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A hybrid material is defined as a material composed of an intimate mixture of inorganic components, organic components, or both types of components. In the last few years, a tremendous amount of attention has been given towards the development of materials for efficient energy harvesting; nanostructured hybrid materials have also been gaining significant advances to provide pollutant free drinking water, sensing of environmental pollutants, energy storage and conservation. Separately, intensive work on high performing polymer nanocomposites for applications in the automotive, aerospace and construction industries has been carried out, but the aggregation of many fillers, such as clay, LDH, CNT, graphene, represented a major barrier in their development. Only very recently has this problem been overcome by fabrication and applications of 3D hybrid nanomaterials as nanofillers in a variety of polymers.
This book, Hybrid Nanomaterials, examines all the recent developments in the research and specially covers the following subjects:
Suneel Kumar Srivastava received MSc, DIIT and PhD from Lucknow University and the Indian Institute of Technology, Kharagpur in 1976, 1979 and 1986 respectively. He is Professor in the Department of Chemistry and Acting Head in the School of Energy Science and Engineering of the Indian Institute of Technology, Kharagpur. His research interests are in the fields of zero, one and two dimensional semiconducting and magnetic nanomaterials and their applications in energy and the environment, polymers and polymer blends. He has guided 16 PhD students and published about 135 research papers in referred journals.
Vikas Mittal received his BTech, MTech and PhD degree from Punjab Technical University, Jalandhar, Indian Institute of Technology, Delhi, India, Swiss Federal Institute of Technology, Zurich, Switzerland respectively. He is currently the Department Deputy Chair and an Associate Professor of Chemical Engineering at the Petroleum Institute in Abu Dhabi. Dr. Mittal has earlier worked in Polymer Research section of BASF, Ludwigshafen, Germany. His main research interest is in the areas of polymer membranes, polymer processing and nanotechnology and graphene-based nanomaterials. He has published more than 80 articles in refereed journals and conference proceedings and has authored and edited more than 30 books of which 7 are with the Wiley-Scrivener imprint.
Auteur
Suneel Kumar Srivastava received MSc, DIIT and PhD from Lucknow University and the Indian Institute of Technology, Kharagpur in 1976, 1979 and 1986 respectively. He is Professor in the Department of Chemistry and Acting Head in the School of Energy Science and Engineering of the Indian Institute of Technology, Kharagpur. His research interests are in the fields of zero, one and two dimensional semiconducting and magnetic nanomaterials and their applications in energy and the environment, polymers and polymer blends. He has guided 16 PhD students and published about 135 research papers in referred journals.
Vikas Mittal received his BTech, MTech and PhD degree from Punjab Technical University, Jalandhar, Indian Institute of Technology, Delhi, India, Swiss Federal Institute of Technology, Zurich, Switzerland respectively. He is currently the Department Deputy Chair and an Associate Professor of Chemical Engineering at the Petroleum Institute in Abu Dhabi. Dr. Mittal has earlier worked in Polymer Research section of BASF, Ludwigshafen, Germany. His main research interest is in the areas of polymer membranes, polymer processing and nanotechnology and graphene-based nanomaterials. He has published more than 80 articles in refereed journals and conference proceedings and has authored and edited more than 30 books of which 7 are with the Wiley-Scrivener imprint.
Texte du rabat
The book highlights applications of hybrid materials in solar energy systems, lithium ion batteries, electromagnetic shielding, sensing of pollutants and water purification.
A hybrid material is defined as a material composed of an intimate mixture of inorganic components, organic components, or both types of components. In the last few years, a tremendous amount of attention has been given towards the development of materials for efficient energy harvesting; nanostructured hybrid materials have also been gaining significant advances to provide pollutant free drinking water, sensing of environmental pollutants, energy storage and conservation. Separately, intensive work on high performing polymer nanocomposites for applications in the automotive, aerospace and construction industries has been carried out, but the aggregation of many fillers, such as clay, LDH, CNT, graphene, represented a major barrier in their development. Only very recently has this problem been overcome by fabrication and applications of 3D hybrid nanomaterials as nanofillers in a variety of polymers. This book, Hybrid Nanomaterials, examines all the recent developments in the research and specially covers the following subjects:
Contenu
Preface xiii
1 Hybrid Nanostructured Materials for Advanced Lithium Batteries 1
Soumyadip Choudhury and Manfred Stamm
1.1 Introduction 1
1.2 Battery Requirements 4
1.3 Survey of Rechargeable Batteries 7
1.4 Advanced Materials for Electrodes 9
1.5 Future Battery Strategies 38
1.6 Limitations of Existing Strategies 59
1.7 Conclusions 62
Acknowledgments 63
References 63
2 High Performing Hybrid Nanomaterials for Supercapacitor Applications 79
Sanjit Saha, Milan Jana and Tapas Kuila
2.1 Introduction 80
2.2 Scope of the Chapter 82
2.3 Characterization of Hybrid Nanomaterials 82
2.4 Hybrid Nanomaterials as Electrodes for Supercapacitor 91
2.5 Applications of Supercapacitor 130
2.6 Conclusions 134
References 135
3 Nanohybrid Materials in the Development of Solar Energy Applications 147
Poulomi Roy
3.1 Introduction 147
3.2 Significance of Nanohybrid Materials 148
3.3 Synthetic Strategies 162
3.4 Application in Solar Energy Conversion 167
3.5 Summary 175
References 176
**4 Hybrid Nanoadsorbents…