Electrochemistry of nanomaterials:
Gespeichert in:
Format: | Buch |
---|---|
Sprache: | English |
Veröffentlicht: |
Weinheim [u.a.]
Wiley-VCH
2001
|
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XVI, 310 S. Ill., graph. Darst. |
ISBN: | 3527298363 |
Internformat
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084 | |a CHE 140f |2 stub | ||
245 | 1 | 0 | |a Electrochemistry of nanomaterials |c Gary Hodes (ed.) |
264 | 1 | |a Weinheim [u.a.] |b Wiley-VCH |c 2001 | |
300 | |a XVI, 310 S. |b Ill., graph. Darst. | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
650 | 4 | |a Nanostruktur - Elektrochemie - Aufsatzsammlung | |
650 | 4 | |a Electrochemistry | |
650 | 4 | |a Microelectronics | |
650 | 4 | |a Nanostructured materials | |
650 | 0 | 7 | |a Elektrochemie |0 (DE-588)4014241-3 |2 gnd |9 rswk-swf |
650 | 0 | 7 | |a Nanostrukturiertes Material |0 (DE-588)4342626-8 |2 gnd |9 rswk-swf |
650 | 0 | 7 | |a Nanostruktur |0 (DE-588)4204530-7 |2 gnd |9 rswk-swf |
655 | 7 | |8 1\p |0 (DE-588)4143413-4 |a Aufsatzsammlung |2 gnd-content | |
689 | 0 | 0 | |a Nanostrukturiertes Material |0 (DE-588)4342626-8 |D s |
689 | 0 | 1 | |a Elektrochemie |0 (DE-588)4014241-3 |D s |
689 | 0 | |5 DE-604 | |
689 | 1 | 0 | |a Nanostruktur |0 (DE-588)4204530-7 |D s |
689 | 1 | 1 | |a Elektrochemie |0 (DE-588)4014241-3 |D s |
689 | 1 | |8 2\p |5 DE-604 | |
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Datensatz im Suchindex
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adam_text |
XI
CONTENTS
1
HYBRID
ELECTROCHEMICAL/CHEMICAL
SYNTHESIS
OF
SEMICONDUCTOR
NANOCRYSTALS
ON
CRAPHIE
1
REGINALD
M.
PENNER
1.1
INTRODUCTION
1
1.1.1
DIMENSIONAL
CONTROL
IN
MATERIALS
ELECTRODEPOSITION:
THE
STATE
OF
THE
ART
2
1.1.2
THE
ELECTROCHEMICAL/CHEMICAL
SYNTHESIS
OF
SEMICONDUCTOR
QUANTUM
DOTS
3
1.2
SIZE-SELECTIVE
ELECTRODEPOSITION
OF
METAL
NANOPARTICLES
5
1.3
UNDERSTANDING
PARTICLE
SIZE
DISPERSION
IN
ELECTROCHEMICAL
VOLMER-WEBER
GROWTH
8
1.4
CONVERTING
METAL
NANOPARTICLES
INTO
SEMICONDUCTOR
QUANTUM
DOTS
13
1.4.1
A
METAL
OXIDE
INTERMEDIATE
13
1.4.2
CONVERSION
FROM
METAL
OXIDE
TO
METAL
SALT
AND
CHARACTERIZATION
14
1.5
PHOTOLUMINESCENCE
SPECTROSCOPY
OF
E/C
SYNTHESIZED
MATERIALS
17
1.6
AN
APPLICATION
FOR
E/C
SYNTHESIZED
QUANTUM
DOTS:
PHOTODETECTION
