Solution processed metal oxide thin films for electronic applications / edited by Zheng Cui and Ghenadii Korotcenkov.

Call Number
621.3815/2
Title
Solution processed metal oxide thin films for electronic applications / edited by Zheng Cui and Ghenadii Korotcenkov.
Publication
Amsterdam : Elsevier, 2020.
Physical Description
1 online resource (180 pages)
Series
Metal Oxides series
Contents
Cover -- Title -- Copyright -- Contents -- Contributors -- Volume Editor Biography -- Preface to the series -- Chapter 1 -- Introduction -- 1.1 -- Solution-processed electronics -- 1.2 -- Metal oxides in solution -- 1.3 -- Structure of the book -- References -- Chapter 2 -- Metal oxide semiconductors and conductors -- 2.1 -- Introduction -- 2.2 -- n-Type metal oxides -- 2.2.1 -- In2O3 -- 2.2.2 -- ZnO -- 2.2.3 -- SnO2 -- 2.2.4 -- ZnO-In2O3-SnO2 (ZITO) -- 2.3 -- P-type metal oxides -- 2.3.1 -- Cu2O -- 2.3.2 -- NiO -- 2.3.3 -- SnO -- References -- Chapter 3 -- Metal oxide dielectrics -- 3.1 -- Introduction
3.2 -- Basics and theory of dielectrics -- 3.3 -- Roles of dielectric layers in thin-film transistors -- 3.4 -- High-k metal oxide dielectrics -- References -- Chapter 4 -- Sol-gel precursor inks and films -- 4.1 -- Introduction -- 4.2 -- Fundamental of sol-gel process -- 4.3 -- Sol-gel precursor inks -- 4.4 -- Sol-gel process of metal oxide film -- 4.4.1 -- Al2O3 film -- 4.4.2 -- HfO2 film -- 4.4.3 -- ZnO film -- 4.4.4 -- TiO2 film -- 4.5 -- Other precursors-based metal oxides inks and films -- References -- Chapter 5 -- Nanoparticles inks -- 5.1 -- Introduction -- 5.2 -- Synthesis of metal oxide nanoparticles
5.2.1 -- Hot-injection method -- 5.2.2 -- Hydrothermal or solvothermal method -- 5.2.3 -- One-pot heating method -- 5.2.4 -- Microwave-assisted method -- 5.2.5 -- Precipitation method -- 5.2.6 -- Sol-gel method -- 5.2.7 -- Continuous flow method -- 5.2.8 -- Ball-milling method -- 5.3 -- Characterization and properties of metal oxide nanoparticles -- 5.3.1 -- Measurement methods -- 5.3.2 -- Physical and chemical properties -- 5.4 -- Formulation of metal oxide nanoparticles inks -- 5.4.1 -- Surfactants -- 5.4.2 -- Long-term stability -- References -- Chapter 6 -- Coating and printing processes
6.1 -- Introduction -- 6.2 -- Nonpatternable solution processes -- 6.2.1 -- Spin coating -- 6.2.2 -- Spray coating -- 6.2.3 -- Bar coating -- 6.3 -- Patternable solution processes -- 6.3.1 -- Inkjet printing -- 6.3.2 -- Templated printing -- 6.4 -- Roll-to-roll solution processes -- 6.5 -- Self-aligned solution processes -- References -- Chapter 7 -- Thermal processes -- 7.1 -- Introduction -- 7.2 -- Internal annealing -- 7.3 -- External annealing -- 7.3.1 -- UV annealing -- 7.3.2 -- Microwave annealing -- 7.3.3 -- High-pressure annealing -- 7.4 -- Low-temperature enabled flexible electronics -- References
Chapter 8 -- Applications in photovoltaics -- 8.1 -- Introduction -- 8.2 -- Metal oxides as buffer layers for OPVs -- 8.3 -- Electron transport layer -- 8.3.1 -- ZnO -- 8.3.2 -- TiO2 -- 8.3.3 -- Other metal oxides -- 8.4 -- Hole transport layer -- 8.4.1 -- MoO3 -- 8.4.2 -- V2O5 -- 8.4.3 -- WOx -- 8.4.4 NiO -- 8.4.5 -- CuOx -- 8.4.6 -- Metal oxide composites -- 8.5 -- Metal oxides as buffer layer for perovskite PV -- 8.6 -- Electron extraction layer -- 8.6.1 -- TiO2 -- 8.6.2 -- ZnO -- 8.6.3 -- SnO2 -- 8.6.4 -- Other metal oxides -- 8.7 -- Hole extraction layer -- 8.7.1 -- NiO -- 8.7.2 -- CuxO -- 8.7.3 -- MoOx
8.7.4 -- Metal oxide composites
Added Author
Cui, Zheng.
Korotchenkov, G. S.
Subject
THIN FILMS.
METALLIC OXIDES.
Couches minces.
Oxydes m�etalliques.
Metallic oxides.
Thin films.
Electronic books.
Electronic books.
Multimedia
Total Ratings: 0
No records found to display.
 
