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Nanomaterials for Luminescent Devices, Sensors, and Bio-imaging Applications: Progress in Optical Science and Photonics, cartea 16

Autor Swapna S. Nair, Reji Philip
en Limba Engleză Paperback – 17 sep 2022
This book highlights the synthesis/fabrication of novel materials for different kinds of optical applications.  It covers all aspects of optical applications starting from LED/Lasers, SERS, bio-sensing, bio-imaging and non-linear optical applications such as optical limiting, saturable absorbers etc. The book describes the development of novel materials and geometry as well as engineering of their size and shape for harvesting better optical properties. Nonconventional plasmonic materials and their fabrication are discussed apart from the conventionally employed noble metal based nanosystems. In addition, development of Novel materials/structures for biosensing /bioimaging /optical limiting are also covered.
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Specificații

ISBN-13: 9789811653698
ISBN-10: 9811653690
Pagini: 113
Ilustrații: IX, 113 p. 44 illus., 35 illus. in color.
Dimensiuni: 155 x 235 mm
Greutate: 0.19 kg
Ediția:1st ed. 2021
Editura: Springer Nature Singapore
Colecția Springer
Seria Progress in Optical Science and Photonics

Locul publicării:Singapore, Singapore

Cuprins

Introduction to the Optical Applications of Nanomaterials.- Quantum wells, wires and dotes for luminescent device applications.- Semiconductor Quantum dots and core shell systems for high contrast cellular/bio imaging.- Tuning of Surface Plasmon Resonance (SPR) in metallic nanoparticles for their Applications in SERS.- Advances in plasmonic biosensors and their futuristic applications.- Nonlinear optical properties of nanomaterials.- Conclusion.

Notă biografică

Dr. Swapna S. Nair is currently chairing the Department of Physics at the Central University of Kerala. After receiving her Ph.D. from CUSAT, India, she worked in different European Labs as a Post-Doctoral Investigator. She had worked as an Assistant Professor at the International School of Photonics, CUSAT, India and has more than twenty years of research experience in fabrication of functional nanomaterials/structures for optical, electronic (storage/memory/PV) and biosensing/imaging applications. She has published/edited 2 books, 4 book chapters, 58 peer reviewed research articles and has a patent to her credit. Her major research areas are engineering novel nanomaterials for RAMs, Spintronics, energy harvesters, and sensing/imaging applications.

Dr. Reji Philip is currently a Professor at the Raman Research Institute (RRI), India. After obtaining his Ph.D. from CUSAT, he worked as a Post-Doctoral Researcher at the University of Regensburg, Germany, and as a Visiting Fellow at TIFR, Mumbai. He has held Visiting Scientist positions at the University of Massachusetts, Boston and the University of Central Florida, Orlando. His research interests are in the areas of nonlinear optics, laser produced plasmas, ultrafast spectroscopy and laser nanostructuring of surfaces. He has published 205 articles in peer-reviewed international journals. He also has 2 patents and 4 book chapters to his credit.

Textul de pe ultima copertă

This book highlights the synthesis/fabrication of novel materials for different kinds of optical applications.  It covers all aspects of optical applications starting from LED/Lasers, SERS, bio-sensing, bio-imaging and non-linear optical applications such as optical limiting, saturable absorbers etc. The book describes the development of novel materials and geometry as well as engineering of their size and shape for harvesting better optical properties. Nonconventional plasmonic materials and their fabrication are discussed apart from the conventionally employed noble metal based nanosystems. In addition, development of Novel materials/structures for biosensing /bioimaging /optical limiting are also covered.

Caracteristici

Highlights the engineering of nanomaterials and quantum systems for different optical applications Describes the development of novel materials, their geometry, size, and shape for harvesting better optical properties Discusses the fabrication of nonconventional plasmonic materials