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Descripción - Reseña del editor This book introduces the fundamentals and applications of the localized surface plasmon resonance (LSPR) property of noble metallic nanoparticles, with an emphasis on the biosensing applications of plasmonic nanoparticles, especially in living cell imaging and photothermal therapy. It provides an overview of the different operating principles of plasmonic sensors, particularly the single-nanoparticle-based detections, and a series of creative biosensors based on the modulation of different parameters of nanoparticles (particle size, shape, composition and surrounding medium) for label-free detection. The interparticle coupling effect, plasmon resonance energy transfer, electron transfer on plasmonics surface are also covered in this book.This book is intended for graduate students and researchers working in the interdisciplinary field combining chemistry, biology, material science and nanophotonics.Yi-Tao Long is a Professor at the School of Chemistry and Molecular Engineering, East China University of Science and Technology, China. Contraportada This book introduces the fundamentals and applications of the localized surface plasmon resonance (LSPR) property of noble metallic nanoparticles, with an emphasis on the biosensing applications of plasmonic nanoparticles, especially in living cell imaging and photothermal therapy. It provides an overview of the different operating principles of plasmonic sensors, particularly the single-nanoparticle-based detections, and a series of creative biosensors based on the modulation of different parameters of nanoparticles (particle size, shape, composition and surrounding medium) for label-free detection. The interparticle coupling effect, plasmon resonance energy transfer, electron transfer on plasmonics surface are also covered in this book.This book is intended for graduate students and researchers working in the interdisciplinary field combining chemistry, biology, material science and nanophotonics. Yi-Tao Long is a Professor at the School of Chemistry and Molecular Engineering, East China University of Science and Technology, China. Biografía del autor Yi-Tao Long received his Ph.D. in bioelectroanalytical chemistry from Nanjing University in 1998. After completing his two-year postdoctoral research at Heidelberg University, Dr. Long moved to Canada, and worked as a research scientist for 5 years at the University of Saskatchewan and the University of Alberta. Then he worked at the Department of Bioengineering, UC Berkeley as a senior research scientist from 2006 to 2007. Since 2008, he has been appointed as a Professor at the School of Chemistry and Molecular Engineering, East China University of Science and Technology (ECUST), China. Dr. Long received the Distinguished Young Scientist Fund from National Natural Science Foundation of China in 2011, and has been elected as a distinguished professor under the Changjiang Scholar Program of Ministry of Education of China since 2012. His research interests include nanospectroscopy, biointerfaces/biointerphases, spectroelectrochemistry, integrated biosensors, and nanopore single-molecule analysis.Chao Jing graduated with a B.S. degree from ECUST in 2010. She is currently pursuing her Ph.D. in analytical chemistry under the supervision of Prof. Yi-Tao Long. Her research interests include single-nanoparticle spectroelectrochemistry and biosensors.
Localized surface plasmon resonance based nanobiosensors yitao long is a professor at the school of chemistry and molecular engineering east china university of science and technology china keywords darkfield scattering spectroscopy electromagnetics interparticle coupling living cell imaging localize surface plasmon resonance metallic nanoparticles photothermal therapy plasmon resonance energy transfer plasmonic nanobiosensors surrounding
Localized surface plasmon resonance based nanobiosensors this book introduces the fundamentals and applications of the localized surface plasmon resonance lspr property of noble metallic nanoparticles with an emphasis on the biosensing applications of plasmonic nanoparticles especially in living cell imaging and photothermal therapy it provides an
Nanobiosensors based on localized surface plasmon localized surface plasmon resonance lspr is induced by incident light when it interacts with noble metal nanoparticles that have smaller sizes than the wavelength of the incident light recently lsprbased nanobiosensors were developed as tools for highly sensitive labelfree and flexible sensing techniques for the detection of biomolecular interactions
Modulation of localized surface plasmon resonance of the 1 introduction in recent years the localized surface plasmon resonance lspr phenomenon has attracted broad attention due to its unique features and potential applications such as waveguides sufaceenhanced spectroscopies 23 chemical bilogical sensing and nanoscale devices noble metals such as silver ag and gold au are the most widely used plasmonic materials because
Localized surface plasmon resonance nanostructures localized surface plasmon resonance lspr is an optical phenomena generated by a light wave trapped within conductive nanoparticles nps smaller than the wavelength of light the phenomenon is a result of the interactions between the incident light and surface electrons in a conduction band
Localized surface plasmon resonance based nanobiosensors localized surface plasmon resonance based nanobiosensors springerbriefs in molecular science 9783642547942 medicine amp health science books
Engineering a localized surface plasmon resonance platform localized surface plasmon resonance optical sensor nanomaterials 1 introduction the noble metal nanostructures strongly interact with light resulting in size dehow to cite this paper farooq s and de araujo re 2018 engineering a localized surface plasmon resonance platform for molecular biosensing open journal of
Localized surface plasmon resonance in semiconductor localized surface plasmon resonance lspr in semiconductor nanocrystals ncs that results in resonant absorption scattering and near field enhancement around the nc can be tuned across a wide optical spectral range from visible to farinfrared by synthetically varying doping level and post synthetically via chemical oxidation and reduction photochemical control and electrochemical
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A localized surface plasmon resonancebased portable a localized surface plasmon resonancebased portable instrument for quick onsite biomolecular detection liquid samples the case studies presented in the paper demonstrate the functionality of the biosensor in terms of molecular bindings directly and in real time so as to