 
 
05093cam a2200589 a 4500
001
 
 
vtls001596356
003
 
 
VRT
005
 
 
20220902124800.0
006
 
 
m     o  d       
007
 
 
cr un|---aucuu
008
 
 
220902s2020    ne      o     000 0 eng d
015
$a GBC065097 $2 bnb
016
7
$a 019806296 $2 Uk
019
$a 1158737704
020
$a 9780128149317 $q (electronic bk.)
020
$a 0128149310 $q (electronic bk.)
020
$z 9780128149300
020
$z 0128149302
035
$a (OCoLC)1159164729 $z (OCoLC)1158737704
035
$a (OCoLC)on1159164729
039
9
$y 202209021248 $z santha
040
$a EBLCP $b eng $e pn $c EBLCP $d YDX $d OPELS $d UKAHL $d OCLCF $d UKMGB $d N$T $d OCLCO $d OCLCQ $d OCLCO $d K6U
050
4
$a TA418.9.T45
082
0
4
$a 621.3815/2 $2 23
245
0
0
$a Solution processed metal oxide thin films for electronic applications / $c edited by Zheng Cui and Ghenadii Korotcenkov.
260
$a Amsterdam : $b Elsevier, $c 2020.
300
$a 1 online resource (180 pages)
336
$a text $b txt $2 rdacontent
337
$a computer $b c $2 rdamedia
338
$a online resource $b cr $2 rdacarrier
490
1
$a Metal Oxides series
505
0
$a Cover -- Title -- Copyright -- Contents -- Contributors -- Volume Editor Biography -- Preface to the series -- Chapter 1 -- Introduction -- 1.1 -- Solution-processed electronics -- 1.2 -- Metal oxides in solution -- 1.3 -- Structure of the book -- References -- Chapter 2 -- Metal oxide semiconductors and conductors -- 2.1 -- Introduction -- 2.2 -- n-Type metal oxides -- 2.2.1 -- In2O3 -- 2.2.2 -- ZnO -- 2.2.3 -- SnO2 -- 2.2.4 -- ZnO-In2O3-SnO2 (ZITO) -- 2.3 -- P-type metal oxides -- 2.3.1 -- Cu2O -- 2.3.2 -- NiO -- 2.3.3 -- SnO -- References -- Chapter 3 -- Metal oxide dielectrics -- 3.1 -- Introduction
505
8
$a 3.2 -- Basics and theory of dielectrics -- 3.3 -- Roles of dielectric layers in thin-film transistors -- 3.4 -- High-k metal oxide dielectrics -- References -- Chapter 4 -- Sol-gel precursor inks and films -- 4.1 -- Introduction -- 4.2 -- Fundamental of sol-gel process -- 4.3 -- Sol-gel precursor inks -- 4.4 -- Sol-gel process of metal oxide film -- 4.4.1 -- Al2O3 film -- 4.4.2 -- HfO2 film -- 4.4.3 -- ZnO film -- 4.4.4 -- TiO2 film -- 4.5 -- Other precursors-based metal oxides inks and films -- References -- Chapter 5 -- Nanoparticles inks -- 5.1 -- Introduction -- 5.2 -- Synthesis of metal oxide nanoparticles
505
8
$a 5.2.1 -- Hot-injection method -- 5.2.2 -- Hydrothermal or solvothermal method -- 5.2.3 -- One-pot heating method -- 5.2.4 -- Microwave-assisted method -- 5.2.5 -- Precipitation method -- 5.2.6 -- Sol-gel method -- 5.2.7 -- Continuous flow method -- 5.2.8 -- Ball-milling method -- 5.3 -- Characterization and properties of metal oxide nanoparticles -- 5.3.1 -- Measurement methods -- 5.3.2 -- Physical and chemical properties -- 5.4 -- Formulation of metal oxide nanoparticles inks -- 5.4.1 -- Surfactants -- 5.4.2 -- Long-term stability -- References -- Chapter 6 -- Coating and printing processes