BASED
ON
A
NEW
PRINCIPLE
20
REFERENCES
23
2
ELECTRODEPOSITION
OF
SEMICONDUCTOR
QUANTUM
DOT
FILMS
25
GARY
HODES
AND
ISRAEL
RUBINSTEIN
2.1
INTRODUCTION
25
2.1.1
GENERAL
25
2.1.2
SOME
SPECIFIC
ISSUES
RELEVANT
TO
CHARACTERIZATION
OF
NANOCRYSTALLINE
MATERIALS
27
2.2
ELECTRODEPOSITION
OF
THICK
FILMS
OF
SEMICONDUCTORS
FROM
DM
SO
SOLUTIONS
29
2.2.1
CDS
AND
CDSE
29
2.2.2
MISCELLANEOUS
SULFIDES
AND
SELENIDES
32
2.2.3
CDTE
33
2.3
ULTRATHIN
FILMS
AND
ISOLATED
NANOCRYSTAL
DEPOSITION
35
2.3.1
EFFECT
OF
SUBSTRATE
ON
NON-AQUEOUS
DEPOSITED
FILMS
35
2.3.2
EPITAXY
36
XII
CONTENTS
2.3.3
VARIATION
OF
SEMICONDUCTOR
37
2.3.3.1
CDSE
ON
AU
37
2.3.3.2
CD(SE,TE)
ON
AU
42
2.3.3.3
(CD,ZN)SE
ON
AU
43
2.3.3.4
CDS
ON
AU
43
2.3.4
VARIATION
OF
SUBSTRATE
45
2.3.4.1
CDSE
ON
PD
45
2.3.4.2
CDS
ON
PD
47
2.3.4.3
CDSE
ON
AU-PD
ALLOY
47
2.3.4.4
CDSE
ON
AU-CD
ALLOY;
ROCKSALT
CDSE
48
2.4
ELECTRONIC
CHARACTERIZATION
OF
ELECTRODEPOSITED
SEMICONDUCTOR
NANOPARTICLE
FILMS
50
2.4.1
SCANNING
PROBE
CURRENT-VOLTAGE
SPECTROSCOPY
50
2.4.2
PHOTOELECTROCHEMICAL
(PEC)
PHOTOCURRENT
SPECTROSCOPY
58
2.5
POTENTIAL
APPLICATIONS
OF
ELECTRODEPOSITED
NANOCRYSTALLINE
SEMICONDUCTOR
FILMS
62
REFERENCES
64
3
ELECTRODEPOSITION
OF
SUPERLATTICES
AND
MULTILAYERS
67
JAY
A.
SWITZER
3.1
BACKGROUND
ON
SUPERLATTICES
AND
MULTILAYERS
67
3.1.1
INTRODUCTION
67
3.1.2
QUANTUM
CONFINEMENT
IN
MULTIPLE
QUANTUM
WELLS
68
3.1.3
SPIN-DEPENDENT
TRANSPORT
70
3.1.4
MECHANICAL
PROPERTIES
OF
LAYERED
NANOSTRUCTURES
71
3.2
ELECTRODEPOSITION
OF
SUPERLATTICES
AND
MULTILAYERS
72
3.2.1
INTRODUCTION
72
3.2.2
SINGLE
AND
DUAL
BATH
ELECTRODEPOSITION
OF
SUPERLATTICES
AND
MULTILAYERS
72
3.2.3
ELECTRODEPOSITION
OF
METALLIC
MULTILAYERS
AND
SUPERLATTICES
76
3.2.4
ELECTRODEPOSITION
OF
SEMICONDUCTOR
AND
CERAMIC
MULTILAYERS
AND
SUPERLATTICES
78
3.2.4.1
ELECTRODEPOSITION
OF
COMPOUND
SEMICONDUCTOR
FILMS
79
3.2.4.2
ELECTRODEPOSITION
OF
METAL
OXIDE
CERAMIC
FILMS
81
3.2.43
ELECTRODEPOSITION
OF
CERAMIC
SUPERLATTICES
AND
MULTILAYERS
83
3.3
CHARACTERIZATION
OF
SUPERLATTICES
AND
MULTILAYERS
88
3.3.1
X-RAY
DIFFRACTION
88
3.3.2
SCANNING
TUNNELING
MICROSCOPY
93
3.3.3
TRANSMISSION
ELECTRON
MICROSCOPY
93
3.4
RECENT
DEVELOPMENTS
AND
FUTURE
WORK
95
REFERENCES
98
4
POROUS-ETCHED
SEMICONDUCTORS:
FORMATION
AND
CHARACTERIZATION
103
J.
J.
KELLY
AND
D.
