This book presents experimental as well as simulation methodologies for analysis and development of nanostructures for introducing the desirable effects through modifications in the basic structure of select nanomaterials. The initial chapters in this book focus on exploring the basic aspects of nanomaterials, e.g., distinguishing features, synthesis, processing, characterization, simulation and application dimensions, or nanostructures that enable novel/enhanced properties or functions. The chapters also cover the size-dependent electronic, optical, and magnetic properties of nanomaterials in exposing the specific properties essential for applications in nanophotonics, nanoplasmonics, nanosystems (e.g., biological, medical, chemical, catalytic, energy, and environmental applications), and nanodevices (e.g., electronic, photonic, magnetic, imaging, diagnostic, and sensor applications). This book is a useful resource for students, researchers, and technologists in gathering recent knowledge on novel nanostructures and their use in different application areas.
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1. Nanomaterials and their distinguishing features.- 2. Nanomaterials for light harvesting.- 3. Transparent conductive oxide nanolayers for dye sensitized solar cell.- 4. Nanomaterials' architectural study in perovskite solar cells.- 5. Nanomaterials for biomedical engineering applications.- 6. Nanomaterials for water purification.- 7. Nanoparticles and their role in environmental decontamination technologies
Les mer
This book presents experimental as well as simulation methodologies for analysis and development of nanostructures for introducing the desirable effects through modifications in the basic structure of select nanomaterials. The initial chapters in this book focus on exploring the basic aspects of nanomaterials, e.g., distinguishing features, synthesis, processing, characterization, simulation and application dimensions, or nanostructures that enable novel/enhanced properties or functions. The chapters also cover the size-dependent electronic, optical, and magnetic properties of nanomaterials in exposing the specific properties essential for applications in nanophotonics, nanoplasmonics, nanosystems (e.g., biological, medical, chemical, catalytic, energy, and environmental applications), and nanodevices (e.g., electronic, photonic, magnetic, imaging, diagnostic, and sensor applications). This book is a useful resource for students, researchers, and technologists in gathering recent knowledge on novel nanostructures and their use in different application areas.
Les mer
Highlights simulation methodologies to aid experimental techniques in creating desired nanomaterials Presents the synthesis of size-dependent electronic, optical, and magnetic properties of nanomaterials Is a useful resource for students, researchers, and technologists in the area of nanomaterials
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Produktdetaljer

ISBN
9789811913839
Publisert
2022-05-25
Utgiver
Vendor
Springer Verlag, Singapore
Høyde
235 mm
Bredde
155 mm
Aldersnivå
Research, P, 06
Språk
Product language
Engelsk
Format
Product format
Innbundet

Om bidragsyterne

Dr. Jitendra Kumar Katiyar is presently working as Research Assistant Professor in the Department of Mechanical Engineering, at SRM Institute of Science and Technology, Kattankulathur, Chennai, India. His research interests include tribology of carbon materials, polymer composites, self-lubricating polymers, lubrication tribology, modern manufacturing techniques, and coatings for advanced technologies.

Dr. Vinay Panwar is presently working as Assistant Professor in the Department of Mechanical Engineering at NSIT, Delhi, India. His research interests are in the areas of advanced materials, specifically related to the synthesis and modifications of nanomaterials; polymer composites; energy applications; modeling and simulation; physical characterizations, and experimental analysis for micro-/nanomaterials.

Dr. Neha Ahlawat is Assistant Professor in the Mathematics Department at Jaypee Institute of Information Technology, Noida, India. Her research interests include ‘numerical solution of partial differential equations’, ‘vibrations’, ‘functional graded materials (FGMs)’, and ‘modeling and simulation of nanomaterials’.