505
8
$a 6.1 -- Introduction -- 6.2 -- Nonpatternable solution processes -- 6.2.1 -- Spin coating -- 6.2.2 -- Spray coating -- 6.2.3 -- Bar coating -- 6.3 -- Patternable solution processes -- 6.3.1 -- Inkjet printing -- 6.3.2 -- Templated printing -- 6.4 -- Roll-to-roll solution processes -- 6.5 -- Self-aligned solution processes -- References -- Chapter 7 -- Thermal processes -- 7.1 -- Introduction -- 7.2 -- Internal annealing -- 7.3 -- External annealing -- 7.3.1 -- UV annealing -- 7.3.2 -- Microwave annealing -- 7.3.3 -- High-pressure annealing -- 7.4 -- Low-temperature enabled flexible electronics -- References
505
8
$a Chapter 8 -- Applications in photovoltaics -- 8.1 -- Introduction -- 8.2 -- Metal oxides as buffer layers for OPVs -- 8.3 -- Electron transport layer -- 8.3.1 -- ZnO -- 8.3.2 -- TiO2 -- 8.3.3 -- Other metal oxides -- 8.4 -- Hole transport layer -- 8.4.1 -- MoO3 -- 8.4.2 -- V2O5 -- 8.4.3 -- WOx -- 8.4.4 NiO -- 8.4.5 -- CuOx -- 8.4.6 -- Metal oxide composites -- 8.5 -- Metal oxides as buffer layer for perovskite PV -- 8.6 -- Electron extraction layer -- 8.6.1 -- TiO2 -- 8.6.2 -- ZnO -- 8.6.3 -- SnO2 -- 8.6.4 -- Other metal oxides -- 8.7 -- Hole extraction layer -- 8.7.1 -- NiO -- 8.7.2 -- CuxO -- 8.7.3 -- MoOx
505
8
$a 8.7.4 -- Metal oxide composites
588
0
$a Print version record.
650
0
$a THIN FILMS.
650
0
$a METALLIC OXIDES.
650
6
$a Couches minces. $0 (CaQQLa)201-0035883
650
6
$a Oxydes m�etalliques. $0 (CaQQLa)201-0026030
650
7
$a Metallic oxides. $2 fast $0 (OCoLC)fst01017898
650
7
$a Thin films. $2 fast $0 (OCoLC)fst01150018
655
0
$a Electronic books.
655
4
$a Electronic books.
700
1
$a Cui, Zheng.
700
1
$a Korotchenkov, G. S. $q (Gennadii Sergeevich)
776
0
8
$i Print version: $a Cui, Zheng. $t Solution Processed Metal Oxide Thin Films for Electronic Applications. $d San Diego : Elsevier, �2020
830
0
$a Metal oxides series.
856
4
0
$3 ScienceDirect $u https://www.sciencedirect.com/science/book/9780128149300
999
$a VIRTUA               
No Reviews to Display
Contents
Cover -- Title -- Copyright -- Contents -- Contributors -- Volume Editor Biography -- Preface to the series -- Chapter 1 -- Introduction -- 1.1 -- Solution-processed electronics -- 1.2 -- Metal oxides in solution -- 1.3 -- Structure of the book -- References -- Chapter 2 -- Metal oxide semiconductors and conductors -- 2.1 -- Introduction -- 2.2 -- n-Type metal oxides -- 2.2.1 -- In2O3 -- 2.2.2 -- ZnO -- 2.2.3 -- SnO2 -- 2.2.4 -- ZnO-In2O3-SnO2 (ZITO) -- 2.3 -- P-type metal oxides -- 2.3.1 -- Cu2O -- 2.3.2 -- NiO -- 2.3.3 -- SnO -- References -- Chapter 3 -- Metal oxide dielectrics -- 3.1 -- Introduction
