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Defect Engineering in Photocatalysis

Editat de Chuanyi Wang, Abdelkader Labidi, Qiuhui Zhu
en Limba Engleză Hardback – 22 apr 2026

Detailed reference covering essential concepts, perspectives, and practical skills for optimizing photocatalytic reactions via defect engineering

Defect Engineering in Photocatalysis: From Fundamentals to Applications covers various types of defects such as vacancies, impurities, doping, surface defects, and volume defects and discusses their effects on charge carrier dynamics and photocatalytic features of photocatalytic materials. The book highlights applications of defect-engineered photocatalysts in several areas including energy conversion and environmental remediation. Detailed case studies and research findings for applications in organic chemistry and phototherapy are included throughout.

This book provides a comprehensive overview of the principles and mechanisms of photocatalysis for sterilization, reviews advanced designs of defective photocatalytic materials to improve their efficiency for nano-/micro-plastics photodegradation and their transformation into value-added chemicals and fuels, details the use of defective photocatalytic materials for enhancing desalination processes, highlighting the importance of efficient salt removal and water purification by way of photocatalysis processes, and delivers insights on potential defective photocatalysts in wastewater treatment technologies.

Other sample topics explored in Defect Engineering in Photocatalysis include:

  • Mechanisms of defect formation including band gap engineering, charge carrier transfer, concentration of defects, defect-interface interactions, and photostability
  • Defect engineering as a method to customize the photocatalytic properties of titanium dioxide (TiO2) and other metal oxides such as WO3 and ZnO
  • The importance of defect control in enhancing light absorption, charge separation, and photocatalytic activity
  • Usage of defective photocatalytic materials in various organic transformations, including C-C and C-X bond formation, C-H functionalization, and cross-coupling reactions

Defect Engineering in Photocatalysis offers valuable insights into the design and optimization of photocatalytic materials via defect engineering for catalytic and inorganic chemists, materials scientists, chemical engineers, physicists, and professionals in the semiconductor industry.

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Specificații

ISBN-13: 9783527354535
ISBN-10: 3527354530
Pagini: 432
Ilustrații: 121 schwarz-weiße Abbildungen, 15 schwarz-weiße Tabellen
Dimensiuni: 177 x 248 x 28 mm
Greutate: 0.95 kg
Editura: Wiley-VCH GmbH

Notă biografică

Chuanyi Wang is a Distinguished Professor at Shaanxi University of Science and Technology (SUST), China. He is a member of the European Academy of Sciences, a member of the European Academy of Sciences and Arts, and a Fellow of the Royal Society of Chemistry.

Abdelkader Labidi is a Postdoctoral Research Associate at Shaanxi University of Science and Technology, China.

Qiuhui Zhu is a Lecturer at Wuyi University, China. His research focuses on the design and synthesis of defective bismuth-based photocatalysts for environmental remediation and energy conversion.


Cuprins

Preface xv

About the Book xix

About the Editors xxi

Introduction xxiii

1 Tailoring Photocatalytic Materials Through Defect Engineering: Control, Mechanism, and Experimental Protocols 1
Abdelkader Labidi, Jiangyushan Liang, Haitao Ren, Ting Gao, Tian Chang, Mohsen Padervand, Eric Lichtfouse, and Chuanyi Wang

1.1 Introduction 1

1.2 Defects Creation and Applications 3

1.3 Characterization of Defects 13

1.4 Benefits and Limitations 13

1.5 Conclusion 15

Acknowledgments 16

Declarations 16

Conflict of Interest 16

References 16

2 Defect Engineering in Photocatalysis: Opportunities and Challenges 23
Abdelkader Labidi, Xiaoqian Xu, Jiangyushan Liang, Ting Gao, Haitao Ren, Tian Chang, Mohsen Padervand, Eric Lichtfouse, and Chuanyi Wang

2.1 Introduction 23

2.2 Defects in Photocatalytic Feedstocks 26

2.3 Advances and Challenges 35

2.4 Conclusion 37

Acknowledgments 38

Declaration of Competing Interest 38

References 38

3 Tailoring TiO2 and Other Metal Oxide (WO3 and ZnO) Photocatalysts with Defect Engineering 43
Abdelkader Labidi, Haitao Ren, Jiangyushan Liang, Ting Gao, Xiaoqian Xu, Tian Chang, Mohsen Padervand, Eric Lichtfouse, and Chuanyi Wang

