Electrode materials for energy storage and conversion:
Intro -- Half Title -- Title Page -- Copyright Page -- Contents -- Foreword -- Preface -- Editors -- Contributors -- 1. Lithium-Ion Batteries: From the Materials' Perspective -- 1.1 Introduction -- 1.2 Brief History of Lithium-Ion Battery Materials -- 1.3 Lithium-Ion Battery and Its Principle o...
Gespeichert in:
Weitere Verfasser: | , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Boca Raton ; London ; New York
CRC Press
2022
|
Ausgabe: | First edition |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Zusammenfassung: | Intro -- Half Title -- Title Page -- Copyright Page -- Contents -- Foreword -- Preface -- Editors -- Contributors -- 1. Lithium-Ion Batteries: From the Materials' Perspective -- 1.1 Introduction -- 1.2 Brief History of Lithium-Ion Battery Materials -- 1.3 Lithium-Ion Battery and Its Principle of Operation -- 1.4 Li-Ion Battery Component Materials -- 1.4.1 Li-Ion Battery Anode Materials, Characteristics, Advantages, and Limitations -- 1.4.1.1 Lithium Metal -- 1.4.1.2 Intercalative Anode Materials -- 1.4.1.2.1 Carbon-Based Anode Materials -- 1.4.1.2.2 Titanium-Based Anodes -- 1.4.1.3 Alloying Anode Materials -- 1.4.1.3.1 Si Alloy Anode Material -- 1.4.1.3.2 Tin-Based Alloy Anodes -- 1.3.1.4 Conversion-Type Anode Materials -- 1.5 Li-ion Battery Cathode Materials, Characteristics, Advantages, and Limitations -- 1.5.1 Layered Transition Metal Oxides Cathode Material -- 1.5.1.1 Lithium Cobalt Oxides (LiCoO2) -- 1.5.1.2 LiMn2O4 Cathode Material -- 1.5.2 Olivine Transition Metal Phosphates (LiFePO4) Cathode Material -- 1.5.3 Fluoride-Based Compounds -- 1.5.4 Polyanionic Compound Cathode Material -- 1.5.5 Other Transition Metal Oxide Cathode Materials -- 1.5.5.1 Vanadium-Based Cathode Materials -- 1.5.5.2 Advanced/Green Cathode Materials -- 1.6 Li-Ion Battery Electrolyte and Separator Materials -- 1.6.1 Li-Ion Battery Electrolyte Materials -- 1.6.2 Li-Ion Battery Separator Materials -- 1.6.3 Other Li-Ion Battery Materials - Conductive Additives, Current Collector, and Binder -- 1.7 Synthesis and Characterization of Li-Ion Battery Electrode Materials -- 1.8 Li-Ion Battery Manufacturing -- 1.8.1 Slurry Preparation -- 1.8.2 Coating and Drying -- 1.8.3 Calendaring -- 1.8.4 Cutting of Electrodes -- 1.8.5 Cell Assembly -- 1.8.6 Electrolyte Filling and Formation -- 1.9 Conclusion and Future Trends -- Acknowledgements -- References |
Beschreibung: | xviii, 497 Seiten Illustrationen, Diagramme |
ISBN: | 9780367697907 9780367703042 |
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520 | 3 | |a Intro -- Half Title -- Title Page -- Copyright Page -- Contents -- Foreword -- Preface -- Editors -- Contributors -- 1. Lithium-Ion Batteries: From the Materials' Perspective -- 1.1 Introduction -- 1.2 Brief History of Lithium-Ion Battery Materials -- 1.3 Lithium-Ion Battery and Its Principle of Operation -- 1.4 Li-Ion Battery Component Materials -- 1.4.1 Li-Ion Battery Anode Materials, Characteristics, Advantages, and Limitations -- 1.4.1.1 Lithium Metal -- 1.4.1.2 Intercalative Anode Materials -- 1.4.1.2.1 Carbon-Based Anode Materials -- 1.4.1.2.2 Titanium-Based Anodes -- 1.4.1.3 Alloying Anode Materials -- 1.4.1.3.1 Si Alloy Anode Material -- 1.4.1.3.2 Tin-Based Alloy Anodes -- 1.3.1.4 Conversion-Type Anode Materials -- 1.5 Li-ion Battery Cathode Materials, Characteristics, Advantages, and Limitations -- 1.5.1 Layered Transition Metal