3.2 -- Basics and theory of dielectrics -- 3.3 -- Roles of dielectric layers in thin-film transistors -- 3.4 -- High-k metal oxide dielectrics -- References -- Chapter 4 -- Sol-gel precursor inks and films -- 4.1 -- Introduction -- 4.2 -- Fundamental of sol-gel process -- 4.3 -- Sol-gel precursor inks -- 4.4 -- Sol-gel process of metal oxide film -- 4.4.1 -- Al2O3 film -- 4.4.2 -- HfO2 film -- 4.4.3 -- ZnO film -- 4.4.4 -- TiO2 film -- 4.5 -- Other precursors-based metal oxides inks and films -- References -- Chapter 5 -- Nanoparticles inks -- 5.1 -- Introduction -- 5.2 -- Synthesis of metal oxide nanoparticles
5.2.1 -- Hot-injection method -- 5.2.2 -- Hydrothermal or solvothermal method -- 5.2.3 -- One-pot heating method -- 5.2.4 -- Microwave-assisted method -- 5.2.5 -- Precipitation method -- 5.2.6 -- Sol-gel method -- 5.2.7 -- Continuous flow method -- 5.2.8 -- Ball-milling method -- 5.3 -- Characterization and properties of metal oxide nanoparticles -- 5.3.1 -- Measurement methods -- 5.3.2 -- Physical and chemical properties -- 5.4 -- Formulation of metal oxide nanoparticles inks -- 5.4.1 -- Surfactants -- 5.4.2 -- Long-term stability -- References -- Chapter 6 -- Coating and printing processes
6.1 -- Introduction -- 6.2 -- Nonpatternable solution processes -- 6.2.1 -- Spin coating -- 6.2.2 -- Spray coating -- 6.2.3 -- Bar coating -- 6.3 -- Patternable solution processes -- 6.3.1 -- Inkjet printing -- 6.3.2 -- Templated printing -- 6.4 -- Roll-to-roll solution processes -- 6.5 -- Self-aligned solution processes -- References -- Chapter 7 -- Thermal processes -- 7.1 -- Introduction -- 7.2 -- Internal annealing -- 7.3 -- External annealing -- 7.3.1 -- UV annealing -- 7.3.2 -- Microwave annealing -- 7.3.3 -- High-pressure annealing -- 7.4 -- Low-temperature enabled flexible electronics -- References
Chapter 8 -- Applications in photovoltaics -- 8.1 -- Introduction -- 8.2 -- Metal oxides as buffer layers for OPVs -- 8.3 -- Electron transport layer -- 8.3.1 -- ZnO -- 8.3.2 -- TiO2 -- 8.3.3 -- Other metal oxides -- 8.4 -- Hole transport layer -- 8.4.1 -- MoO3 -- 8.4.2 -- V2O5 -- 8.4.3 -- WOx -- 8.4.4 NiO -- 8.4.5 -- CuOx -- 8.4.6 -- Metal oxide composites -- 8.5 -- Metal oxides as buffer layer for perovskite PV -- 8.6 -- Electron extraction layer -- 8.6.1 -- TiO2 -- 8.6.2 -- ZnO -- 8.6.3 -- SnO2 -- 8.6.4 -- Other metal oxides -- 8.7 -- Hole extraction layer -- 8.7.1 -- NiO -- 8.7.2 -- CuxO -- 8.7.3 -- MoOx
8.7.4 -- Metal oxide composites
Subject
THIN FILMS.
METALLIC OXIDES.
Couches minces.
Oxydes m�etalliques.
Metallic oxides.
Thin films.
Electronic books.
Electronic books.
Multimedia