Silica -magnetic inorganic hybrid nanomaterials as versatile sensing platform

Several hybrid sensing materials, which are organized by interaction of organic molecules onto inorganic supports, have been developed as a novel and hopeful class of hybrid sensing probes. The hybrid silica-magnetic based sensors provide perfect properties for production of various devices in sensi...

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Main Authors: Elnaz Bagheri, Legha Ansari, Khalil Abnous, Seyed Mohammad Taghdisi, Mahshid Naserifar, Mohammad Ramezani, Mona Alibolandi
Format: Article
Language:English
Published: Mashhad University of Medical Sciences 2020-07-01
Series:Nanomedicine Journal
Subjects:
Online Access:http://nmj.mums.ac.ir/article_15565_b58aa1cac0d2191be5ae94e44e55e057.pdf
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author Elnaz Bagheri
Legha Ansari
Khalil Abnous
Seyed Mohammad Taghdisi
Mahshid Naserifar
Mohammad Ramezani
Mona Alibolandi
author_facet Elnaz Bagheri
Legha Ansari
Khalil Abnous
Seyed Mohammad Taghdisi
Mahshid Naserifar
Mohammad Ramezani
Mona Alibolandi
author_sort Elnaz Bagheri
collection DOAJ
description Several hybrid sensing materials, which are organized by interaction of organic molecules onto inorganic supports, have been developed as a novel and hopeful class of hybrid sensing probes. The hybrid silica-magnetic based sensors provide perfect properties for production of various devices in sensing technology. The hybridization of silica and magnetic NPs as biocompatible, biodegradable and superparamagnetic structures provides the opportunity to produce capable sensing materials. The fluorescence, electrochemical and calorimetric sensors based on silica-magnetic materials can be applied in quantitative detection of various analytes. This review touches upon a subject of the design and synthesis of different sensors based on magnetic-silica hybrid nanomaterials and discusses their applications for improved detection of analytes in environmental and biological fields.
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spelling doaj.art-922b4b25e74f472facabf9adff307a232022-12-22T01:59:31ZengMashhad University of Medical SciencesNanomedicine Journal2322-30492322-59042020-07-017318319310.22038/nmj.2020.07.000215565Silica -magnetic inorganic hybrid nanomaterials as versatile sensing platformElnaz Bagheri0Legha Ansari1Khalil Abnous2Seyed Mohammad Taghdisi3Mahshid Naserifar4Mohammad Ramezani5Mona Alibolandi6Pharmaceutical Research Center, Pharmaceutical Technology Institute, Mashhad University of Medical Sciences, Mashhad, Iran| Department of Pharmaceutical Biotechnology, School of Pharmacy, Mashhad University of Medical Sciences, Mashhad, IranCellular and Molecular Research Center, Cellular and Molecular Medicine Institute, Urmia University of Medical Sciences, Urmia , IranPharmaceutical Research Center, Pharmaceutical Technology Institute, Mashhad University of Medical Sciences, Mashhad, IranTargeted Drug Delivery Research Center, Pharmaceutical Technology Institute, Mashhad University of Medical Sciences, Mashhad, IranPharmaceutical Research Center, Pharmaceutical Technology Institute, Mashhad University of Medical Sciences, Mashhad, IranPharmaceutical Research Center, Pharmaceutical Technology Institute, Mashhad University of Medical Sciences, Mashhad, Iran| Department of Pharmaceutical Biotechnology, School of Pharmacy, Mashhad University of Medical Sciences, Mashhad, Iran|Nanotechnology Research Center, Pharmaceutical Technology Institute, Mashhad University of Medical Sciences, Mashhad, IranPharmaceutical Research Center, Pharmaceutical Technology Institute, Mashhad University of Medical Sciences, Mashhad, Iran|Department of Pharmaceutical Biotechnology, School of Pharmacy, Mashhad University of Medical Sciences, Mashhad, IranSeveral hybrid sensing materials, which are organized by interaction of organic molecules onto inorganic supports, have been developed as a novel and hopeful class of hybrid sensing probes. The hybrid silica-magnetic based sensors provide perfect properties for production of various devices in sensing technology. The hybridization of silica and magnetic NPs as biocompatible, biodegradable and superparamagnetic structures provides the opportunity to produce capable sensing materials. The fluorescence, electrochemical and calorimetric sensors based on silica-magnetic materials can be applied in quantitative detection of various analytes. This review touches upon a subject of the design and synthesis of different sensors based on magnetic-silica hybrid nanomaterials and discusses their applications for improved detection of analytes in environmental and biological fields.http://nmj.mums.ac.ir/article_15565_b58aa1cac0d2191be5ae94e44e55e057.pdfhybridmagneticnanomaterialsilicasensor
spellingShingle Elnaz Bagheri
Legha Ansari
Khalil Abnous
Seyed Mohammad Taghdisi
Mahshid Naserifar
Mohammad Ramezani
Mona Alibolandi
Silica -magnetic inorganic hybrid nanomaterials as versatile sensing platform
Nanomedicine Journal
hybrid
magnetic
nanomaterial
silica
sensor
title Silica -magnetic inorganic hybrid nanomaterials as versatile sensing platform
title_full Silica -magnetic inorganic hybrid nanomaterials as versatile sensing platform
title_fullStr Silica -magnetic inorganic hybrid nanomaterials as versatile sensing platform
title_full_unstemmed Silica -magnetic inorganic hybrid nanomaterials as versatile sensing platform
title_short Silica -magnetic inorganic hybrid nanomaterials as versatile sensing platform
title_sort silica magnetic inorganic hybrid nanomaterials as versatile sensing platform
topic hybrid
magnetic
nanomaterial
silica
sensor
url http://nmj.mums.ac.ir/article_15565_b58aa1cac0d2191be5ae94e44e55e057.pdf
work_keys_str_mv AT elnazbagheri silicamagneticinorganichybridnanomaterialsasversatilesensingplatform
AT leghaansari silicamagneticinorganichybridnanomaterialsasversatilesensingplatform
AT khalilabnous silicamagneticinorganichybridnanomaterialsasversatilesensingplatform
AT seyedmohammadtaghdisi silicamagneticinorganichybridnanomaterialsasversatilesensingplatform
AT mahshidnaserifar silicamagneticinorganichybridnanomaterialsasversatilesensingplatform
AT mohammadramezani silicamagneticinorganichybridnanomaterialsasversatilesensingplatform
AT monaalibolandi silicamagneticinorganichybridnanomaterialsasversatilesensingplatform