Oxides Cathode Material -- 1.5.1.1 Lithium Cobalt Oxides (LiCoO2) -- 1.5.1.2 LiMn2O4 Cathode Material -- 1.5.2 Olivine Transition Metal Phosphates (LiFePO4) Cathode Material -- 1.5.3 Fluoride-Based Compounds -- 1.5.4 Polyanionic Compound Cathode Material -- 1.5.5 Other Transition Metal Oxide Cathode Materials -- 1.5.5.1 Vanadium-Based Cathode Materials -- 1.5.5.2 Advanced/Green Cathode Materials -- 1.6 Li-Ion Battery Electrolyte and Separator Materials -- 1.6.1 Li-Ion Battery Electrolyte Materials -- 1.6.2 Li-Ion Battery Separator Materials -- 1.6.3 Other Li-Ion Battery Materials - Conductive Additives, Current Collector, and Binder -- 1.7 Synthesis and Characterization of Li-Ion Battery Electrode Materials -- 1.8 Li-Ion Battery Manufacturing -- 1.8.1 Slurry Preparation -- 1.8.2 Coating and Drying -- 1.8.3 Calendaring -- 1.8.4 Cutting of Electrodes -- 1.8.5 Cell Assembly -- 1.8.6 Electrolyte Filling and Formation -- 1.9 Conclusion and Future Trends -- Acknowledgements -- References | |
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Contents Foreword. ix Preface. xi Editors. xiii Contributors. xv Chapter 1 Lithium-Ion Batteries: From the Materials’ Perspective. 1 Camillus Sunday Obayi, Paul Sunday Nnamchi, and Fabian I. Ezema Chapter 2 Carbon Derivatives in Performance Improvement of Lithium-Ion Battery Electrodes. 23 Raphael Μ. Obodo, Assumpta C. Nwanya, Ishaq Ahmad, Mesfin A. Kebede, and Fabian I. Ezema Chapter 3 Current Status and Trends in Spinel Cathode Materials for Lithium-Ion Battery.35 Mesfin A. Kebede, Nithyadharseni Palaniyandy, Lehlohonolo F. Koao, and Fabian I. Ezema, Motlalepulo R. Mhlongo Chapter 4 Zinc Anode in Hydrodynamically Enhanced Aqueous Battery Systems. 47 Philips Chidubem Tagbo, Chukwujekwu Augustine Okaro, Cyril Oluchukwu Ugwuoke, Henry Uchenna Obetta, Onyeka
Stanislaus Okwundu, Sabastine Ezugwu, and Fabian Լ Ezema Chapter 5 Advanced Materials for Energy Storage Devices.71 Fekadu Gashaw Hone, Newayemedhin A. Tegegne, and Dinsefa Mensur Andoshe Chapter 6 LigPSsX (X = Cl, Br, or I): A Family of Li-Rich Inorganic Solid Electrolytes for All-Solid-State Battery.109 Anukul K. Thakur and Mandira Majumder Chapter 7 Recent Advances in Usage of Cobalt Oxide Nanomaterials as Electrode Material for Supercapacitors. 141 Jude N. Udeh, Raphael Μ. Obodo, Agnes C Nkele, Assumpta C. Nwanya, Paul Μ. Ejikeme, and Fabian I. Ezema Chapter 8 Recent Developments in Metal Ferrite Materials for Supercapacitor Applications. 171 Mary O. Nwodo, Raphael Μ. Obodo, Assumpta C. Nwanya, A.B.C. Ekwealor, and Fabian I. Ezema Chapter 9 Advances in Nickel-Derived Metal-Organic Framework-Based Electrodes for High-Performance Supercapacitor. 213 Blessing N. Ezealigo, Ebubechukwu N. Dim, and Fabian I. Ezema
vi Contents Chapter 10 The Place of Biomass-Based Electrode Materials in Next-Generation Energy Conversion and Storage.229 Chioma E. Njoku, Innocent S. Ike, Adeolu A. Adediran, and Cynthia C. Nwaeju Chapter 11 Synthesis and Electrochemical Properties of Graphene. 263 Sylvester Μ. Mbam, Raphael Μ. Obodo, Assumpta C. Nwanya, А. В. С. Ekwealor, Ishaq Ahmad, and Fabian I. Ezema Chapter 12 Dual Performance of Fuel Cells as Efficient Energy Harvesting and Storage Systems. 279 Agnes Chinecherem Nkele, Fabian I. Ezema, and Mesfin A. Kebede Chapter 13 The Potential Role of Electrocatalysts in Electrofuels Generation and Fuel Cell Application. 289 Xolile Fuku, Andiié Mkhohlakali, Nqobile Xaba, and Mmalewane Modibedi Chapter 14 Reliability Study of Solar Photovoltaic Systems for Long-Term Use. 309 Zikhona Tshemese, Farai Dzūke, Linda Z. Linganiso, and Kittessa Roro Chapter 15 Physical Methods to Fabricate TiO2 QDs for Optoelectronics Applications. 321 Cyril Oluchukwu Ugwuoke, Sabastine Ezugwu, S. L. Mammah, A.B.C. Ekwealor, Mutsumi Suguyima, and Fabian I. Ezema Chapter 16 Chemical Spray Pyrolysis Method to Fabricate CdO Thin Films for TCO Applications. 339 Μ. Anusuya and V. Saravanan