VANMAEKELBERGH
4.1
INTRODUCTION
103
CONTENTS
I
XIII
4.2
SEMICONDUCTOR-ETCHING
MECHANISMS
104
4.3
MECHANISMS
OF
POROUS
ETCHING
107
4.4
REVIEW
OF
POROUS-ETCHED
SEMICONDUCTORS
109
4.4.1
SILICON
109
4.4.1.1
ELECTROCHEMISTRY
109
4.4.1.2
MORPHOLOGY
(MICRO-/MESOPOROUS)
111
4.4.1.3
MORPHOLOGY
(MACROPOROUS)
111
4.4.1.4
STAIN
ETCHING
113
4.4.2
IV-IV
MATERIALS
113
4.4.2.1
SII_
X
GE
X
ALLOYS
113
4.4.2.2
SIC
114
4.4.3
III
-
V
MATERIALS
115
4.4.3.1
GAP
115
4.4.3.2
GAAS
116
4.4.3.3
INP
119
4.4.3.4
GAN
120
4.4.4
II-VI
MATERIALS
120
4.4.4.1
CDTE
120
4.4.4.2
ZNTE
121
4.4.5
TITANIUM
DIOXIDE
121
4.5
PHOTOELECTROCHEMICAL
CHARACTERIZATION
122
4.5.1
ELECTRICAL
IMPEDANCE
122
4.5.2
PHOTOCURRENT
126
4.5.3
LUMINESCENCE
129
4.5.4
ELECTRON
TRANSPORT
IN
POROUS
SEMICONDUCTORS
132
4.6
APPLICATIONS
OF
POROUS-ETCHED
SEMICONDUCTORS
134
4.7
CONCLUSIONS
135
REFERENCES
136
5
ELECTROCHEMICAL
FORMATION
AND
MODIFICATION
OF
NANOCRYSTALLINE
POROUS
SILICON
141
WILL
H.
GREEN,
SONIA
LETANT
AND
MICHAEL
J.
SAILOR
5.1
INTRODUCTION
141
5.2
SYNTHESIS
OF
NANOCRYSTALLINE
POROUS
SI,
GE,
GAAS,
GAP,
AND
INP
5.3
JUNCTION
PROPERTIES
OF
SI-ELECTROLYTE
INTERFACES
143
5.3.1
CHEMISTRY
OF
SILICON
IN
AQUEOUS
HF
146
5.3.2
ELECTROCHEMICAL
FORMATION
OF
POROUS
SI
147
5.3.3.1
PHOTOELECTROCHEMICALLY
PATTERNED
POROUS
SI
151
5.3.3.2
POROUS
SI
LAYERS
AND
MULTILAYERS
152
5.4
PROPERTIES
OF
POROUS
SI
154
5.4.1
STRUCTURAL
PROPERTIES
OF
POROUS
SI
155
5.4.2
LUMINESCENCE
PROPERTIES
OF
POROUS
SI
156
5.4.3
ELECTRICAL
PROPERTIES
OF
POROUS
SI
158
5.5
ELECTROLUMINESCENCE
FROM
POROUS
SI
158
5.6
ELECTROCHEMICAL
FUNCTIONALIZATION
160
142
XIV
CONTENTS
5.7
APPLICATIONS
161
REFERENCES
162
6
CHARGE
TRANSPORT
IN
NANOSTRUCTURED
THIN-FILM
ELECTRODES
169
STEN-ERIC
LINDQUIST,
ANDERS
HAGFELDT,
SVEN
SODERGREN,
AND
HENRIK
LINDSTROM
6.1
6.2
6.2.1
6.3
6.4
6.5
6.5.1
6.5.2
6.5.2.1
6.5.2.2
6.5.2.3
6.6
6.7
6.8
6.9
6.9.1
6.9.2
6.10
6.11
6.12
6.13
6.14
6.15
INTRODUCTION
169
FROM
SINGLE
CRYSTAL
TO
QUANTUM
DOTS
170
NANOSTRUCTURED
FILM
ELECTRODES
170
LIMITATIONS
OF
CHARGE
TRANSPORT
172
THE
BREAKDOWN
OF
THE
SCHOTTKY
BARRIER
MODEL
174
ACTION
SPECTRA
ANALYSIS
176
TECHNIQUE
AND
DEFINITIONS
176
THE
ZONES
OF
EFFICIENT
CHARGE
SEPARATION
177
ACTION
SPECTRA
OF
TIO
2
FILM
ELECTRODES
178
PHOTOCURRENT
ACTION
SPECTRA
FROM
POROUS
CDSE
AND
CDS
FILMS
179
SCAVENGERS
IN
THE
ELECTROLYTE
180
THE
DIFFUSION
MODEL
181
LASER-PULSE-INDUCED
CURRENT
TRANSIENTS
183
THE
INFLUENCE
OF
TRAPS
185
CHARGE
TRANSPORT
