Epitaxial growth of complex metal oxides:
Gespeichert in:
Format: | Buch |
---|---|
Sprache: | English |
Veröffentlicht: |
Amsterdam [u.a.]
Elsevier
2015
|
Schriftenreihe: | Woodhead publishing series in electronic and optical materials
76 |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XVII, 486 S. Ill., graph. Darst. |
ISBN: | 9781782422457 |
Internformat
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Datensatz im Suchindex
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adam_text | 2 3HJ, UK
USA
Contents
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ences, in particular, independent verification of
Date
from tee British Library
15931791
g publications
CS
- und
thek
t
List of contributors
Woodhead Publishing Series in Electronic and Optical Materials
Part One Epitaxial growth of complex metal oxides
1 Growth studies of heteroepitaxial oxide thin films using
reflection high-energy electron diffraction (RHEED)
G, Koster, M Huijben, A Janssen, G Rijnders
1 1 Introduction: reflection high-energy electron diffraction
and pulsed laser deposition
1 2 Basic principles of RHEED
1 3 Variations of the specular intensity during deposition
1 4 RHEED intensity variations during heteroepitaxy: examples
1 5 Conclusions
Acknowledgments
A References
2 amp;? tiering techniques for epitaxial growth of complex oxides
JL, Dawber
*’ 1 Introduction
■ 2 General considerations for sputtering of complex oxides
, 3A practical guide to the sputtered growth of perovskite titanate
i , ferroelectrics
4 Conclusions
/„ + References
Hybrid molecular beam epitaxy for the growth of complex oxide
materials
A P Kajdos, S Stemmer
3 1 Introduction
■i 3 2 Metal-organic precursors for oxide hybrid molecular beam epitaxy
J (HMBE)
3 3 Deposition kinetics of binary oxides from metal-organic (MO)
precursors
vi Contents
3 4 Opening a growth window with MO precursors 57
3 5 Properties of materials grown by hybrid oxide molecular beam
epitaxy (MBE) 60
3 6 Limitations of HMBE and future developments 63
Acknowledgments 63
References 64
4 Chemical solution deposition techniques for epitaxial growth of
complex oxides 69
J E ten Elshof
4 1 Introduction 69
4 2 Reagents and solvents 71
4 3 Types of chemical solution deposition (CSD) processes 73
4 4 Film and pattern formation 77
4 5 Crystallization, densification and epitaxy 82
4 6 Examples of CSD-derived oxide films 86
4 7 Conclusions 90
References 90
5 Epitaxial growth of superconducting oxides 95
H Yamamoto, Y Krockenberger, M Naito
5 1 Introduction 95
5 2 Overview of epitaxial growth of superconducting oxides 96
5 3 Requirements for growth of high-quality complex
metal-oxide films by molecular-beam epitaxy (MBE) 98
5 4 Case studies 100
5 5 Synthesis of new superconductors by thin-film growth
methods 116
5 6 Conclusions and future trends 119
5 7 Sources of further information and advice 119
Acknowledgments 120
References 120
6 Epitaxial growth of magnetic-oxide thin films 129
J A Moyer, RVK Mangalam, L W Martin
6 1 Introduction 129
6 2 Magnetism and major magnetic-oxide systems 129
6 3 The effects of thin-film epitaxy on magnetism 137
6 4 Characterization of magnetic-oxide thin films 152
6 5 Applications of epitaxial magnetic-oxide thin films 154
6 6 Future of epitaxy of complex-oxide magnets 158
Acknowledgments 159
References 159
Contents
Contents
vii
1
with MO precursors 57
n by hybrid oxide molecular beam 60
future developments 63
63
64
niques for epitaxial growth of
69
69
71
deposition (CSD) processes 73
77
and epitaxy 82
xide films 86
90
90
cting oxides 95
M Naito 95
of superconducting oxides 96
high-quality complex lar-beam epitaxy (MBE) 98
100
ctors by thin-film growth 116
s 119
n and advice 119
120
120
e thin films 129
W, Martin 129
tic-oxide systems 129
y on magnetism 137
-oxide thin films 152
etic-oxide thin films 154
-oxide magnets 158
159
159
Part Two Properties and analytical techniques 173
7 The effects of strain on crystal structure and properties during
epitaxial growth of oxides 175
