | ||
653 | |a Solid State Chemistry | ||
655 | 7 | |0 (DE-588)4143413-4 |a Aufsatzsammlung |2 gnd-content | |
689 | 0 | 0 | |a Van-der-Waals-Kraft |0 (DE-588)4187406-7 |D s |
689 | 0 | 1 | |a Heterostruktur |0 (DE-588)4123378-5 |D s |
689 | 0 | |5 DE-604 | |
700 | 1 | |a Zhang, Zheng |4 edt | |
700 | 1 | |a Kang, Zhuo |4 edt | |
700 | 1 | |a Liao, Qingliang |4 edt | |
700 | 1 | |a Zhang, Yue |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 978-3-527-83386-3 |
776 | 0 | 8 | |i Erscheint auch als |n Online-Ausgabe, EPUB |z 978-3-527-83387-0 |
776 | 0 | 8 | |i Erscheint auch als |n Online-Ausgabe |z 978-3-527-83387-0 |
856 | 4 | 2 | |m X:MVB |u http://www.wiley-vch.de/publish/dt/books/ISBN978-3-527-34950-0/ |
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883 | 1 | |8 1\p |a vlb |d 20220426 |q DE-101 |u https://d-nb.info/provenance/plan#vlb |
Datensatz im Suchindex
_version_ | 1805083207933100032 |
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adam_text |
V
CONTENTS
PREFACE
XI
1
THE
2D
SEMICONDUCTOR
LIBRARY
1
ZHENG
ZHANG
AND
YUE
ZHANG
1.1
1.2
1.2.1
1.2.2
1.2.2.1
1.2.2.2
1.2.2.3
1.2.3
1.2.4
1.2.5
1.2.6
INTRODUCTION
1
EMERGING
2DLMS
FOR
FUTURE
ELECTRONICS
3
CLASSIFICATION
3
ELEMENTAL
2DMLS
3
IV
A
GROUP
3
V
GROUP
A
6
IIIA
GROUP
7
HEXAGONAL
BORON
NITRIDE
(H-BN)
8
TRANSITION
METAL
DICHALCOGENIDES
(TMDCS)
9
TRANSITION
METAL
CARBIDES
(TMCS)
12
TRANSITION
METAL
OXIDES
(TMOS)
15
REFERENCES
18
2
THE
2D
SEMICONDUCTOR
SYNTHESIS
AND
PERFORMANCES
33
XIANG
CHEN
T
QIJIE
LIANG
AND
YUE
ZHANG
2.1
2.1.1
2.1.2
2.1.3
2.1.4
2.1.5
2.1.6
2.2
2.2.1
2.2.2
2.2.2.1
2.2.2.2
2.2.2.3
EXFOLIATION
33
STARTING
FROM
GRAPHENE
33
SEMICONDUCTING
2D
MATERIALS
34
BIG
FAMILY
OF
EXFOLIATED
2D
MATERIALS
34
MECHANICAL
EXFOLIATION
OF
2D
MATERIALS
34
LIQUID
EXFOLIATION
OF
2D
MATERIALS
35
OTHER
EXFOLIATION
METHOD
OF
2D
MATERIALS
37
CHEMICAL
VAPOR
DEPOSITION
38
OVERVIEW
OF
CHEMICAL
VAPOR
DEPOSITION
38
ATMOSPHERIC
PRESSURE
CHEMICAL
VAPOR
DEPOSITION
(APCVD)
40
SYNTHESIS
OF
SINGLE-ELEMENT
MATERIALS
(GRAPHENE)
40
SYNTHESIS
OF
TMDCS
BIELEMENT
MATERIALS
42
SYNTHESIS
OF
MULTIELEMENT
MATERIALS
48
VI
CONTENTS
2.2.3
2.2.3.1
2.2.3.2
2.2.3.3
2.2.4
2.2.4.1
2.2.4.2
2.2.4.3
2.2.4.4
2.2.5
2.2.5.1
2.2.5.2
2.2.5.3
LOW-PRESSURE
CHEMICAL
VAPOR
DEPOSITION
(LPCVD)
48
SYNTHESIS
OF
SINGLE-ELEMENT
MATERIALS
(GRAPHENE)
48
SYNTHESIS
OF
TMDCS
BIELEMENT
MATERIALS
49
SYNTHESIS
OF
MULTIELEMENT
MATERIALS
51
PLASMA-ENHANCED
CHEMICAL
VAPOR
DEPOSITION
53
OVERVIEW
53
SYNTHESIS
OF
GRAPHENE
BY
PECVD
54
SYNTHESIS
OF
VG
NANOSHEETS
BY
PECVD
56
SYNTHESIS
OF
TMDCS
BY
PECVD
56
MOCVD
57
OVERVIEW
57
SYNTHESIS
OF
III-V
GROUP
SEMICONDUCTOR
BY
MOCVD
59
SYNTHESIS
OF
TMDCS
BY
MOCVD
60
REFERENCES
