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Nanoparticle-based optical sensor arrays

delete2017-01-01
delete202
PRE
AI
A
Arafeh Bigdeli
F
Forough Ghasemi
H
Hamed Golmohammadi
S
Samira Abbasi-Moayed
M
Mohammad Amin Farahmand Nejad
N
Nafiseh Fahimi-Kashani
S
Somayeh Jafarinejad
M
Maryam Shahrajabian
M
M. Reza Hormozi‐Nezhad *
DOI:10.1039/c7nr03311gdelete
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摘要

摘要

En 中文
As in many other methods that have integrated nanoparticles (NPs), the chemical nose/tongue strategy has also progressed greatly since the entrance of NPs into this field. The fascinating tunable physicochemical properties of NPs have made them powerful candidates for array-based sensing platforms and have enabled the development of real-time, sensitive and portable systems that are able to target complex mixtures of analytes. In particular, the unique optical properties of NPs have a key role in providing promising array-based sensing approaches. This review will describe the main aspects and processes of most common NP-based optical sensor arrays. The fundamental steps in the design of a sensor array together with details of each step would be provided. The review begins with the principles of optical sensor arrays and presents the concept of cross-reactivity as the main criterion in the selection of sensing elements. Changes in the absorption and emission properties of the assembled sensing elements are categorized into two main classes of optical signals (colorimetric and fluorometric). Popular chemometric methods used for analyzing the data acquired by a sensor array have also been briefly introduced. On the basis of the objective and the desired application, different types of plasmonic and fluorescent NP that possess unique opto-physical properties have been presented as available choices in the design of sensing elements. The vast number of applications of NP-based optical sensor arrays published throughout the literature have then been reviewed according to their mechanism of interaction and the type of optical signal. Finally, the remaining challenges and future directions in this topic have been highlighted.
Keyword:
SURFACE-PLASMON RESONANCE
UP-CONVERSION NANOPARTICLES
SEMICONDUCTOR QUANTUM DOTS
VOLATILE ORGANIC-COMPOUNDS
TOXIC METAL-IONS
GOLD NANOPARTICLES
SILVER NANOPARTICLES
CARBON DOTS
MOLECULAR RECOGNITION
PATTERN-RECOGNITION
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期刊

Nanoscale 封面图
Nanoscale
IF:
5.1
论文数:
3.0W
被引数:
11.6W

机构

S
Sharif University of Technology
学者数:
1.1W
论文数: 1.1W
被引数: 9.5K
S
Shahid Beheshti University Medical Sciences
学者数:
1.7W
论文数: 1.1W
被引数: 157
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引用论文

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