Energy materials: fundamentals to applications
Gespeichert in:
Weitere Verfasser: | , , , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
London
Elsevier
[2021]
|
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | xii, 616 Seiten Illustrationen, Diagramme |
ISBN: | 9780128237106 |
Internformat
MARC
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adam_text | Contents
Contributors ix
Preface xi
I
Fundamentals and overarching
topics
1 Energy materials: Fundamental physics
and latest advances in relevant technology
B S Gedam, N Thejo Kalyani and SJ Dhoble
1 1 Introduction 3
1 2 Energy materials 4
1 3 Fundamental physics 8
1 4 Recent advances in technology 21
1 5 Potential applications 23
1 6 The future 23
1 7 Conclusions 24
References 25
2 Solar cell technology
R M Pujahari
2 1 Introduction 27
2 2 Solar cell design 27
2 3 Solar cell design 38
2 4 Thin-film solar cell technologies 43
References 60
3 Energy materials: synthesis and
characterization techniques
N S Bajaj and R A Joshi
3 1 Introduction 61
3 2 Synthesis techniques 62
3 3 Characterization techniques 65
3 4 Failure parameters 79
3 5 Failure analysis/damage evaluation 79
3 6 Conclusions 80
References 80
4 An extensive study of the adhesion
and antifogging of the transparent
polydimethylsiloxane/Sylgard coating
system
A Syafıq, B Vengadaesvaran, N A Rahim, A K Pandey,
AR Bushroa, K Ramesh and S Ramesh
4 1 Introduction 83
4 2 Methodology 84
4 3 Results and discussions 88
4 4 Conclusion 100
Acknowledgment 100
References 101
Il
Photovoltaic Materials and devices
5 Crystalline silicon solar cells
RM Pujahari
5 1 Introduction 107
5 2 Efficient solar cells 111
5 3 Silicon solar cells and fabrication processes 118
5 4 Large area crystalline silicon solar cells 121
5 5 2D and 3D screen-printed metallization effect
on industrial crystalline silicon solar cells 125
References 137
6 Introduction to solar energy and its
conversion into electrical energy by using
dye-sensitized solar cells
NH Rased, B Vengadaesvaran, SRS Raihan
and N A Rahim
6 1 Introduction 139
6 2 Solar cells 139
vi
CONTENTS
6 3 Dye-sensitized solar cells 141
6 4 Working principle of DSSCs 141
6 5 Anatomy of DSSCs 142
6 6 Materials used as electrades of
DSSCs 143
6 7 Synthesis 158
6 8 Summary 174
Acknowledgment 174
References 174
7 Dye-sensitized solar cells
Prashant K Baviskar and Babasaheb R Sankapal
7 1 Introduction 179
7 2 Construction and working of DSSCs 180
7 3 Materials requirement for DSSCs 183
7 4 Solar cell performance 185
7 5 Performance of DSSCs 190
7 6 Advanced colorful approach 193
7 7 DSSC limitations, commercialization, and
future prospects 194
7 8 Summary and scope 198
References 200
8 Potential of nanooxidic materials and
structures of photoanodes for DSSCs
Markus Diantoro, Siti Wihdatul Himmah, Thachic Suprayogi,
Ulwiyatus Sa’adah, Arif Hidayat, Nandang Mufti and
Nasikhudin
8 1 Introduction 213
8 2 DSSCs 215
8 3 Nanooxidic photoanode materials for DSSCs
(TiO2, ZnO, and SnOQ2) 218
8 4 1D construction for photoanode material
(fibers and rods) 229
8 5 Performance of DSSCs 236
8 6 Summary 241
Acknowledgments 241
References 241
9 Perovskite solar cells
Amol Nande, Swati Raut and SJ Dhoble
9 1 Introduction 249
9 2 Perovskite materials 250
9 3 Synthesis techniques 252
9 4 Perovskite solar cell 254
9 5 Fabrication approach and device anatomy 257
9 6 Requirement of each layer 259
9 7 Working mechanism of PVSCs or device
operation 262
9 8 Characterization technique 263
9 9 Device evaluation 267
9 10 Key challenges 270
9 11 Future outlook 271
9 12 Conclusion 272
References 272
Ill
Electrochemical energy conversion
and storage
10 Layered and spinel structures as
lithium-intercalated compounds for
cathode materials
Z l Radzi, B Vengadaesvaran, S Ramesh and N A Rahim
10 1 Introduction 285
10 2 Layered structures 287
10 3 Spinel structures 301
10 4 Summary 304
References 305