Chapter 17 Photovoltaic Characteristics and Applications. 351 Mkpamdi N. Eke Chapter 18 Comparative Study of Different Dopants on the Structural and Optical Properties of Chemically Deposited Antimony Sulphide Thin Films.365 Patrick A. Nwofe and Chinenye Ezeokoye Chapter 19 Research Progress in Synthesis and Electrochemical Performance of Bismuth Oxide. 379 Sylvester Μ. Mbam, Raphael Μ. Obodo, Assumpta, C. Nwanya, A. B. C. Ekwealor, Ishaq Ahmad, and Fabian I. Ezema Chapter 20 Earth-Abundant Materials for Solar Cell Applications. 397 Agnes Chinecherem Nkele, Sabastine Ezugwu, Mutsumi Suguyima, and Fabian I. Ezema Chapter 21 New Perovskite Materials for Solar Cell Applications. 411 Agnes Chinecherem Nkele, Sabastine Ezugwu, Mutsumi Suguyima, and Fabian I. Ezema Chapter 22 The Application of Carbon and Graphene Quantum Dots to Emerging Optoelectronic Devices. 421 Cyril Oluchukwu Ugwuoke, Sabastine Ezugwu, S. L. Mammah, A.B.C. Ekwealor, and Fabian I. Ezema
Contents vii Chapter 23 Solar Cell Technology: Challenges and Progress.437 Newayemedhin A. Tegegne and Fekadu Gashaw Hone Chapter 24 Stannate Materials for Solar Energy Applications.473 Calister N. Eze, Raphael Μ. Obodo, Mesfin A. Kebede, and Fabian. I. Ezema Index . 491 |
adam_txt |
Contents Foreword. ix Preface. xi Editors. xiii Contributors. xv Chapter 1 Lithium-Ion Batteries: From the Materials’ Perspective. 1 Camillus Sunday Obayi, Paul Sunday Nnamchi, and Fabian I. Ezema Chapter 2 Carbon Derivatives in Performance Improvement of Lithium-Ion Battery Electrodes. 23 Raphael Μ. Obodo, Assumpta C. Nwanya, Ishaq Ahmad, Mesfin A. Kebede, and Fabian I. Ezema Chapter 3 Current Status and Trends in Spinel Cathode Materials for Lithium-Ion Battery.35 Mesfin A. Kebede, Nithyadharseni Palaniyandy, Lehlohonolo F. Koao, and Fabian I. Ezema, Motlalepulo R. Mhlongo Chapter 4 Zinc Anode in Hydrodynamically Enhanced Aqueous Battery Systems. 47 Philips Chidubem Tagbo, Chukwujekwu Augustine Okaro, Cyril Oluchukwu Ugwuoke, Henry Uchenna Obetta, Onyeka
Stanislaus Okwundu, Sabastine Ezugwu, and Fabian Լ Ezema Chapter 5 Advanced Materials for Energy Storage Devices.71 Fekadu Gashaw Hone, Newayemedhin A. Tegegne, and Dinsefa Mensur Andoshe Chapter 6 LigPSsX (X = Cl, Br, or I): A Family of Li-Rich Inorganic Solid Electrolytes for All-Solid-State Battery.109 Anukul K. Thakur and Mandira Majumder Chapter 7 Recent Advances in Usage of Cobalt Oxide Nanomaterials as Electrode Material for Supercapacitors. 141 Jude N. Udeh, Raphael Μ. Obodo, Agnes C Nkele, Assumpta C. Nwanya, Paul Μ. Ejikeme, and Fabian I. Ezema Chapter 8 Recent Developments in Metal Ferrite Materials for Supercapacitor Applications. 171 Mary O. Nwodo, Raphael Μ. Obodo, Assumpta C. Nwanya, A.B.C. Ekwealor, and Fabian I. Ezema Chapter 9 Advances in Nickel-Derived Metal-Organic Framework-Based Electrodes for High-Performance Supercapacitor. 213 Blessing N. Ezealigo, Ebubechukwu N. Dim, and Fabian I. Ezema