63
3
THE
VDW
HETEROSTRUCTURE
CONTROLLABLE
FABRICATIONS
69
ZHENG
ZHANG,
QINGLIANG
LIAO
AND
YUE
ZHANG
3.1
3.1.1
3.1.2
3.1.3
3.2
3.2.1
3.2.1.1
3.2.1.2
3.2.1.3
3.2.2
3.2.3
3.3
3.3.1
3.3.2
3.3.3
WET
TRANSFER
69
SUBSTRATE
ETCHING
TECHNIQUES
69
ELECTROCHEMICAL
DELAMINATION
METHODS
72
WEDGING
TRANSFER
METHOD
74
CONTROLLABLE
SELECTIVE
SYNTHESIS
76
CONTROLLABLE
SYNTHESIS
OF
2D-2D
HETEROSTRUCTURES
76
VERTICAL
2D-2D
HETEROSTRUCTURES
76
HORIZONTAL
2D-2D
HETEROSTRUCTURES
79
ONE-DIMENSIONAL
HETEROSTRUCTURES
80
CONTROLLABLE
SYNTHESIS
OF
2D-1D
HETEROSTRUCTURES
82
CONTROLLABLE
SYNTHESIS
OF
2D-3D
HETEROSTRUCTURES
85
DRY
TRANSFER
86
THERMAL-RELEASE
TAPE
86
STAMPS
88
THE
PICK-UP
METHODS
89
REFERENCES
93
4
THE
MIXED-DIMENSIONAL
VDW
HETEROSTRUCTURES
97
PEI
LIN,
BAISHAN
LIU
AND
ZHENG
ZHANG
4.1
4.2
CATEGORIZATION
OF
MIXED-DIMENSIONAL
VDWHS
97
STRATEGIES
FOR
CONSTRUCTING
MIXED-DIMENSIONAL
VDWHS
99
4.2.1
4.2.2
4.3
4.3.1
4.3.2
4.4
4.4.1
TRANSFER-ASSISTED
ASSEMBLY
OF
MIXED-DIMENSIONAL
VDWHS
99
DIRECT
GROWTH
OF
MIXED-DIMENSIONAL
VDWHS
100
ELECTRONIC
AND
SENSING
APPLICATIONS
101
TRANSISTORS
AND
SPINTRONICS
101
CHEMICAL
SENSORS
102
OPTOELECTRONIC
AND
PHOTONIC
APPLICATIONS
104
2D-OD
HYBRIDIZATION
104
CONTENTS
VII
4.4.2
4.4.3
4.5
4.5.1
4.5.2
4.5.3
4.6
2D-1D
HYBRIDIZATION
105
2D-3D
HYBRIDIZATION
108
ENERGY
APPLICATIONS
111
APPLICATION
IN
PHOTOCATALYTIC
WATER
SPLITTING
111
APPLICATION
IN
RECHARGEABLE
BATTERIES
112
APPLICATION
IN
SUPERCAPACITORS
114
CONCLUSIONS
115
REFERENCES
116
5
THE
VDW
HETEROSTRUCTURE
INTERFACE
PHYSICS
125
GUANGJIE
ZHANG,
YANG
OU,
PEIFENG
LI
AND
QINGLIANG
LIAO
5.1
5.2
5.2.1
5.2.2
5.3
5.3.1
5.3.2
5.3.3
5.3.4
5.4
5.4.1
5.4.2
5.4.3
5.4.4
5.5
5.5.1
BAND
ALIGNMENT
AND
CHARGE
TRANSFER
IN
VDWHS
126
MAGNETIC
COUPLING
IN
VDWHS
129
APPLICATIONS
IN
VALLEYTRONICS
132
APPLICATION
IN
SPINTRONICS
134
MOIRE
PATTERN
134
BAND
STRUCTURE
IN
MOIRE
LATTICE
134
FLAT
BAND-INTRODUCED
SUPERCONDUCTIVITY
IN
BILAYER
GRAPHENE
135
MOIRE
EXCITONS
135
MOIRE
LATTICE
TOPOLOGY
136
VDWHS
FOR
PROTECTION
137
INTRODUCTION
OF
HEXAGONAL
BORON
NITRIDE
137
GRAPHENE
CAPSULATED
BY
H-BN
138
TRANSITION
METAL
DICHALCOGENIDES
CAPSULATED
BY
H-BN
140
BLACK
PHOSPHORUS
CAPSULATED
BY
H-BN
141
CHARACTERIZATION
TECHNIQUES
FOR
VDWHS
142
SCANNING
TRANSMISSION
ELECTRON
MICROSCOPY
FOR
CHARACTERIZATION
OF
STRUCTURAL
AND
RELATED
PROPERTIES
142
5.5.2
SCANNING
PROBE
MICROSCOPY
FOR
CHARACTERIZATION
OF
STRUCTURAL
AND
ELECTRICAL
PROPERTIES
144
5.5.3
OPTICAL
AND
VIBRATIONAL
SPECTROSCOPY
FOR
CHARACTERIZATION
OF
ELECTRON-,
EXCITON-,
AND
PHONON-RELATED
PROPERTIES
145
REFERENCES
147
6
THE
VDW
HETEROSTRUCTURE
MULTI-FIELD
COUPLING
EFFECTS
157
JUNLI
DU,
BAISHAN
LIU
AND
ZHENG
ZHANG
6.1
6.2
INTRODUCTION
157
