Claudia Fasolato Fasolato Surface Enhanced Raman Spectroscopy for Biophysical Applications

Surface Enhanced Raman Spectroscopy for Biophysical Applications

von Claudia Fasolato

Using Plasmonic Nanoparticle Assemblies

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Beschreibung

The book explores the phenomenon of surface-enhanced Raman scattering (SERS), the huge amplification of Raman signal from molecules in the proximity of a metallic nanostructured surface, allowing readers to gain an in-depth understanding of the mechanisms affecting the spectroscopic response of SERS-active systems for effective applications. SERS spectroscopy is an ultrasensitive analytical technique with great potential for applications in the field of biophysics and nanomedicine. As examples, the author presents the design of nanocolloid-based SERS-active substrates for molecular sensing and of a folate-based SERS-active nanosensor capable of selectively interacting with cancer cells, enabling cancer diagnostics and therapy at the single-cell level. The author also suggests novel paths for the systematization of the SERS nanosystem design and experimental protocols to maximize sensitivity and reproducibility, which is essential when real-world biomedical applications arethe goal of the study. With a combined approach, both fundamental and applied, and a detailed analysis of the state of the art, this book provides a valuable overview both for students new to SERS spectroscopy and for experts in the field.


The book explores the phenomenon of surface-enhanced Raman scattering (SERS), the huge amplification of Raman signal from molecules in the proximity of a metallic nanostructured surface, allowing readers to gain an in-depth understanding of the mechanisms affecting the spectroscopic response of SERS-active systems for effective applications. SERS spectroscopy is an ultrasensitive analytical technique with great potential for applications in the field of biophysics and nanomedicine. As examples, the author presents the design of nanocolloid-based SERS-active substrates for molecular sensing and of a folate-based SERS-active nanosensor capable of selectively interacting with cancer cells, enabling cancer diagnostics and therapy at the single-cell level. The author also suggests novel paths for the systematization of the SERS nanosystem design and experimental protocols to maximize sensitivity and reproducibility, which is essential when real-world biomedical applications arethe goal of the study. With a combined approach, both fundamental and applied, and a detailed analysis of the state of the art, this book provides a valuable overview both for students new to SERS spectroscopy and for experts in the field.


Nominated as an outstanding Ph.D. thesis by the Sapienza University, Rome, Italy Provides an instructive introduction to Raman- and surface-enhanced Raman spectroscopy, including both theory and state of the art Features applications in different fields of biophysics, including nanomedicine Presents the design of a nanosensor for cancer diagnostics and therapy at the single-cell level Offers a step-by-step description of the adopted experimental and analytical protocols

Autor*in

Claudia Fasolato

Themen in »Surface Enhanced Raman Spectroscopy for Biophysical Applications«

Surface Enhanced Raman Scattering Raman Spectroscopy in Biophysics Biophysical Analysis Cancer Nanomedicine SERS Substrates Nanovectors Folate-Based Nanosensor 4-Aminothiophenol

Stimmen zu »Surface Enhanced Raman Spectroscopy for Biophysical Applications«

Details

ISBN: 9783030035563
Verlag: Springer International Publishing
Erscheinung: 05.12.2018

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