11 Prospects and challenges in the
selection of polymer electrolytes in
advanced lithium—air batteries
M Z Kufian and Z Osman
11 1 Introduction 313
11 2 Lithium—air batteries 314
11 3 Types of LABs 314
11 4 Electrolytes 318
11 5 Polymer host 322
11 6 Type of salt 324
11 7 Anion trapping agent 326
11 8 Solvents 328
11 9 Summary 329
Acknowledgments 329
References 329
CONTENTS
12 Li-S ion batteries: a substitute
for Li-ion storage batteries
Kalpana R Nagde and S J Dhoble
12 1 Introduction 335
12 2 Energy storage materials 335
12 3 Batteries 338
12 4 Novel materials for batteries 342
12 5 Lithium-ion batteries 345
12 6 Prior state-of-the-art of Li-ion batteries 351
12 7 Shortcomings of Li-ion batteries 355
12 8 Lithium—sulfur batteries 357
12 9 Extensive comparison 359
12 10 Current research on Li—S batteries 360
12 11 Applications 363
12 12 Future prospective 365
12 13 Conclusions 366
References 366
13 Glasses and glass-ceramics as sealants
in solid oxide fuel cell applications
P S Anjana, M S, Salinigopal and N Gopakumar
13 1 Introduction 373
13 2 Solid oxide fuel cell 375
13 3 Operation of the SOFC 375
13 4 Components of the SOFC 377
13 5 SOFC component requirements 378
13 6 Requirements of sealants 379
13 7 Methodology 380
13 8 Sealant materials currently used 381
13 9 Conclusions 397
Acknowledgments 398
References 398
Further reading 404
IV
Lighting and Light emitting diodes
14 Role of rare-earth ions for energy-
saving LED lighting devices
Nutan S Satpure and S J Dhoble
14 1 Introduction 407
14 2 Fundamentals 407
14 3 Applications of various phosphor
materials 427
14 4 Phosphor for LED lighting 427
vii
14 5 Prospects for energy-saving
technology 435
14 6 Conclusion and future outlook 436
References 438
15 Synthesis and luminescence study of
silicate-based phosphors for energy-saving
light-emitting diodes
Nilesh Ugemuge, Yatish R Parauha and SJ Dhoble
15 1 Introduction 445
15 2 Approach for energy-saving and eco-friendly
lighting 446
15 3 Synthesis methods for alkaline-earth silicate-
based phosphor 450
15 4 Review of recently reported silicate-based
phosphors 461
15 5 Applications of silicate-based phosphor 469
15 6 Conclusions 473
15 7 Future scope 474
Acknowledements 474
References 475
16 Investigations of energy-efficient
RE(TTA)3dmphen complexes dispersed in
polymer matrices for solid-state lighting
applications
Akhilesh Ugale, N Thejo Kalyani and SJ Dhoble
16 1 Introduction 481
16 2 Solid-state lighting 482
16 3 Requisite of solid-state lighting 483
16 4 Eco-friendly and energy-efficient organic
complexes 483
16 5 Role of rare earths in SSL 486
16 6 Experimental 488
16 7 Result and discussion 491
16 8 Conclusions 501
References 502
17 Synthesis and characterization of
energy-efficient Mqy (M = Zn, Cd, Ca,
and Sr) organometallic complexes for
OLED display applications
Prajakta P Varghe, N Thejo Kalyani, P G Shende and S J Dhoble
17 1 Introduction 505
17 2 Role of quinoline in display technology 507
17 3 Quinoline complexes: prior state of the
art 508
gee
vill
CONTENTS
17 4 Synthesis of green phosphor for displays 509
17 5 Experimental 509
17 6 Results and discussion 510
17 7 Superiority: OLED displays 517
17 8 Limitations 519
17 9 Applications 519
17 10 Conclusions 519
17 11 Future perspectives 520
References 520
V
Practical concerns and beyond
18 Spectral response and quantum
efficiency evaluation of solar cells: a review
M Z Farah Khaleda, B Vengadaesvaran and
NLA Rahim
18 1 Introduction 526
18 2 Factors affecting the performance of solar
cells 527
18 3 Research methodology 533
18 4 Spectral response and measurement
quantities 534
18 5 Recent advancements 544
18 6 Challenges and limitations 556
18 7 Conclusions, future recommendations, and
publication trends 557
Acknowledgments 560
References 561
19 Energy materials: Applications and :
propelling opportunities
N Thejo Kalyani and SJ Dhoble
19 1 Introduction 567