THE
MULTIFIELD
COUPLING
EFFECT
CHARACTERIZATION
FOR
2D
VAN
DER
WAALS
STRUCTURES
158
6.2.1
6.2.1.1
6.2.1.2
6.2.1.3
6.2.1.4
6.2.2
THE
MULTIFIELD
MICROSCOPY
TECHNIQUES
ON
2D
VDW
STRUCTURES
158
THE
ELECTRIC-FIELD-INTEGRATED
STM-STS
TECHNIQUE
159
THE
THERMAL-FIELD-INTEGRATED
STM-STS
TECHNIQUE
160
THE
MULTIFIELD-INTEGRATED
TEM
TECHNIQUE
161
THE
OPTICAL-FIELD-INTEGRATED
KPFM
TECHNIQUE
162
THE
MULTIFIELD
OPTICAL
SPECTROSCOPY
TECHNIQUES
ON
2D
VDW
STRUCTURES
163
VIII
CONTENTS
6.2.2.1
6.2.2.2
6.2.3
THE
TERS
TECHNIQUE
BASED
ON
STM
AND
RAMAN
SPECTROSCOPY
163
THE
S-SNOM
BASED
ON
AFM
165
THE
PERSPECTIVE
OF
MULTIFIELD
INTEGRATION
CHARACTERIZATION
FOR
2D
VDW
STRUCTURES
166
6.3
THE
MULTIFIELD
MODULATION
FOR
ELECTRICAL
PROPERTIES
OF
2D
VAN
DER
WAALS
STRUCTURES
167
6.3.1
6.3.2
STRAIN-ENGINEERED
ELECTRICAL
PROPERTIES
OF
2D
VDW
STRUCTURES
167
ELECTRIC
FIELD-ENGINEERED
ELECTRICAL
PROPERTIES
OF
2D
VDW
STRUCTURES
169
6.3.3
6.4
THERMAL-ENGINEERED
ELECTRICAL
PROPERTIES
OF
VDW
STRUCTURES
171
THE
MULTIFIELD
MODULATION
FOR
OPTICAL
PROPERTIES
OF
2D
VAN
DER
WAALS
STRUCTURES
172
6.4.1
6.4.2
6.4.3
STRAIN-ENGINEERED
OPTICAL
PROPERTIES
OF
2D
VDW
STRUCTURES
173
ELECTRIC-ENGINEERED
OPTICAL
PROPERTIES
OF
2D
VDW
STRUCTURES
175
THERMAL-ENGINEERED
OPTICAL
PROPERTIES
OF
VDW
STRUCTURES
177
REFERENCES
178
7
VDW
HETEROSTRUCTURE
ELECTRONICS
187
XIANKUN
ZHANG,
XIANG
CHEN
AND
YUE
ZHANG
7.1
7.2
7.3
7.3.1
7.3.2
7.3.3
7.4
7.4.1
7.4.2
7.4.3
7.4.4
7.5
7.5.1
7.5.2
7.5.3
7.6
VAN
DER
WAALS
PN
JUNCTIONS
188
VAN
DER
WAALS
METAL-SEMICONDUCTOR
JUNCTIONS
192
FIELD-EFFECT
TRANSISTOR
197
BASIC
STRUCTURE
198
ADVANTAGE
CHARACTERISTICS
199
2D
DIELECTRIC
MATERIALS
199
JUNCTION
FIELD-EFFECT
TRANSISTOR
201
CURRENT-VOLTAGE
FEATURES
202
WORKING
PRINCIPLE
203
DEVICE
STRUCTURE
205
APPLICATIONS
205
TUNNELING
FIELD-EFFECT
TRANSISTOR
208
THE
HISTORY
OF
TFET
208
MECHANISM
OF
TFET
209
APPLICATION
OF
TFET
211
VAN
DER
WAALS
INTEGRATION
213
REFERENCES
216
8
VDW
HETEROSTRUCTURE
OPTOELECTRONICS
223
QI
ZHANG,
ZHUO
KANG
AND
YUE
ZHANG
8.1
8.1.1
8.1.2
8.1.3
8.1.4
8.1.5
8.2
PHOTODETECTORS
223
PHOTOVOLTAIC
EFFECT
228
PHOTOCONDUCTIVE
EFFECT
229
TUNNELING
EFFECT
231
PHOTO-THERMOELECTRIC
EFFECT
233
IMPROVEMENT
STRATEGIES
234
LIGHT
EMISSION
236
CONTENTS
IX
INDEX
317
8.2.1
8.2.2
8.2.3
8.3
8.3.1
8.3.2
8.3.3
LIGHT-EMITTING
DIODES
236
LASERING
242
SINGLE
PHOTON
244
OPTICAL
MODULATORS
245
ALL-OPTICAL
MODULATORS
245
ELECTRO-OPTIC
MODULATORS
246
THERMO-OPTIC
MODULATORS
247
REFERENCES
248
9
VDW
HETEROSTRUCTURE
ELECTROCHEMICAL
APPLICATIONS
261
XIANKUN
ZHANG
AND
ZHUO
KANG
9.1
9.2
9.2.1
9.2.2
9.3
9.3.1
SOLAR
ENERGY
262
VAN
DER
WAALS
HETEROSTRUCTURE
APPLICATION
IN
HYDROGEN
ENERGY
267
PRODUCING
HYDROGEN
BY
WATER
PHOTOLYSIS