IN
THE
ELECTROLYTE
186
LIQUID
ELECTROLYTES
186
"
SOLID
ELECTROLYTES
"
188
INTENSITY-MODULATED
PHOTOCURRENT
AND
PHOTOVOLTAGE
SPECTROSCOPY
189
AMBIPOLAR
DIFFUSION
OF
CARRIERS
NANOSTRUCTURES
192
THE
ELECTRICAL
FIELD
AT
THE
NANOSTRUCTURED
SC-BACK-CONTACT
INTERFACE
192
BALLISTIC
ELECTRON
TRANSPORT
195
CHARGE
TRANSPORT
AND
APPLICATIONS
OF
NANOSTRUCTURED
ELECTRODES
195
SUMMARY
196
REFERENCES
197
7
DYE-SENSITIZED
SOLAR
CELLS:
PRINCIPLES
OF
OPERATION
201
DAVID
CAHEN,
MICHAEL
GRATZEL,
JEAN
FRANCOIS
GUILLEMOLES,
AND
GARY
HODES
7.1
7.1.1
7.1.1.1
7.1.1.2
7.1.1.3
7.1.1.4
7.1.1.5
7.1.2
7.1.2.1
7.1.2.2
7.1.2.3
7.2
7.2.1
GENERAL
DESCRIPTION
OF
DSSC
SYSTEMS
201
SOLAR
CELLS,
HOW
DO
THEY
WORK?
201
GENERAL
201
P/N
SOLID-STATE
CELLS
202
PHOTOELECTROCHEMICAL
CELLS
203
PHOTOGALVANIC
CELLS
203
SUMMARY
204
COMPARISON
OF
DYE-SENSITIZED
SOLAR
CELLS
WITH
OTHER
TYPES
204
DESCRIPTION
OF
DSSC
204
GENERAL
MODEL
OF
CELL
ACTION
204
WHAT
ARE
THE
SPECIAL
FEATURES
OF
A
DSSC?
205
DETAILED
DESCRIPTION
OF
DYE-SENSITIZED
SOLAR
CELLS
206
DYE
CHEMISTRY
AND
PHOTOCHEMISTRY:
GENERAL
PRESENTATION
206
CONTENTS
I
XV
7.2.1.1
DYE
MOLECULES
208
7.2.2
NANOCRYSTALLINE
SEMICONDUCTOR
FILM
209
7.2.3
ELECTRON
INJECTION
FROM
DYE
TO
TIO
2
211
7.2.4
THE
IMPORTANCE
OF
THE
POROUS
NANOCRYSTALLINE
STRUCTURE
OF
SEMICONDUCTOR
FILM
211
7.2.4.1
SPACE
CHARGE
LAYER
EFFECTS
212
7.2.4.2
PARTICLE
CHARGING
215
7.2.5
TRAPS
AND
DISCRETE
CHARGE
EFFECTS
215
7.2.5.1
TRAPPING
217
7.2.6
IMPORTANCE
OF
REDOX
POTENTIAL
AND
OF
THE
HOMO
LEVEL
OF
THE
DYE
217
7.3
DSSC
OUTPUT
PARAMETERS
218
7.3.1
PHOTOCURRENT
218
7.3.2
PHOTOVOLTAGE
219
7.3.3
FILL
FACTOR
219
7.3.4
DSSCELL
PERFORMANCE
220
7.4
FURTHER
COMMENTS
ON
THE
MODE
OF
ACTION
OF
THE
DSSC
221
7.5
MODELING
THE
DSSC
223
7.5.1
ENERGY
DIAGRAMS
223
7.5.1.1
EFFECTIVE
MEDIUM
PICTURE
[42,
53]:
ADVANTAGES,
LIMITATIONS
AND
USES
224
7.6
COMPARISON
OF
LIQUID
ELECTROLYTES
AND
SOLID-STATE
DSSCS
226
7.7
POTENTIAL
APPLIKATIONS
227
REFERENCES
227
8
ELECTROCHROMIC
AND
PHOTOELECTROCHROMIC
ASPECTS
OF
SEMICONDUCTOR
NANOSTRUCTURE-MOLECULAR
ASSEMBLY
229
PRASHANT
V
KAMAT
8.1
INTRODUCTION
229
8.2
PREPARATION
AND
CHARACTERIZATION
OF
NANOSTRUCTURED
SEMICONDUCTOR
THIN
FILMS
230
8.2.1
FROM
COLLOIDAL
SUSPENSIONS
230
8.2.2
ELECTROCHEMICAL
DEPOSITION
231
8.2.3
SELF-ASSEMBLED
LAYERS
232
8.3
PHOTOCHROMIC
EFFECTS
232
8.4
ELECTROCHROMIC
EFFECTS
234
8.4.1
NANOSTRUCTURED
METAL
OXIDE
FILMS
234
8.4.2
NANOSTRUCTURED
OXIDE
FILMS
MODIFIED
WITH