vi Contents Chapter 10 The Place of Biomass-Based Electrode Materials in Next-Generation Energy Conversion and Storage.229 Chioma E. Njoku, Innocent S. Ike, Adeolu A. Adediran, and Cynthia C. Nwaeju Chapter 11 Synthesis and Electrochemical Properties of Graphene. 263 Sylvester Μ. Mbam, Raphael Μ. Obodo, Assumpta C. Nwanya, А. В. С. Ekwealor, Ishaq Ahmad, and Fabian I. Ezema Chapter 12 Dual Performance of Fuel Cells as Efficient Energy Harvesting and Storage Systems. 279 Agnes Chinecherem Nkele, Fabian I. Ezema, and Mesfin A. Kebede Chapter 13 The Potential Role of Electrocatalysts in Electrofuels Generation and Fuel Cell Application. 289 Xolile Fuku, Andiié Mkhohlakali, Nqobile Xaba, and Mmalewane Modibedi Chapter 14 Reliability Study of Solar Photovoltaic Systems for Long-Term Use. 309 Zikhona Tshemese, Farai Dzūke, Linda Z. Linganiso, and Kittessa Roro Chapter 15 Physical Methods to Fabricate TiO2 QDs for Optoelectronics Applications. 321 Cyril Oluchukwu Ugwuoke, Sabastine Ezugwu, S. L. Mammah, A.B.C. Ekwealor, Mutsumi Suguyima, and Fabian I. Ezema Chapter 16 Chemical Spray Pyrolysis Method to Fabricate CdO Thin Films for TCO Applications. 339 Μ. Anusuya and V. Saravanan
Chapter 17 Photovoltaic Characteristics and Applications. 351 Mkpamdi N. Eke Chapter 18 Comparative Study of Different Dopants on the Structural and Optical Properties of Chemically Deposited Antimony Sulphide Thin Films.365 Patrick A. Nwofe and Chinenye Ezeokoye Chapter 19 Research Progress in Synthesis and Electrochemical Performance of Bismuth Oxide. 379 Sylvester Μ. Mbam, Raphael Μ. Obodo, Assumpta, C. Nwanya, A. B. C. Ekwealor, Ishaq Ahmad, and Fabian I. Ezema Chapter 20 Earth-Abundant Materials for Solar Cell Applications. 397 Agnes Chinecherem Nkele, Sabastine Ezugwu, Mutsumi Suguyima, and Fabian I. Ezema Chapter 21 New Perovskite Materials for Solar Cell Applications. 411 Agnes Chinecherem Nkele, Sabastine Ezugwu, Mutsumi Suguyima, and Fabian I. Ezema Chapter 22 The Application of Carbon and Graphene Quantum Dots to Emerging Optoelectronic Devices. 421 Cyril Oluchukwu Ugwuoke, Sabastine Ezugwu, S. L. Mammah, A.B.C. Ekwealor, and Fabian I. Ezema
Contents vii Chapter 23 Solar Cell Technology: Challenges and Progress.437 Newayemedhin A. Tegegne and Fekadu Gashaw Hone Chapter 24 Stannate Materials for Solar Energy Applications.473 Calister N. Eze, Raphael Μ. Obodo, Mesfin A. Kebede, and Fabian. I. Ezema Index . 491 |
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publisher | CRC Press |
record_format | marc |
spelling | Electrode materials for energy storage and conversion Edited by Mesfin A. Kebede, Fabian I. Enzema First edition Boca Raton ; London ; New York CRC Press 2022 xviii, 497 Seiten Illustrationen, Diagramme txt rdacontent n rdamedia nc rdacarrier Intro -- Half Title -- Title Page -- Copyright Page -- Contents -- Foreword -- Preface -- Editors -- Contributors -- 1. Lithium-Ion Batteries: From the Materials' Perspective -- 1.1 Introduction -- 1.2 Brief History of Lithium-Ion Battery Materials -- 1.3 Lithium-Ion Battery and Its Principle of Operation -- 1.4 Li-Ion Battery Component Materials -- 1.4.1 Li-Ion Battery Anode Materials, Characteristics, Advantages, and Limitations -- 1.4.1.1 Lithium Metal -- 1.4.1.2 Intercalative Anode Materials -- 1.4.1.2.1 Carbon-Based Anode Materials -- 1.4.1.2.2 Titanium-Based Anodes -- 1.4.1.3 Alloying Anode Materials -- 1.4.1.3.1 Si Alloy Anode Material -- 1.4.1.3.2 Tin-Based Alloy Anodes -- 1.3.1.4 