Group 4 Metal-Based Metal—Organic Frameworks for Chemical Sensors

Metal-organic frameworks (MOFs) have attracted great attention for their applications in chemical sensors mainly due to their high porosity resulting in high density of spatially accessible active sites, which can interact with the aimed analyte. Among various MOFs, frameworks constructed from group...

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Autores principales: Souvik Pal, Sheng-Sheng Yu, Chung-Wei Kung
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Publicado: MDPI AG 2021
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spelling oai:doaj.org-article:7b0e96fc81ee4b698a2913dd23212a6e2021-11-25T17:13:33ZGroup 4 Metal-Based Metal—Organic Frameworks for Chemical Sensors10.3390/chemosensors91103062227-9040https://doaj.org/article/7b0e96fc81ee4b698a2913dd23212a6e2021-10-01T00:00:00Zhttps://www.mdpi.com/2227-9040/9/11/306https://doaj.org/toc/2227-9040Metal-organic frameworks (MOFs) have attracted great attention for their applications in chemical sensors mainly due to their high porosity resulting in high density of spatially accessible active sites, which can interact with the aimed analyte. Among various MOFs, frameworks constructed from group 4 metal-based (e.g., zirconium, titanium, hafnium, and cerium) MOFs, have become especially of interest for the sensors requiring the operations in aqueous media owing to their remarkable chemical stability in water. Research efforts have been made to utilize these group 4 metal-based MOFs in chemosensors such as luminescent sensors, colorimetric sensors, electrochemical sensors, and resistive sensors for a range of analytes since 2013. Though several studies in this subfield have been published especially over the past 3–5 years, some challenges and concerns are still there and sometimes they might be overlooked. In this review, we aim to highlight the recent progress in the use of group 4 metal-based MOFs in chemical sensors, and focus on the challenges, potential concerns, and opportunities in future studies regarding the developments of such chemically robust MOFs for sensing applications.Souvik PalSheng-Sheng YuChung-Wei KungMDPI AGarticlecerium-based MOFelectrochemical sensorgas sensorhafnium-based MOFoptical sensorresistive sensorBiochemistryQD415-436ENChemosensors, Vol 9, Iss 306, p 306 (2021)
institution DOAJ
collection DOAJ
language EN
topic cerium-based MOF
electrochemical sensor
gas sensor
hafnium-based MOF
optical sensor
resistive sensor
Biochemistry
QD415-436
spellingShingle cerium-based MOF
electrochemical sensor
gas sensor
hafnium-based MOF
optical sensor
resistive sensor
Biochemistry
QD415-436
Souvik Pal
Sheng-Sheng Yu
Chung-Wei Kung
Group 4 Metal-Based Metal—Organic Frameworks for Chemical Sensors
description Metal-organic frameworks (MOFs) have attracted great attention for their applications in chemical sensors mainly due to their high porosity resulting in high density of spatially accessible active sites, which can interact with the aimed analyte. Among various MOFs, frameworks constructed from group 4 metal-based (e.g., zirconium, titanium, hafnium, and cerium) MOFs, have become especially of interest for the sensors requiring the operations in aqueous media owing to their remarkable chemical stability in water. Research efforts have been made to utilize these group 4 metal-based MOFs in chemosensors such as luminescent sensors, colorimetric sensors, electrochemical sensors, and resistive sensors for a range of analytes since 2013. Though several studies in this subfield have been published especially over the past 3–5 years, some challenges and concerns are still there and sometimes they might be overlooked. In this review, we aim to highlight the recent progress in the use of group 4 metal-based MOFs in chemical sensors, and focus on the challenges, potential concerns, and opportunities in future studies regarding the developments of such chemically robust MOFs for sensing applications.
format article
author Souvik Pal
Sheng-Sheng Yu
Chung-Wei Kung
author_facet Souvik Pal
Sheng-Sheng Yu
Chung-Wei Kung
author_sort Souvik Pal
title Group 4 Metal-Based Metal—Organic Frameworks for Chemical Sensors
title_short Group 4 Metal-Based Metal—Organic Frameworks for Chemical Sensors
title_full Group 4 Metal-Based Metal—Organic Frameworks for Chemical Sensors
title_fullStr Group 4 Metal-Based Metal—Organic Frameworks for Chemical Sensors
title_full_unstemmed Group 4 Metal-Based Metal—Organic Frameworks for Chemical Sensors
title_sort group 4 metal-based metal—organic frameworks for chemical sensors
publisher MDPI AG
publishDate 2021
url https://doaj.org/article/7b0e96fc81ee4b698a2913dd23212a6e
work_keys_str_mv AT souvikpal group4metalbasedmetalorganicframeworksforchemicalsensors
AT shengshengyu group4metalbasedmetalorganicframeworksforchemicalsensors
AT chungweikung group4metalbasedmetalorganicframeworksforchemicalsensors
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