19 2 Overview of novel energy materials for
energy-related applications 567
19 3 Research area connections 577
19 4 Opportunities and daunting challenges 577
19 5 Conclusions 578
19 6 Future outlook 579
References 579
20 Sustainability, recycling, and
lifetime issues of energy materials
N Thejo Kalyani, S J Dhoble, B Vengadacsvaran and
Abdul Kariem Arof
20 1 Introduction 581
20 2 Sustainability, recycling, and lifetime
issues 582
20 3 Energy-harvesting and -conversion
materials 586
20 4 Energy-storing materials 592
20 5 Energy-saving materials 597
20 6 Possible solutions 597
20 7 Conclusions 598
References 599
Index 603
|
adam_txt |
Contents
Contributors ix
Preface xi
I
Fundamentals and overarching
topics
1 Energy materials: Fundamental physics
and latest advances in relevant technology
B S Gedam, N Thejo Kalyani and SJ Dhoble
1 1 Introduction 3
1 2 Energy materials 4
1 3 Fundamental physics 8
1 4 Recent advances in technology 21
1 5 Potential applications 23
1 6 The future 23
1 7 Conclusions 24
References 25
2 Solar cell technology
R M Pujahari
2 1 Introduction 27
2 2 Solar cell design 27
2 3 Solar cell design 38
2 4 Thin-film solar cell technologies 43
References 60
3 Energy materials: synthesis and
characterization techniques
N S Bajaj and R A Joshi
3 1 Introduction 61
3 2 Synthesis techniques 62
3 3 Characterization techniques 65
3 4 Failure parameters 79
3 5 Failure analysis/damage evaluation 79
3 6 Conclusions 80
References 80
4 An extensive study of the adhesion
and antifogging of the transparent
polydimethylsiloxane/Sylgard coating
system
A Syafıq, B Vengadaesvaran, N A Rahim, A K Pandey,
AR Bushroa, K Ramesh and S Ramesh
4 1 Introduction 83
4 2 Methodology 84
4 3 Results and discussions 88
4 4 Conclusion 100
Acknowledgment 100
References 101
Il
Photovoltaic Materials and devices
5 Crystalline silicon solar cells
RM Pujahari
5 1 Introduction 107
5 2 Efficient solar cells 111
5 3 Silicon solar cells and fabrication processes 118
5 4 Large area crystalline silicon solar cells 121
5 5 2D and 3D screen-printed metallization effect
on industrial crystalline silicon solar cells 125
References 137
6 Introduction to solar energy and its
conversion into electrical energy by using
dye-sensitized solar cells
NH Rased, B Vengadaesvaran, SRS Raihan
and N A Rahim
6 1 Introduction 139
6 2 Solar cells 139
vi
CONTENTS
6 3 Dye-sensitized solar cells 141
6 4 Working principle of DSSCs 141
6 5 Anatomy of DSSCs 142
6 6 Materials used as electrades of
DSSCs 143
6 7 Synthesis 158
6 8 Summary 174
Acknowledgment 174
References 174
7 Dye-sensitized solar cells
Prashant K Baviskar and Babasaheb R Sankapal
7 1 Introduction 179
7 2 Construction and working of DSSCs 180
7 3 Materials requirement for DSSCs 183
7 4 Solar cell performance 185
7 5 Performance of DSSCs 190
7 6 Advanced colorful approach 193
7 7 DSSC limitations, commercialization, and
future prospects 194
7 8 Summary and scope 198
References 200
8 Potential of nanooxidic materials and
structures of photoanodes for DSSCs
Markus Diantoro, Siti Wihdatul Himmah, Thachic Suprayogi,
Ulwiyatus Sa’adah, Arif Hidayat, Nandang Mufti and
Nasikhudin
8 1 Introduction 213
8 2 DSSCs 215
8 3 Nanooxidic photoanode materials for DSSCs
(TiO2, ZnO, and SnOQ2) 218
8 4 1D construction for photoanode material
(fibers and rods) 229
8 5 Performance of DSSCs 236
8 6 Summary 241
Acknowledgments 241
References 241
9 Perovskite solar cells
Amol Nande, Swati Raut and SJ Dhoble
9 1 Introduction 249
9 2 Perovskite materials 250
9 3 Synthesis techniques 252
9 4 Perovskite solar cell 254
9 5 Fabrication approach and device anatomy 257
9 6 Requirement of each layer 259
9 7 Working mechanism of PVSCs or device
operation 262
9 8 Characterization technique 263
9 9 Device evaluation 267
9 10 Key challenges 270
9 11 Future outlook 271
9 12 Conclusion 272
References 272
Ill
Electrochemical energy conversion
and storage