268
PRODUCING
HYDROGEN
BY
WATER
ELECTROLYSIS
270
BATTERY
271
LITHIUM-ION
BATTERIES,
SODIUM-ION
BATTERIES,
POTASSIUM-ION
BATTERIES
273
9.3.2
9.4
9.5
9.5.1
9.5.2
SUPERCAPACITORS
276
CATALYST
277
BIOTECHNOLOGY
282
BIOSENSORS
283
TISSUE
ENGINEERING
284
REFERENCES
286
10
PERSPECTIVE
AND
OUTLOOK
295
ZHENG
ZHANG
AND
YUE
ZHANG
10.1
10.1.1
10.1.2
10.1.3
OVERALL
DEVELOPMENT
STATUS
OF
2D
MATERIALS
295
MATERIAL
PREPARATION:
SCALABILITY,
UNIFORMITY,
AND
REPRODUCIBILITY
297
METROLOGY
297
CONSTRUCTION OF
HETEROSTRUCTURE:
INDUSTRY-COMPATIBLE
INTEGRATION
PROCESS
299
10.2
COMPATIBILITY
BETWEEN
2D
VAN
DER
WAALS
DEVICE
PROCESSING
AND
SILICON
TECHNOLOGY
301
10.2.1
COMPATIBILITY
OF
2D
VAN
DER
WAALS
DEVICE
INTEGRATION
WITH
TRADITIONAL
SILICON-BASED
PROCESS
301
10.2.2
DIFFERENCES
BETWEEN
2D
VAN
DER
WAALS
DEVICES
AND
TRADITIONAL
SILICON
BASED
PROCESSES
303
10.2.3
10.3
2D
VAN
DER
WAALS
DEVICE
INTEGRATION
BEYOND
SILICON
TECHNOLOGY
305
PROMISING
ROADMAP
OF
VAN
DER
WAALS
HETEROSTRUCTURE
DEVICES
[MEDIUM
TERM:
5
YEARS,
LONG
TERM:
5-10
YEARS]
307
10.4
10.5
PROMISING
ROADMAP
OF
OPTOELECTRONIC
DEVICE
309
CONCLUSION
AND
PROSPECT
310
REFERENCES
311 |
adam_txt |
V
CONTENTS
PREFACE
XI
1
THE
2D
SEMICONDUCTOR
LIBRARY
1
ZHENG
ZHANG
AND
YUE
ZHANG
1.1
1.2
1.2.1
1.2.2
1.2.2.1
1.2.2.2
1.2.2.3
1.2.3
1.2.4
1.2.5
1.2.6
INTRODUCTION
1
EMERGING
2DLMS
FOR
FUTURE
ELECTRONICS
3
CLASSIFICATION
3
ELEMENTAL
2DMLS
3
IV
A
GROUP
3
V
GROUP
A
6
IIIA
GROUP
7
HEXAGONAL
BORON
NITRIDE
(H-BN)
8
TRANSITION
METAL
DICHALCOGENIDES
(TMDCS)
9
TRANSITION
METAL
CARBIDES
(TMCS)
12
TRANSITION
METAL
OXIDES
(TMOS)
15
REFERENCES
18
2
THE
2D
SEMICONDUCTOR
SYNTHESIS
AND
PERFORMANCES
33
XIANG
CHEN
T
QIJIE
LIANG
AND
YUE
ZHANG
2.1
2.1.1
2.1.2
2.1.3
2.1.4
2.1.5
2.1.6
2.2
2.2.1
2.2.2
2.2.2.1
2.2.2.2
2.2.2.3
EXFOLIATION
33
STARTING
FROM
GRAPHENE
33
SEMICONDUCTING
2D
MATERIALS
34
BIG
FAMILY
OF
EXFOLIATED
2D
MATERIALS
34
MECHANICAL
EXFOLIATION
OF
2D
MATERIALS
34
LIQUID
EXFOLIATION
OF
2D
MATERIALS
35
OTHER
EXFOLIATION
METHOD
OF
2D
MATERIALS
37
CHEMICAL
VAPOR
DEPOSITION
38
OVERVIEW
OF
CHEMICAL
VAPOR
DEPOSITION
38
ATMOSPHERIC
PRESSURE
CHEMICAL
VAPOR
DEPOSITION
(APCVD)
40
SYNTHESIS
OF
SINGLE-ELEMENT
MATERIALS
(GRAPHENE)
40
SYNTHESIS
OF
TMDCS
BIELEMENT
MATERIALS
42
SYNTHESIS
OF
MULTIELEMENT
MATERIALS
48
VI
CONTENTS
2.2.3
2.2.3.1
2.2.3.2
2.2.3.3
2.2.4
2.2.4.1
2.2.4.2
2.2.4.3
2.2.4.4
2.2.5
2.2.5.1
2.2.5.2
2.2.5.3
LOW-PRESSURE
CHEMICAL
VAPOR
DEPOSITION
(LPCVD)
48
SYNTHESIS
OF
SINGLE-ELEMENT
MATERIALS
(GRAPHENE)
48
SYNTHESIS
OF
TMDCS
BIELEMENT
MATERIALS
49
SYNTHESIS
OF
MULTIELEMENT
MATERIALS
51
PLASMA-ENHANCED
CHEMICAL
VAPOR
DEPOSITION
53
OVERVIEW
53
SYNTHESIS
OF
GRAPHENE
BY
PECVD
54
SYNTHESIS
OF
VG