3.1 Introduction 43

3.2 Defective Metal Oxide Photocatalysts 44

3.3 Benefits and Limitations 55

3.4 Future Perspectives 57

3.5 Conclusion 58

Acknowledgements 58

Declaration of Competing Interest 58

References 59

4 Defective Heterojunction Photocatalysts: Ample Opportunity for Photocatalytic Implementations 65
Keshav Kumar and Chandana Rath

4.1 Introduction 65

4.2 Types of Heterojunctions 67

4.3 Synthesis of Defective Heterojunctions and Applications 69

4.4 Characterization of Defects 73

4.5 Role of Defects 74

4.6 Conclusions and Perspectives 77

Conflict of Interest 78

References 78

5 Defect-Engineered Metal-Organic Frameworks for Photocatalytic Implementations 85
Zhiting Chen and Qiuhui Zhu

5.1 Introduction 85

5.2 Synthesis Strategies and Characterizations 86

5.3 Photocatalytic Applications 89

5.4 Advantages and Disadvantages 96

5.5 Conclusion 97

Conflict of Interest 97

References 97

6 Defect Behavior of Carbon Nitride (g-C3 N4)asEfficient Feedstock in Photocatalytic Reactions 103
Debika Gogoi, Rajeshvari Samatbhai Karmur, and Rakesh K. Sharma

6.1 Introduction 103

6.2 Synthesis of Defective g-C3 N4 105

6.3 Photocatalytic Applications 115

6.4 Conclusion and Perspectives 121

Conflicts of Interest 122

References 122

7 Structures, Properties, and Applications of Defective Graphene-Based Photocatalysts 127
Hanedi Elhleli and Younes Moussaoui

7.1 Introduction 127

7.2 Preparation Methods and Characterizations 129

7.3 Structures and Properties 132

7.4 Photocatalytic Applications 136

7.5 Advantages and Limitations 139

7.6 Conclusion and Future Prospects 140

Acknowledgments 142

Conflict of Interest 142

References 142

8 Defective Photocatalysts in Organic Synthesis 149
Sudirman

8.1 Introduction 149

8.2 Defects Creation in Photocatalytic Materials 151

8.3 Photocatalytic Transformations 155

8.4 Photocatalysis in Organic Synthesis 159

8.5 Challenges and Limitations 162

8.6 Future Research Directions 163

8.7 Conclusion 165

Acknowledgments 165

Conflict of Interest 166

References 166

9 Photo-Therapy Based on Defective Photocatalysts 171
Jianmin Luo, Jiahong Ye, and Bin Liu

9.1 Introduction 171

9.2 Reactive Oxygen Species 172

9.3 Phototherapy Reactions 173

9.4 Types of Defects 177

9.5 Synthesis Strategies for Defect-Engineered Photocatalytic Materials 180

9.6 Conclusion and Future Prospects 183

References 183

10 Defected-Engineered Materials for Photocatalytic Sterilization 191
Haitao Ren, Abdelkader Labidi, Yuzhen Zhao, Atif Sial, and Chuanyi Wang

10.1 Introduction 191

10.2 Sterilization Mechanism 194

10.3 Types and Characterization of Defects 196

10.4 Defective Photocatalysts for Sterilization 198

10.5 Advantages and Limitations 203

10.6 Conclusion 204

Acknowledgements 205

Conflict of Interest 205

References 205

11 Nano- and Microplastics Degradation Using Defect-engineered Photocatalytic Feedstocks 211
Elham Jalilnejad, Mehran Alizadeh, and Sahar Rezaei

11.1 Introduction 211

11.2 Sources and Accumulation 212

11.3 Nano- and Microplastics Degradation 218

11.4 Future Prospects 227

11.5 Conclusion 228

Conflict of Interest 228

List of Abbreviations 228

References 229

12 Defective Photocatalytic Materials for Desalination: Synthesis Strategies, Types of Defects, and Mechanisms 239
Fangdi Wu and Yongqian Cui

