Produktbild: Water Splitting

Water Splitting Production of Hydrogen

Fr. 263.00

inkl. gesetzl. MwSt., Versandkostenfrei


Beschreibung

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

04.08.2025

Herausgeber

Inamuddin + weitere

Verlag

Wiley

Seitenzahl

336

Maße (L/B/H)

23.4/15.8/2.5 cm

Gewicht

602 g

Sprache

Englisch

ISBN

978-1-394-24762-2

Beschreibung

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

04.08.2025

Herausgeber

Verlag

Wiley

Seitenzahl

336

Maße (L/B/H)

23.4/15.8/2.5 cm

Gewicht

602 g

Sprache

Englisch

ISBN

978-1-394-24762-2

Herstelleradresse

Libri GmbH
Europaallee 1
36244 Bad Hersfeld
DE

Email: gpsr@libri.de

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  • Produktbild: Water Splitting
  • Preface xi

    1 Thermodynamics of Electrochemical Water Splitting 1
    Manash P. Nath, Manju Kumari Jaiswal, Suvankar Deka and Biswajit Choudhury

    1.1 Introduction 2

    1.2 Thermodynamic Parameters 3

    1.3 Thermodynamics of Water Splitting 4

    1.4 Factor Dependence on the Thermodynamics of Water Splitting 6

    1.5 Applications in Electrolysis 8

    1.6 Conclusion 18

    2 Kinetics of Electrochemical Water Splitting 23
    Suvankar Deka, Manju Kumari Jaiswal, Manash P. Nath and Biswajit Choudhury

    2.1 Introduction 24

    2.2 Fundamentals of Water Splitting 25

    2.3 Kinetic Parameters 27

    2.4 Unraveling Kinetics in the Realm of HER and OER 34

    2.5 Conclusion 43

    3 Perovskite Electrocatalyst for Water Splitting 49
    Nawishta Jabeen, Imtiaz Ahmad Khan, Adeela Naz and Ahmad Hussain

    3.1 Introduction 50

    3.2 Efficient and Stable Electrocatalysts for Water Splitting 53

    3.3 Surface Effect Mechanisms in Perovskites 54

    3.4 ORR, OER, and HERS in Perovskite Catalysts 58

    3.5 Perovskite-Based Electrodes for Water Splitting 63

    3.6 Density-Functional Theory-Based Calculations for Perovskite Electrocatalysts 64

    3.7 Challenges for Water Splitting in Bi-Functional Perovskite Catalysts 67

    3.8 Future Outlook 68

    3.9 Conclusion 69

    4 Design and Engineering of Photoelectrodes 75
    Katarzyna Grochowska, Ameer Nasih, Saiful Islam Khan and Katarzyna Siuzdak

    4.1 Introduction 75

    4.2 Modifications of Semiconductors--A Short Overview 78

    4.3 Oxide-Based Semiconductors for Water Splitting 86

    4.4 Non-Oxide Semiconductors for Photoelectrochemical Water Splitting 96

    4.5 Organic Semiconductors for Photoelectrochemical Water Splitting 98

    4.6 Conclusions 101

    5 MXene Electrocatalysts for Water Splitting 111
    Dujearic-Stephane Kouao and Katarzyna Siuzdak

    5.1 Introduction 111

    5.2 Overview of the Synthesis of MXenes 113

    5.3 Kinetic and Reaction Mechanism of Electrocatalytic Water Splitting 118

    5.4 MXene-Based Electrocatalyst for Hydrogen Evolution Reaction 122

    5.5 MXene-Based Electrocatalyst for Oxygen Evolution Reaction 128

    5.6 Conclusion 130

    6 Inorganic Photocatalysts for Water Splitting 139
    Nogueira, A. E., Ribeiro, L. S., Torres, J. A., Sala, R. L., Pinto F. M., La Porta F. A. and Santos, F. L.

    6.1 Introduction 140

    6.2 Photocatalysis Mechanisms 141

    6.3 Properties of Photocatalysts 144

    6.4 Examples of Inorganic Photocatalysts 147

    6.5 Enhancement Strategies 151

    6.6 Summary and Outlook 160

    7 Functional Materials for Water Splitting 171
    Figen Balo and Lutfu S. Sua

    7.1 Introduction 171

    7.2 MCDM Analysis 185

    7.3 Conclusions 192

    8 Nanotechnology in Water Splitting Research 211
    Balaji Parasuraman, Nazar Riswana Barveen, Hariprasath Rangaraju and Pazhanivel Thangavelu

    8.1 Introduction 211

    8.2 Photoelectrochemical Water Splitting 214

    8.3 Photocatalytic Water Splitting 217

    8.4 Nanomaterials in Hydrogen Evaluation 220

    8.5 Summary and Future Perspectives 226

    9 Hydrogen Utilization: Fuel Cells and Energy Storage 233
    Srijita Basumallick

    9.1 Importance of Fuel Cells 233

    10 Catalyst for Anodic Oxygen Evolution Reaction 245
    Soner Cakar and Mahmut Özacar

    10.1 Introduction 246

    10.2 Noble Metal Catalysts for OER 247

    10.3 Non-Noble Metal Catalysts for OER 255

    10.4 Other Catalysts for OER 266

    10.5 Conclusion 266

    11 Performance Characterization and Analysis of Electrolyzers 277
    Mehmet Fatih Kaya, Bulut Hüner, Murat Kisti and Nesrin Demir

    11.1 Introduction 278

    11.2 Fundamentals of Electrolysis 280

    11.3 Performance Metrics 286

    11.4 Performance Analysis 288

    11.5 Advanced Techniques and Modeling 292

    11.6 Experimental Procedures for Characterizing Electrolyzer Performance 296

    11.7 Future Trends and Challenges 299

    11.8 Conclusion 300

    Acknowledgments 301

    References 301

    Index 309