NANOSHEETS
BY
PECVD
56
SYNTHESIS
OF
TMDCS
BY
PECVD
56
MOCVD
57
OVERVIEW
57
SYNTHESIS
OF
III-V
GROUP
SEMICONDUCTOR
BY
MOCVD
59
SYNTHESIS
OF
TMDCS
BY
MOCVD
60
REFERENCES
63
3
THE
VDW
HETEROSTRUCTURE
CONTROLLABLE
FABRICATIONS
69
ZHENG
ZHANG,
QINGLIANG
LIAO
AND
YUE
ZHANG
3.1
3.1.1
3.1.2
3.1.3
3.2
3.2.1
3.2.1.1
3.2.1.2
3.2.1.3
3.2.2
3.2.3
3.3
3.3.1
3.3.2
3.3.3
WET
TRANSFER
69
SUBSTRATE
ETCHING
TECHNIQUES
69
ELECTROCHEMICAL
DELAMINATION
METHODS
72
WEDGING
TRANSFER
METHOD
74
CONTROLLABLE
SELECTIVE
SYNTHESIS
76
CONTROLLABLE
SYNTHESIS
OF
2D-2D
HETEROSTRUCTURES
76
VERTICAL
2D-2D
HETEROSTRUCTURES
76
HORIZONTAL
2D-2D
HETEROSTRUCTURES
79
ONE-DIMENSIONAL
HETEROSTRUCTURES
80
CONTROLLABLE
SYNTHESIS
OF
2D-1D
HETEROSTRUCTURES
82
CONTROLLABLE
SYNTHESIS
OF
2D-3D
HETEROSTRUCTURES
85
DRY
TRANSFER
86
THERMAL-RELEASE
TAPE
86
STAMPS
88
THE
PICK-UP
METHODS
89
REFERENCES
93
4
THE
MIXED-DIMENSIONAL
VDW
HETEROSTRUCTURES
97
PEI
LIN,
BAISHAN
LIU
AND
ZHENG
ZHANG
4.1
4.2
CATEGORIZATION
OF
MIXED-DIMENSIONAL
VDWHS
97
STRATEGIES
FOR
CONSTRUCTING
MIXED-DIMENSIONAL
VDWHS
99
4.2.1
4.2.2
4.3
4.3.1
4.3.2
4.4
4.4.1
TRANSFER-ASSISTED
ASSEMBLY
OF
MIXED-DIMENSIONAL
VDWHS
99
DIRECT
GROWTH
OF
MIXED-DIMENSIONAL
VDWHS
100
ELECTRONIC
AND
SENSING
APPLICATIONS
101
TRANSISTORS
AND
SPINTRONICS
101
CHEMICAL
SENSORS
102
OPTOELECTRONIC
AND
PHOTONIC
APPLICATIONS
104
2D-OD
HYBRIDIZATION
104
CONTENTS
VII
4.4.2
4.4.3
4.5
4.5.1
4.5.2
4.5.3
4.6
2D-1D
HYBRIDIZATION
105
2D-3D
HYBRIDIZATION
108
ENERGY
APPLICATIONS
111
APPLICATION
IN
PHOTOCATALYTIC
WATER
SPLITTING
111
APPLICATION
IN
RECHARGEABLE
BATTERIES
112
APPLICATION
IN
SUPERCAPACITORS
114
CONCLUSIONS
115
REFERENCES
116
5
THE
VDW
HETEROSTRUCTURE
INTERFACE
PHYSICS
125
GUANGJIE
ZHANG,
YANG
OU,
PEIFENG
LI
AND
QINGLIANG
LIAO
5.1
5.2
5.2.1
5.2.2
5.3
5.3.1
5.3.2
5.3.3
5.3.4
5.4
5.4.1
5.4.2
5.4.3
5.4.4
5.5
5.5.1
BAND
ALIGNMENT
AND
CHARGE
TRANSFER
IN
VDWHS
126
MAGNETIC
COUPLING
IN
VDWHS
129
APPLICATIONS
IN
VALLEYTRONICS
132
APPLICATION
IN
SPINTRONICS
134
MOIRE
PATTERN
134
BAND
STRUCTURE
IN
MOIRE
LATTICE
134
FLAT
BAND-INTRODUCED
SUPERCONDUCTIVITY
IN
BILAYER
GRAPHENE
135
MOIRE
EXCITONS
135
MOIRE
LATTICE
TOPOLOGY
136
VDWHS
FOR
PROTECTION
137
INTRODUCTION
OF
HEXAGONAL
BORON
NITRIDE
137
GRAPHENE
CAPSULATED
BY
H-BN
138
TRANSITION
METAL
DICHALCOGENIDES
CAPSULATED
BY
H-BN
140
BLACK
PHOSPHORUS
CAPSULATED
BY
H-BN
141
CHARACTERIZATION
TECHNIQUES
FOR
VDWHS
142
SCANNING
TRANSMISSION
ELECTRON
MICROSCOPY
FOR
CHARACTERIZATION
OF
STRUCTURAL
AND
RELATED
PROPERTIES
142
5.5.2
SCANNING
PROBE
MICROSCOPY
FOR
CHARACTERIZATION
OF
STRUCTURAL
AND
ELECTRICAL
PROPERTIES
144
5.5.3
OPTICAL
AND
VIBRATIONAL
SPECTROSCOPY
FOR
CHARACTERIZATION
OF
ELECTRON-,
EXCITON-,
AND