Conversion-Type Anode Materials -- 1.5 Li-ion Battery Cathode Materials, Characteristics, Advantages, and Limitations -- 1.5.1 Layered Transition Metal Oxides Cathode Material -- 1.5.1.1 Lithium Cobalt Oxides (LiCoO2) -- 1.5.1.2 LiMn2O4 Cathode Material -- 1.5.2 Olivine Transition Metal Phosphates (LiFePO4) Cathode Material -- 1.5.3 Fluoride-Based Compounds -- 1.5.4 Polyanionic Compound Cathode Material -- 1.5.5 Other Transition Metal Oxide Cathode Materials -- 1.5.5.1 Vanadium-Based Cathode Materials -- 1.5.5.2 Advanced/Green Cathode Materials -- 1.6 Li-Ion Battery Electrolyte and Separator Materials -- 1.6.1 Li-Ion Battery Electrolyte Materials -- 1.6.2 Li-Ion Battery Separator Materials -- 1.6.3 Other Li-Ion Battery Materials - Conductive Additives, Current Collector, and Binder -- 1.7 Synthesis and Characterization of Li-Ion Battery Electrode Materials -- 1.8 Li-Ion Battery Manufacturing -- 1.8.1 Slurry Preparation -- 1.8.2 Coating and Drying -- 1.8.3 Calendaring -- 1.8.4 Cutting of Electrodes -- 1.8.5 Cell Assembly -- 1.8.6 Electrolyte Filling and Formation -- 1.9 Conclusion and Future Trends -- Acknowledgements -- References Energiespeicherung (DE-588)4014722-8 gnd rswk-swf Energieumwandlung (DE-588)4014730-7 gnd rswk-swf Elektrode (DE-588)4014247-4 gnd rswk-swf Elektrochemische Energieumwandlung (DE-588)4151758-1 gnd rswk-swf Elektrode (DE-588)4014247-4 s Energieumwandlung (DE-588)4014730-7 s Energiespeicherung (DE-588)4014722-8 s Elektrochemische Energieumwandlung (DE-588)4151758-1 s DE-604 Kebede, Mesfin A. (DE-588)1223554309 edt Ezema, Fabian I. (DE-588)1223554783 edt Erscheint auch als Online-Ausgabe 978-1-003-14558-5 Digitalisierung UB Bayreuth - ADAM Catalogue Enrichment application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=033591678&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Electrode materials for energy storage and conversion Energiespeicherung (DE-588)4014722-8 gnd Energieumwandlung (DE-588)4014730-7 gnd Elektrode (DE-588)4014247-4 gnd Elektrochemische Energieumwandlung (DE-588)4151758-1 gnd |
subject_GND | (DE-588)4014722-8 (DE-588)4014730-7 (DE-588)4014247-4 (DE-588)4151758-1 |
title | Electrode materials for energy storage and conversion |
title_auth | Electrode materials for energy storage and conversion |
title_exact_search | Electrode materials for energy storage and conversion |
title_exact_search_txtP | Electrode materials for energy storage and conversion |
title_full | Electrode materials for energy storage and conversion Edited by Mesfin A. Kebede, Fabian I. Enzema |
title_fullStr | Electrode materials for energy storage and conversion Edited by Mesfin A. Kebede, Fabian I. Enzema |
title_full_unstemmed | Electrode materials for energy storage and conversion Edited by Mesfin A. Kebede, Fabian I. Enzema |
title_short | Electrode materials for energy storage and conversion |
title_sort | electrode materials for energy storage and conversion |
topic | Energiespeicherung (DE-588)4014722-8 gnd Energieumwandlung (DE-588)4014730-7 gnd Elektrode (DE-588)4014247-4 gnd Elektrochemische Energieumwandlung (DE-588)4151758-1 gnd |
topic_facet | Energiespeicherung Energieumwandlung Elektrode Elektrochemische Energieumwandlung |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=033591678&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT kebedemesfina electrodematerialsforenergystorageandconversion AT ezemafabiani electrodematerialsforenergystorageandconversion |