A Vailionis
7 1 Introduction 175
7 2 Crystal structures of perovskites and related oxides 176
7 3 Lattice mismatch-induced stress accommodation
in oxide thin films 179
7 4 Effect of misfit strain-induced distortions on transport
and magnetic properties 195
7 5 Conclusions and future directions 203
References 203
8 Defects, impurities, and transport phenomenon in oxide crystals 209
C Leon, J Santamaria
8 1 Introduction 209
8 2 Oxygen ion transport in yttria-stabilized zirconia (YSZ) 210
8 3 Structural disorder and transport in defect oxide pyrochlores 214
8 4 Space charge effects at grain boundaries 218
8 5 Effects of epitaxial strain on ion transport at oxide interfaces 220
References 224
9 Stoichiometry in epitaxial oxide thin films 231
R Dittmann
9 1 Introduction 231
9 2 General aspects of stoichiometry transfer in physical
vapor deposition techniques 232
9 3 Cation stoichiometry transfer during pulsed laser deposition (PLD)
growth 233
9 4 Adjustment of oxygen stoichiometry during PLD growth 240
9 5 Accommodation of nonstoichiometry in oxide thin films 243
9 6 Impact of nonstoichiometry on oxide thin-film properties 247
9 7 Future trends 251
9 8 Sources of further information 252
Acknowledgments 253
References 253
10 In situ X-ray scattering of epitaxial oxide thin films 263
H Zhou, D D Fong
10 1 X-ray toolkits for probing surface/interface:
an expanding list 263
10 2 Watching surface/interface evolution for epitaxial oxide
synthesis - 272
viii
Contents
Contents
10 3 Interrogating emergent properties at oxide interfaces 277
10 4 Probing functional epitaxial oxide heterostructures for energy
harvesting 283
10 5 Future perspectives 288
Acknowledgments 289
References 289
11 Scanning probe microscopy (SPM) of epitaxial oxide thin films 295
H Guo, J Zhang
11 1 Introduction 295
11 2 Basic principles of scanning probe microscopy 295
11 3 Scanning probe microscopy studies of “colossal”
magnetoresistive (CMR) manganite thin films 301
11 4 Scanning probe microscopy study of ferroelectric
and multiferroic thin films 312
11 5 Cross-sectional scanning tunneling microscopy,
spectroscopy, and electrochemical strain microscopy 320
11 6 Projective views on microscopic characterization
of epitaxial oxide films 321
References 321
Part Three Applications of complex metal oxides 329
12 Optoelectronics: optical properties and electronic structures of
complex metal oxides
W S Choi, SSA Seo, H N Lee
12 1 Introduction
12 2 Introduction to optical spectroscopy
12 3 Optical spectroscopic studies on oxide thin films
and heterostructures
12 4 In situ optical spectroscopic characterization
12 5 Summary and outlook
References
13 Spintronics: an application of complex metal oxides
M Bowen
13 1 Introduction: present stakes for spintronics
13 2 Magnetic interactions in complex metal oxides
13 3 Spintronic techniques
13 4 Complex oxide electrodes for spintronics
13 5 Spacers with intrinsic functionality
331
331
331
336
357
361
361
365
365
366
368
374
381
13 6 Conclusions and pers
Acknowledgments
References
14 Thermoelectric oxides
P Brinks, M Huijben
14 1 Introduction to therm
14 2 Thermoelectric figure
14 3 Promising thermoelec
14 4 Thermoelectric confin
14 5 Epitaxial thermoelec
14 6 Conclusions and outl
References
15 Solid-oxide fuel cells
V Esposito, / Garbayo, S
15 1 Introduction
15 2 Thin films as solid-o
15 3 Cell designs
15 4 Cell performance: sta
References
Index
perries at oxide interfaces
al oxide heterostructures for energy
M) of epitaxial oxide thin films
g probe microscopy
y studies of “colossal”
anganite thin films
y study of ferroelectric
eling microscopy,
hemical strain microscopy
pic characterization
mplex metal oxides
es and electronic structures of
troscopy
s on oxide thin films
characterization
mplex metal oxides
for spintronics
lex metal oxides
or spintronics
onality
Contents ■ j tents IX
277 ? 13 6 Conclusions and perspectives 386
Acknowledgments 388
283 References 388
288 if
289 ■ Ü4 Thermoelectric oxides 397
289 f P Brinks, M Huijben