PHONON-RELATED
PROPERTIES
145
REFERENCES
147
6
THE
VDW
HETEROSTRUCTURE
MULTI-FIELD
COUPLING
EFFECTS
157
JUNLI
DU,
BAISHAN
LIU
AND
ZHENG
ZHANG
6.1
6.2
INTRODUCTION
157
THE
MULTIFIELD
COUPLING
EFFECT
CHARACTERIZATION
FOR
2D
VAN
DER
WAALS
STRUCTURES
158
6.2.1
6.2.1.1
6.2.1.2
6.2.1.3
6.2.1.4
6.2.2
THE
MULTIFIELD
MICROSCOPY
TECHNIQUES
ON
2D
VDW
STRUCTURES
158
THE
ELECTRIC-FIELD-INTEGRATED
STM-STS
TECHNIQUE
159
THE
THERMAL-FIELD-INTEGRATED
STM-STS
TECHNIQUE
160
THE
MULTIFIELD-INTEGRATED
TEM
TECHNIQUE
161
THE
OPTICAL-FIELD-INTEGRATED
KPFM
TECHNIQUE
162
THE
MULTIFIELD
OPTICAL
SPECTROSCOPY
TECHNIQUES
ON
2D
VDW
STRUCTURES
163
VIII
CONTENTS
6.2.2.1
6.2.2.2
6.2.3
THE
TERS
TECHNIQUE
BASED
ON
STM
AND
RAMAN
SPECTROSCOPY
163
THE
S-SNOM
BASED
ON
AFM
165
THE
PERSPECTIVE
OF
MULTIFIELD
INTEGRATION
CHARACTERIZATION
FOR
2D
VDW
STRUCTURES
166
6.3
THE
MULTIFIELD
MODULATION
FOR
ELECTRICAL
PROPERTIES
OF
2D
VAN
DER
WAALS
STRUCTURES
167
6.3.1
6.3.2
STRAIN-ENGINEERED
ELECTRICAL
PROPERTIES
OF
2D
VDW
STRUCTURES
167
ELECTRIC
FIELD-ENGINEERED
ELECTRICAL
PROPERTIES
OF
2D
VDW
STRUCTURES
169
6.3.3
6.4
THERMAL-ENGINEERED
ELECTRICAL
PROPERTIES
OF
VDW
STRUCTURES
171
THE
MULTIFIELD
MODULATION
FOR
OPTICAL
PROPERTIES
OF
2D
VAN
DER
WAALS
STRUCTURES
172
6.4.1
6.4.2
6.4.3
STRAIN-ENGINEERED
OPTICAL
PROPERTIES
OF
2D
VDW
STRUCTURES
173
ELECTRIC-ENGINEERED
OPTICAL
PROPERTIES
OF
2D
VDW
STRUCTURES
175
THERMAL-ENGINEERED
OPTICAL
PROPERTIES
OF
VDW
STRUCTURES
177
REFERENCES
178
7
VDW
HETEROSTRUCTURE
ELECTRONICS
187
XIANKUN
ZHANG,
XIANG
CHEN
AND
YUE
ZHANG
7.1
7.2
7.3
7.3.1
7.3.2
7.3.3
7.4
7.4.1
7.4.2
7.4.3
7.4.4
7.5
7.5.1
7.5.2
7.5.3
7.6
VAN
DER
WAALS
PN
JUNCTIONS
188
VAN
DER
WAALS
METAL-SEMICONDUCTOR
JUNCTIONS
192
FIELD-EFFECT
TRANSISTOR
197
BASIC
STRUCTURE
198
ADVANTAGE
CHARACTERISTICS
199
2D
DIELECTRIC
MATERIALS
199
JUNCTION
FIELD-EFFECT
TRANSISTOR
201
CURRENT-VOLTAGE
FEATURES
202
WORKING
PRINCIPLE
203
DEVICE
STRUCTURE
205
APPLICATIONS
205
TUNNELING
FIELD-EFFECT
TRANSISTOR
208
THE
HISTORY
OF
TFET
208
MECHANISM
OF
TFET
209
APPLICATION
OF
TFET
211
VAN
DER
WAALS
INTEGRATION
213
REFERENCES
216
8
VDW
HETEROSTRUCTURE
OPTOELECTRONICS
223
QI
ZHANG,
ZHUO
KANG
AND
YUE
ZHANG
8.1
8.1.1
8.1.2
8.1.3
8.1.4
8.1.5
8.2
PHOTODETECTORS
223
PHOTOVOLTAIC
EFFECT
228
PHOTOCONDUCTIVE
EFFECT
229
TUNNELING
EFFECT
231
PHOTO-THERMOELECTRIC
EFFECT
233
IMPROVEMENT
STRATEGIES
234
LIGHT
EMISSION
236
CONTENTS
IX
INDEX
317
8.2.1
8.2.2
8.2.3
8.3
8.3.1
8.3.2
8.3.3
LIGHT-EMITTING
DIODES
236
LASERING
242
SINGLE
PHOTON
244
OPTICAL
MODULATORS
245
ALL-OPTICAL
MODULATORS
245
ELECTRO-OPTIC
MODULATORS
246
THERMO-OPTIC
MODULATORS
247
REFERENCES
248
9
VDW
HETEROSTRUCTURE
ELECTROCHEMICAL
APPLICATIONS
261
XIANKUN