DYES
AND
REDOX
CHROMOPHORES
236
8.4.2.1
FROM
COLORLESS
TO
COLORED
FILMS
UNDER
THE
APPLICATION
OF
AN
ELECTROCHEMICAL
BIAS
238
8.4.2.2
FROM
A
COLORED
TO
COLORLESS
WINDOW
USING
REVERSE
BIAS
238
8.4.3
SURFACE-BOUND
FLUOROPROBES
239
8.5
CONCLUDING
REMARKS
242
REFERENCES
243
XVI
I
CONTENTS
9
ELECTRON
TRANSFER
AND
CHARGE
STORAGE
IN
ULTRATHIN
FILMS
LAYER-BY-LAYER
SELF-ASSEMBLED
FROM
POLYELECTROLYTES,
NANOPARTICLES,
AND
NANOPLATELETS
247
THIERRY
P.
CASSAGNEAU
AND
JANOS
H.
FENDLER
9.1
9.1.1
9.1.2
9.1.3
9.2
INTRODUCTION
247
IMPORTANCE
OF
ELECTRON
TRANSFER
AND
CHARGE
STORAGE
247
PRINCIPLES
OF
THE
LAYER-BY-LAYER
SELF-ASSEMBLY
247
SCOPE
OF
THE
REVIEW
249
SELF-ASSEMBLED
LIGHT-EMITTING
DIODES
(LEDS)
AND
PHOTOCHROMIC
AND
ELECTROCHROMIC
DISPLAY
DEVICES
250
9.2.1
9.2.2
9.2.3
9.3
9.3.1
9.3.2
9.4
LEDS
BASED
ON
NANOSTRUCTURED
POLYMERS
FILMS
250
LEDS
BASED
ON
REDOX
POLYMER
FILMS
252
PHOTOCHROMIC
AND
ELECTROCHROMIC
DISPLAY
DEVICES
256
SELF-ASSEMBLED
RECTIFYING
DIODES
258
P-N
JUNCTIONS
260
SCHOTTKY
DIODES
268
SINGLE-ELECTRON
CONDUCTIVITY
-
SELF-ASSEMBLED
COULOMB
BLOCKADE
DEVICES
269
9.5
PHOTOINDUCED
ENERGY
AND
ELECTRON
TRANSFER
IN
SELF-ASSEMBLED
MULTILAYERS
273
9.6
9.7
SELF-ASSEMBLED
ELECTRODES
FOR
LITHIUM
STORAGE
BATTERIES
276
CONCLUSIONS
AND
PERSPECTIVES
281
REFERENCES
282
INDEX
287
LIST
OF
SYMBOLS
299
LIST
OF
ABBREVIATIONS
307 |
any_adam_object | 1 |
building | Verbundindex |
bvnumber | BV013458201 |
classification_rvk | VE 6300 VN 6050 ZN 8700 |
classification_tum | CHE 380f CHE 140f |
ctrlnum | (OCoLC)247679953 (DE-599)BVBBV013458201 |
dewey-full | 620.11297 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 620 - Engineering and allied operations |
dewey-raw | 620.11297 |
dewey-search | 620.11297 |
dewey-sort | 3620.11297 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Chemie / Pharmazie Physik Chemie Elektrotechnik / Elektronik / Nachrichtentechnik |
format | Book |
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genre | 1\p (DE-588)4143413-4 Aufsatzsammlung gnd-content |
genre_facet | Aufsatzsammlung |
id | DE-604.BV013458201 |
illustrated | Illustrated |
indexdate | 2024-08-17T00:11:30Z |
institution | BVB |
isbn | 3527298363 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-009185988 |
oclc_num | 247679953 |
open_access_boolean | |
owner | DE-355 DE-BY-UBR DE-703 DE-20 DE-91G DE-BY-TUM DE-1046 DE-634 DE-11 DE-526 DE-83 |
