Novel Optical Nanoprobes for Chemical and Biological Analysis Novel Optical Nanoprobes for Chemical and Biological Analysis
SpringerBriefs in Molecular Science

Novel Optical Nanoprobes for Chemical and Biological Analysis

Lingxin Chen and Others
    • $39.99
    • $39.99

Publisher Description

Novel Optical Nanoprobes for Chemical and Biological Analysis starts with a brief introduction to several kinds of versatile nanomaterials with novel optical properties, such as gold/silver nanoparticles, quantum dots, upconversion nanoparticles and graphene. It mainly focuses on the latest sensor design strategies, which apply the optical properties of nanomaterials to various detection techniques including colorimetry, fluorescence, and surface-enhanced Raman scattering (SERS). These sensors are attractive owing to their high sensitivity, high specificity, and potential for easy quantification of targets in many applications, such as conventional chemical and biological analysis, clinical diagnosis, and intracellular system sensing as well as single-molecule detection. The challenges and future perspectives for optical nanoprobes are also presented, such as the increase in sensitivity for real environmental and clinical samples, the design and application of multifunctionalnanoplatforms, and biocompatibility of nanomaterials.

GENRE
Science & Nature
RELEASED
2014
June 10
LANGUAGE
EN
English
LENGTH
108
Pages
PUBLISHER
Springer Berlin Heidelberg
SELLER
Springer Nature B.V.
SIZE
4.2
MB

Other Books in This Series

Polysaccharides as a Green and Sustainable Resources for Water and Wastewater Treatment Polysaccharides as a Green and Sustainable Resources for Water and Wastewater Treatment
2017
Milestones in Microwave Chemistry Milestones in Microwave Chemistry
2016
The Chemistry and Applications of Sustainable Natural Hair Products The Chemistry and Applications of Sustainable Natural Hair Products
2016
Biotechnology for Pharmaceutical Sciences Biotechnology for Pharmaceutical Sciences
2024
q-RASAR q-RASAR
2024
Understanding Kinetic Resolution by Hydrolases Understanding Kinetic Resolution by Hydrolases
2024