ZHANG
AND
ZHUO
KANG
9.1
9.2
9.2.1
9.2.2
9.3
9.3.1
SOLAR
ENERGY
262
VAN
DER
WAALS
HETEROSTRUCTURE
APPLICATION
IN
HYDROGEN
ENERGY
267
PRODUCING
HYDROGEN
BY
WATER
PHOTOLYSIS
268
PRODUCING
HYDROGEN
BY
WATER
ELECTROLYSIS
270
BATTERY
271
LITHIUM-ION
BATTERIES,
SODIUM-ION
BATTERIES,
POTASSIUM-ION
BATTERIES
273
9.3.2
9.4
9.5
9.5.1
9.5.2
SUPERCAPACITORS
276
CATALYST
277
BIOTECHNOLOGY
282
BIOSENSORS
283
TISSUE
ENGINEERING
284
REFERENCES
286
10
PERSPECTIVE
AND
OUTLOOK
295
ZHENG
ZHANG
AND
YUE
ZHANG
10.1
10.1.1
10.1.2
10.1.3
OVERALL
DEVELOPMENT
STATUS
OF
2D
MATERIALS
295
MATERIAL
PREPARATION:
SCALABILITY,
UNIFORMITY,
AND
REPRODUCIBILITY
297
METROLOGY
297
CONSTRUCTION OF
HETEROSTRUCTURE:
INDUSTRY-COMPATIBLE
INTEGRATION
PROCESS
299
10.2
COMPATIBILITY
BETWEEN
2D
VAN
DER
WAALS
DEVICE
PROCESSING
AND
SILICON
TECHNOLOGY
301
10.2.1
COMPATIBILITY
OF
2D
VAN
DER
WAALS
DEVICE
INTEGRATION
WITH
TRADITIONAL
SILICON-BASED
PROCESS
301
10.2.2
DIFFERENCES
BETWEEN
2D
VAN
DER
WAALS
DEVICES
AND
TRADITIONAL
SILICON
BASED
PROCESSES
303
10.2.3
10.3
2D
VAN
DER
WAALS
DEVICE
INTEGRATION
BEYOND
SILICON
TECHNOLOGY
305
PROMISING
ROADMAP
OF
VAN
DER
WAALS
HETEROSTRUCTURE
DEVICES
[MEDIUM
TERM:
5
YEARS,
LONG
TERM:
5-10
YEARS]
307
10.4
10.5
PROMISING
ROADMAP
OF
OPTOELECTRONIC
DEVICE
309
CONCLUSION
AND
PROSPECT
310
REFERENCES
311 |
any_adam_object | 1 |
any_adam_object_boolean | 1 |
author2 | Zhang, Zheng Kang, Zhuo Liao, Qingliang Zhang, Yue |
author2_role | edt edt edt edt |
author2_variant | z z zz z k zk q l ql y z yz |
author_facet | Zhang, Zheng Kang, Zhuo Liao, Qingliang Zhang, Yue |
building | Verbundindex |
bvnumber | BV048577367 |
classification_rvk | UP 3150 VE 9530 |
ctrlnum | (OCoLC)1373393902 (DE-599)DNB1256113514 |
discipline | Chemie / Pharmazie Physik |
discipline_str_mv | Chemie / Pharmazie |
format | Book |
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genre | (DE-588)4143413-4 Aufsatzsammlung gnd-content |
genre_facet | Aufsatzsammlung |
id | DE-604.BV048577367 |
illustrated | Illustrated |
index_date | 2024-07-03T21:03:42Z |
indexdate | 2024-07-20T07:44:53Z |
institution | BVB |
institution_GND | (DE-588)16179388-5 |
isbn | 9783527349500 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-033953327 |
oclc_num | 1373393902 |
open_access_boolean | |
owner | DE-29T DE-19 DE-BY-UBM DE-20 |
owner_facet | DE-29T DE-19 DE-BY-UBM DE-20 |
physical | xii, 323 Seiten Illustrationen, Diagramme 24.4 cm x 17 cm |
publishDate | 2023 |
publishDateSearch | 2023 |
publishDateSort | 2023 |
publisher | Wiley-VCH |
record_format | marc |