10 Layered and spinel structures as
lithium-intercalated compounds for
cathode materials
Z l Radzi, B Vengadaesvaran, S Ramesh and N A Rahim
10 1 Introduction 285
10 2 Layered structures 287
10 3 Spinel structures 301
10 4 Summary 304
References 305
11 Prospects and challenges in the
selection of polymer electrolytes in
advanced lithium—air batteries
M Z Kufian and Z Osman
11 1 Introduction 313
11 2 Lithium—air batteries 314
11 3 Types of LABs 314
11 4 Electrolytes 318
11 5 Polymer host 322
11 6 Type of salt 324
11 7 Anion trapping agent 326
11 8 Solvents 328
11 9 Summary 329
Acknowledgments 329
References 329
CONTENTS
12 Li-S ion batteries: a substitute
for Li-ion storage batteries
Kalpana R Nagde and S J Dhoble
12 1 Introduction 335
12 2 Energy storage materials 335
12 3 Batteries 338
12 4 Novel materials for batteries 342
12 5 Lithium-ion batteries 345
12 6 Prior state-of-the-art of Li-ion batteries 351
12 7 Shortcomings of Li-ion batteries 355
12 8 Lithium—sulfur batteries 357
12 9 Extensive comparison 359
12 10 Current research on Li—S batteries 360
12 11 Applications 363
12 12 Future prospective 365
12 13 Conclusions 366
References 366
13 Glasses and glass-ceramics as sealants
in solid oxide fuel cell applications
P S Anjana, M S, Salinigopal and N Gopakumar
13 1 Introduction 373
13 2 Solid oxide fuel cell 375
13 3 Operation of the SOFC 375
13 4 Components of the SOFC 377
13 5 SOFC component requirements 378
13 6 Requirements of sealants 379
13 7 Methodology 380
13 8 Sealant materials currently used 381
13 9 Conclusions 397
Acknowledgments 398
References 398
Further reading 404
IV
Lighting and Light emitting diodes
14 Role of rare-earth ions for energy-
saving LED lighting devices
Nutan S Satpure and S J Dhoble
14 1 Introduction 407
14 2 Fundamentals 407
14 3 Applications of various phosphor
materials 427
14 4 Phosphor for LED lighting 427
vii
14 5 Prospects for energy-saving
technology 435
14 6 Conclusion and future outlook 436
References 438
15 Synthesis and luminescence study of
silicate-based phosphors for energy-saving
light-emitting diodes
Nilesh Ugemuge, Yatish R Parauha and SJ Dhoble
15 1 Introduction 445
15 2 Approach for energy-saving and eco-friendly
lighting 446
15 3 Synthesis methods for alkaline-earth silicate-
based phosphor 450
15 4 Review of recently reported silicate-based
phosphors 461
15 5 Applications of silicate-based phosphor 469
15 6 Conclusions 473
15 7 Future scope 474
Acknowledements 474
References 475
16 Investigations of energy-efficient
RE(TTA)3dmphen complexes dispersed in
polymer matrices for solid-state lighting
applications
Akhilesh Ugale, N Thejo Kalyani and SJ Dhoble
16 1 Introduction 481
16 2 Solid-state lighting 482
16 3 Requisite of solid-state lighting 483
16 4 Eco-friendly and energy-efficient organic
complexes 483
16 5 Role of rare earths in SSL 486
16 6 Experimental 488
16 7 Result and discussion 491
16 8 Conclusions 501
References 502
17 Synthesis and characterization of
energy-efficient Mqy (M = Zn, Cd, Ca,
and Sr) organometallic complexes for
OLED display applications
Prajakta P Varghe, N Thejo Kalyani, P G Shende and S J Dhoble
17 1 Introduction 505
17 2 Role of quinoline in display technology 507
17 3 Quinoline complexes: prior state of the
art 508
gee
vill
CONTENTS
17 4 Synthesis of green phosphor for displays 509
17 5 Experimental 509
17 6 Results and discussion 510
17 7 Superiority: OLED displays 517
17 8 Limitations 519
17 9 Applications 519
17 10 Conclusions 519
17 11 Future perspectives 520
References 520
V
Practical concerns and beyond
18 Spectral response and quantum
efficiency evaluation of solar cells: a review
M Z Farah Khaleda, B Vengadaesvaran and
NLA Rahim
18 1 Introduction 526
18 2 Factors affecting the performance of solar
cells 527
18 3 Research methodology 533
18 4 Spectral response and measurement
quantities 534
18 5 Recent advancements 544