owner_facet | DE-355 DE-BY-UBR DE-703 DE-20 DE-91G DE-BY-TUM DE-1046 DE-634 DE-11 DE-526 DE-83 |
physical | XVI, 310 S. Ill., graph. Darst. |
publishDate | 2001 |
publishDateSearch | 2001 |
publishDateSort | 2001 |
publisher | Wiley-VCH |
record_format | marc |
spelling | Electrochemistry of nanomaterials Gary Hodes (ed.) Weinheim [u.a.] Wiley-VCH 2001 XVI, 310 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Nanostruktur - Elektrochemie - Aufsatzsammlung Electrochemistry Microelectronics Nanostructured materials Elektrochemie (DE-588)4014241-3 gnd rswk-swf Nanostrukturiertes Material (DE-588)4342626-8 gnd rswk-swf Nanostruktur (DE-588)4204530-7 gnd rswk-swf 1\p (DE-588)4143413-4 Aufsatzsammlung gnd-content Nanostrukturiertes Material (DE-588)4342626-8 s Elektrochemie (DE-588)4014241-3 s DE-604 Nanostruktur (DE-588)4204530-7 s 2\p DE-604 Hodes, Gary Sonstige oth DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=009185988&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 2\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Electrochemistry of nanomaterials Nanostruktur - Elektrochemie - Aufsatzsammlung Electrochemistry Microelectronics Nanostructured materials Elektrochemie (DE-588)4014241-3 gnd Nanostrukturiertes Material (DE-588)4342626-8 gnd Nanostruktur (DE-588)4204530-7 gnd |
subject_GND | (DE-588)4014241-3 (DE-588)4342626-8 (DE-588)4204530-7 (DE-588)4143413-4 |
title | Electrochemistry of nanomaterials |
title_auth | Electrochemistry of nanomaterials |
title_exact_search | Electrochemistry of nanomaterials |
title_full | Electrochemistry of nanomaterials Gary Hodes (ed.) |
title_fullStr | Electrochemistry of nanomaterials Gary Hodes (ed.) |
title_full_unstemmed | Electrochemistry of nanomaterials Gary Hodes (ed.) |
title_short | Electrochemistry of nanomaterials |
title_sort | electrochemistry of nanomaterials |
topic | Nanostruktur - Elektrochemie - Aufsatzsammlung Electrochemistry Microelectronics Nanostructured materials Elektrochemie (DE-588)4014241-3 gnd Nanostrukturiertes Material (DE-588)4342626-8 gnd Nanostruktur (DE-588)4204530-7 gnd |
topic_facet | Nanostruktur - Elektrochemie - Aufsatzsammlung Electrochemistry Microelectronics Nanostructured materials Elektrochemie Nanostrukturiertes Material Nanostruktur Aufsatzsammlung |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=009185988&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT hodesgary electrochemistryofnanomaterials |