spelling | Van der Waals heterostructures fabrications, properties, and applications Weinheim Wiley-VCH [2023] xii, 323 Seiten Illustrationen, Diagramme 24.4 cm x 17 cm txt rdacontent n rdamedia nc rdacarrier Heterostruktur (DE-588)4123378-5 gnd rswk-swf Van-der-Waals-Kraft (DE-588)4187406-7 gnd rswk-swf CH92: Festkörperchemie Chemie Chemistry Components & Devices EE60: Komponenten u. Bauelemente Electrical & Electronics Engineering Electronic Materials Elektronische Materialien Elektrotechnik u. Elektronik Festkörperchemie Komponenten u. Bauelemente MS40: Elektronische Materialien Materials Science Materialwissenschaften Solid State Chemistry (DE-588)4143413-4 Aufsatzsammlung gnd-content Van-der-Waals-Kraft (DE-588)4187406-7 s Heterostruktur (DE-588)4123378-5 s DE-604 Zhang, Zheng edt Kang, Zhuo edt Liao, Qingliang edt Zhang, Yue edt Wiley-VCH (DE-588)16179388-5 pbl Erscheint auch als Online-Ausgabe, PDF 978-3-527-83386-3 Erscheint auch als Online-Ausgabe, EPUB 978-3-527-83387-0 Erscheint auch als Online-Ausgabe 978-3-527-83387-0 X:MVB http://www.wiley-vch.de/publish/dt/books/ISBN978-3-527-34950-0/ DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=033953327&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p vlb 20220426 DE-101 https://d-nb.info/provenance/plan#vlb |
spellingShingle | Van der Waals heterostructures fabrications, properties, and applications Heterostruktur (DE-588)4123378-5 gnd Van-der-Waals-Kraft (DE-588)4187406-7 gnd |
subject_GND | (DE-588)4123378-5 (DE-588)4187406-7 (DE-588)4143413-4 |
title | Van der Waals heterostructures fabrications, properties, and applications |
title_auth | Van der Waals heterostructures fabrications, properties, and applications |
title_exact_search | Van der Waals heterostructures fabrications, properties, and applications |
title_exact_search_txtP | Van der Waals heterostructures fabrications, properties, and applications |
title_full | Van der Waals heterostructures fabrications, properties, and applications |
title_fullStr | Van der Waals heterostructures fabrications, properties, and applications |
title_full_unstemmed | Van der Waals heterostructures fabrications, properties, and applications |
title_short | Van der Waals heterostructures |
title_sort | van der waals heterostructures fabrications properties and applications |
title_sub | fabrications, properties, and applications |
topic | Heterostruktur (DE-588)4123378-5 gnd Van-der-Waals-Kraft (DE-588)4187406-7 gnd |
topic_facet | Heterostruktur Van-der-Waals-Kraft Aufsatzsammlung |
url | http://www.wiley-vch.de/publish/dt/books/ISBN978-3-527-34950-0/ http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=033953327&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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