18 6 Challenges and limitations 556
18 7 Conclusions, future recommendations, and
publication trends 557
Acknowledgments 560
References 561
19 Energy materials: Applications and :
propelling opportunities
N Thejo Kalyani and SJ Dhoble
19 1 Introduction 567
19 2 Overview of novel energy materials for
energy-related applications 567
19 3 Research area connections 577
19 4 Opportunities and daunting challenges 577
19 5 Conclusions 578
19 6 Future outlook 579
References 579
20 Sustainability, recycling, and
lifetime issues of energy materials
N Thejo Kalyani, S J Dhoble, B Vengadacsvaran and
Abdul Kariem Arof
20 1 Introduction 581
20 2 Sustainability, recycling, and lifetime
issues 582
20 3 Energy-harvesting and -conversion
materials 586
20 4 Energy-storing materials 592
20 5 Energy-saving materials 597
20 6 Possible solutions 597
20 7 Conclusions 598
References 599
Index 603 |
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genre_facet | Aufsatzsammlung |
id | DE-604.BV048298153 |
illustrated | Illustrated |
index_date | 2024-07-03T20:05:54Z |
indexdate | 2024-07-10T09:34:33Z |
institution | BVB |
isbn | 9780128237106 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-033677985 |
oclc_num | 1337139993 |
open_access_boolean | |
owner | DE-634 DE-1043 |
owner_facet | DE-634 DE-1043 |
physical | xii, 616 Seiten Illustrationen, Diagramme |
publishDate | 2021 |
publishDateSearch | 2021 |
publishDateSort | 2021 |
publisher | Elsevier |
record_format | marc |
spelling | Energy materials fundamentals to applications edited by S.J. Dhoble, N. Thejo Kalyani, B. Vengadaesvaran, Abdul Kariem Arof London Elsevier [2021] xii, 616 Seiten Illustrationen, Diagramme txt rdacontent n rdamedia nc rdacarrier Energiespeicherung (DE-588)4014722-8 gnd rswk-swf Akkumulator (DE-588)4068497-0 gnd rswk-swf Batterie (DE-588)4004687-4 gnd rswk-swf (DE-588)4143413-4 Aufsatzsammlung gnd-content Batterie (DE-588)4004687-4 s Akkumulator (DE-588)4068497-0 s Energiespeicherung (DE-588)4014722-8 s DE-604 Dhoble, Sanjay J. 1967- (DE-588)1163478156 edt Kalyani, N. Thejo (DE-588)1249437555 edt Vengadaesvaran, B. edt Arof, Abdul Kariem Hj. Mohd edt HEBIS Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=033677985&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Energy materials fundamentals to applications Energiespeicherung (DE-588)4014722-8 gnd Akkumulator (DE-588)4068497-0 gnd Batterie (DE-588)4004687-4 gnd |
subject_GND | (DE-588)4014722-8 (DE-588)4068497-0 (DE-588)4004687-4 (DE-588)4143413-4 |
title | Energy materials fundamentals to applications |
title_auth | Energy materials fundamentals to applications |
title_exact_search | Energy materials fundamentals to applications |
title_exact_search_txtP | Energy materials fundamentals to applications |
title_full | Energy materials fundamentals to applications edited by S.J. Dhoble, N. Thejo Kalyani, B. Vengadaesvaran, Abdul Kariem Arof |
title_fullStr | Energy materials fundamentals to applications edited by S.J. Dhoble, N. Thejo Kalyani, B. Vengadaesvaran, Abdul Kariem Arof |
title_full_unstemmed | Energy materials fundamentals to applications edited by S.J. Dhoble, N. Thejo Kalyani, B. Vengadaesvaran, Abdul Kariem Arof |
title_short | Energy materials |
title_sort | energy materials fundamentals to applications |
title_sub | fundamentals to applications |
topic | Energiespeicherung (DE-588)4014722-8 gnd Akkumulator (DE-588)4068497-0 gnd Batterie (DE-588)4004687-4 gnd |
topic_facet | Energiespeicherung Akkumulator Batterie Aufsatzsammlung |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=033677985&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT dhoblesanjayj energymaterialsfundamentalstoapplications AT kalyaninthejo energymaterialsfundamentalstoapplications AT vengadaesvaranb energymaterialsfundamentalstoapplications AT arofabdulkariemhjmohd energymaterialsfundamentalstoapplications |