12.1 Introduction 239

12.2 Synthesis Methodologies for Defective Photocatalytic Materials 242

12.3 Mechanisms and Advancements 246

12.4 Conclusions and Future Perspectives 253

Acknowledgments 255

Conflict of Interest 255

References 255

13 Defective Photocatalytic Materials for Organic Pollutant Degradation 261
Jiapeng Hu

13.1 Introduction 261

13.2 Point Defects 264

13.3 Line Defects 269

13.4 Planar Defects 271

13.5 Volume Defects 273

13.6 Conclusion 275

Conflict of Interest 276

References 276

14 NoX Removal Using Defective Photocatalytic Materials 279
Qiuhui Zhu, Yongqian Cui, Xue Xiao, Juiyeh Rau, Yin Shen, and Chuanyi Wang

14.1 Introduction 279

14.2 Photocatalytic Mechanism of NO Removal 280

14.3 The Photocatalytic NO Removal Over Defective Catalysts 282

14.4 Conclusion 295

Acknowledgements 296

Conflict of Interest 296

References 296

15 Defective Photocatalytic Materials for Biomass Conversion 299
Nafiseh Pourshirband, Aydin Hassani, and Paria Sharafi-Badr

15.1 Introduction 299

15.2 Types of Defects 301

15.3 Preparation and Characterization 302

15.4 Biomass Conversion 304

15.5 Challenges and Limitations 309

15.6 Future Perspectives 311

15.7 Conclusion 312

Conflict of Interest 313

References 313

16 Photocatalytic Reduction of CO2 on Defect-Rich Catalysts 319
Wen Chen, Bao Pan, Jiani Qin, Jui-Yeh Rau, and Chuanyi Wang

16.1 Introduction 319

16.2 Thermodynamics and Kinetics of CO2 Reduction 320

16.3 Classification of Defects 321

16.4 Creation of Defects 322

16.5 Application of Defects in CO2 Reduction 324

16.6 Conclusions and Outlook 327

Conflict of Interest 327

References 327

17 H2 Evolution Utilizing Defect-Engineered Photocatalytic Materials 331
Atif Sial, Abdelkader Labidi, Haitao Ren, Ting Gao, and Chuanyi Wang

17.1 Introduction 331

17.2 Synthesis Protocols 333

17.3 H2 Evolution Reactions 340

17.4 Conclusion and Perspective 347

Conflict of Interest 348

References 349

18 Enhanced H2 O2 Production Over Defective Photocatalytic Materials 351
Mohsen Padervand, Alireza Bargahi, Mahshid Sarkheil, Elmuez Dawi, and Abdelkader Labidi

18.1 Introduction 351

18.2 Defect Chemistry 352

18.3 H2 O2 Production Strategies 354

18.4 Types of Solid Photocatalysts 356

18.5 Defective Photocatalytic Materials for H2 O2 Production 356

18.6 Mechanism of Defects 358

18.7 Defect Insertion in Photocatalysts 359

18.8 Opportunities and Challenges 360

18.9 Future Perspectives 360

18.10 Conclusions 362

Acknowledgments 362

Conflict of Interest 362

References 362

19 Photocatalytic NH3 Synthesis by Defect-Engineered Photocatalytic Materials 367
Ximing Li, Lin Tian, and Chuanyi Wang

19.1 Introduction 367

19.2 Principle of Photocatalytic Nitrogen Fixation Reaction 369

19.3 Roles of Defects in Photocatalytic Nitrogen Reduction 370

19.4 Defects in Photocatalysts for Enhanced Nitrogen Photoreduction 373

19.5 Summary and Future Perspectives 379

Conflict of Interest 380

References 380

20 Summary 383
Atif Sial, Abdelkader Labidi, Haitao Ren, Ting Gao, and Chuanyi Wang

20.1 Role of Defects in Photocatalysis 383

20.2 Advantages of Defect Engineering 385

20.3 Disadvantages of Defect Engineering 393

20.4 Summary and Outlooks 396

Conflict of Interest 397

References 397

Index 401