f 14 1 Introduction to thermoelectrics 397
295 14 2 Thermoelectric figure of merit 398
IT 14 3 Promising thermoelectric materials 401
295 If 1 14 4 Thermoelectric confinement in thin films 407
295 14 5 Epitaxial thermoelectric cobaltate heterostructures 417
1 14 6 Conclusions and outlook 431
301 ; f References 434
312 ■; |ft ■ ir I 15 Solid-oxide fuel cells 443
f V Esposito, 1 Garbayo, S Linderoth, N Pryds
jZU 1 15 1 Introduction 443
t 15 2 Thin films as solid-oxide fuel cell (SOFC) components 448
321 in | 15 3 Cell designs 461
jZI : 1 15-4 Cell performance: status and perspectives 466
1 References 468
329
| Index 479
331
331 it
331 ; If
336 ; €,
357 ■
361 : t
361
365 t
365 ; |:
366 |;
368
374
|
any_adam_object | 1 |
author_GND | (DE-588)1076843131 (DE-588)1198939370 |
building | Verbundindex |
bvnumber | BV042779875 |
classification_rvk | UQ 2200 |
ctrlnum | (OCoLC)926021864 (DE-599)BVBBV042779875 |
discipline | Physik |
format | Book |
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id | DE-604.BV042779875 |
illustrated | Illustrated |
indexdate | 2024-07-10T07:09:27Z |
institution | BVB |
isbn | 9781782422457 |
language | English |
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owner_facet | DE-29T DE-20 DE-384 |
physical | XVII, 486 S. Ill., graph. Darst. |
publishDate | 2015 |
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publisher | Elsevier |
record_format | marc |
series | Woodhead publishing series in electronic and optical materials |
series2 | Woodhead publishing series in electronic and optical materials |
spelling | Epitaxial growth of complex metal oxides ed. by G. Koster ... Amsterdam [u.a.] Elsevier 2015 XVII, 486 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Woodhead publishing series in electronic and optical materials 76 Metalloxide (DE-588)4169619-0 gnd rswk-swf Materialcharakterisierung (DE-588)4720368-7 gnd rswk-swf Dünne Schicht (DE-588)4136925-7 gnd rswk-swf Epitaxie (DE-588)4152545-0 gnd rswk-swf Metalloxide (DE-588)4169619-0 s Epitaxie (DE-588)4152545-0 s Dünne Schicht (DE-588)4136925-7 s Materialcharakterisierung (DE-588)4720368-7 s DE-604 Koster, Gertjan 1971- Sonstige (DE-588)1076843131 oth Huijben, Martinus J. Sonstige oth Rijnders, Augustinus Josephus Helena Maria 1964- Sonstige (DE-588)1198939370 oth Erscheint auch als Online-Ausgabe 978-1-78242-255-6 Woodhead publishing series in electronic and optical materials 76 (DE-604)BV040604945 76 HEBIS Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=028209938&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Epitaxial growth of complex metal oxides Woodhead publishing series in electronic and optical materials Metalloxide (DE-588)4169619-0 gnd Materialcharakterisierung (DE-588)4720368-7 gnd Dünne Schicht (DE-588)4136925-7 gnd Epitaxie (DE-588)4152545-0 gnd |
subject_GND | (DE-588)4169619-0 (DE-588)4720368-7 (DE-588)4136925-7 (DE-588)4152545-0 |
title | Epitaxial growth of complex metal oxides |
title_auth | Epitaxial growth of complex metal oxides |
title_exact_search | Epitaxial growth of complex metal oxides |
title_full | Epitaxial growth of complex metal oxides ed. by G. Koster ... |
title_fullStr | Epitaxial growth of complex metal oxides ed. by G. Koster ... |
title_full_unstemmed | Epitaxial growth of complex metal oxides ed. by G. Koster ... |
title_short | Epitaxial growth of complex metal oxides |
title_sort | epitaxial growth of complex metal oxides |
topic | Metalloxide (DE-588)4169619-0 gnd Materialcharakterisierung (DE-588)4720368-7 gnd Dünne Schicht (DE-588)4136925-7 gnd Epitaxie (DE-588)4152545-0 gnd |
topic_facet | Metalloxide Materialcharakterisierung Dünne Schicht Epitaxie |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=028209938&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV040604945 |
work_keys_str_mv | AT kostergertjan epitaxialgrowthofcomplexmetaloxides AT huijbenmartinusj epitaxialgrowthofcomplexmetaloxides AT rijndersaugustinusjosephushelenamaria epitaxialgrowthofcomplexmetaloxides |