Sonochemical synthesis of microscale Zn(ii)-MOF with dual Lewis basic sites for fluorescent turn-on detection of Al<sup>3+</sup>and methanol with low detection limits

© 2020 The Royal Society of Chemistry. The effects of synthetic methods, modulator types, the content of the modulator, and reaction time on the size and morphology of a microscale Zn-MOF containing dual Lewis basic amino and carbonyl groups, namely [Zn(NH2-bdc)(4,4′-bpy)] {NH2-H2bdc = 2-amino-1,4-b...

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Main Authors: Theanchai Wiwasuku, Jintana Othong, Jaursup Boonmak, Vuthichai Ervithayasuporn, Sujittra Youngme
Other Authors: Khon Kaen University
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Published: 2020
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Online Access:https://repository.li.mahidol.ac.th/handle/123456789/59934
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spelling th-mahidol.599342020-11-18T15:40:47Z Sonochemical synthesis of microscale Zn(ii)-MOF with dual Lewis basic sites for fluorescent turn-on detection of Al<sup>3+</sup>and methanol with low detection limits Theanchai Wiwasuku Jintana Othong Jaursup Boonmak Vuthichai Ervithayasuporn Sujittra Youngme Khon Kaen University Mahidol University Chemistry © 2020 The Royal Society of Chemistry. The effects of synthetic methods, modulator types, the content of the modulator, and reaction time on the size and morphology of a microscale Zn-MOF containing dual Lewis basic amino and carbonyl groups, namely [Zn(NH2-bdc)(4,4′-bpy)] {NH2-H2bdc = 2-amino-1,4-benzenedicarboxylic acid and 4,4′-bpy = 4,4′-bipyridine}, were systemically investigated. Uniform octahedral microparticles of Zn-MOF with an average size of 1.7 μm were obtained within an hour at ambient temperature under ultrasound irradiation using sodium acetate as a modulating agent. Interestingly, Zn-MOF has been demonstrated for the dual-functional fluorescent detection of Al3+ and methanol based on a fluorescent turn-on strategy. Very low detection limits (LODs) for Al3+ and methanol were achieved using microcrystalline Zn-MOF and reached 30 nM and 0.7% (v/v), respectively. In comparison to the larger size of the polycrystalline Zn-MOF, the microparticles obtained from the ultrasonic route exhibited an improvement in the detection sensitivity. The dual uncoordinated Lewis basic sites play an important role in the sensitivity and selectivity of the detection. Additionally, the fluorogenic change in the sensing process can be observed by the naked eye under UV-light, allowing preliminary on-field screening. This journal is 2020-11-18T08:40:47Z 2020-11-18T08:40:47Z 2020-08-07 Article Dalton Transactions. Vol.49, No.29 (2020), 10240-10249 10.1039/d0dt01175d 14779234 14779226 2-s2.0-85088849668 https://repository.li.mahidol.ac.th/handle/123456789/59934 Mahidol University SCOPUS https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85088849668&origin=inward
institution Mahidol University
building Mahidol University Library
continent Asia
country Thailand
Thailand
content_provider Mahidol University Library
collection Mahidol University Institutional Repository
topic Chemistry
spellingShingle Chemistry
Theanchai Wiwasuku
Jintana Othong
Jaursup Boonmak
Vuthichai Ervithayasuporn
Sujittra Youngme
Sonochemical synthesis of microscale Zn(ii)-MOF with dual Lewis basic sites for fluorescent turn-on detection of Al<sup>3+</sup>and methanol with low detection limits
description © 2020 The Royal Society of Chemistry. The effects of synthetic methods, modulator types, the content of the modulator, and reaction time on the size and morphology of a microscale Zn-MOF containing dual Lewis basic amino and carbonyl groups, namely [Zn(NH2-bdc)(4,4′-bpy)] {NH2-H2bdc = 2-amino-1,4-benzenedicarboxylic acid and 4,4′-bpy = 4,4′-bipyridine}, were systemically investigated. Uniform octahedral microparticles of Zn-MOF with an average size of 1.7 μm were obtained within an hour at ambient temperature under ultrasound irradiation using sodium acetate as a modulating agent. Interestingly, Zn-MOF has been demonstrated for the dual-functional fluorescent detection of Al3+ and methanol based on a fluorescent turn-on strategy. Very low detection limits (LODs) for Al3+ and methanol were achieved using microcrystalline Zn-MOF and reached 30 nM and 0.7% (v/v), respectively. In comparison to the larger size of the polycrystalline Zn-MOF, the microparticles obtained from the ultrasonic route exhibited an improvement in the detection sensitivity. The dual uncoordinated Lewis basic sites play an important role in the sensitivity and selectivity of the detection. Additionally, the fluorogenic change in the sensing process can be observed by the naked eye under UV-light, allowing preliminary on-field screening. This journal is
author2 Khon Kaen University
author_facet Khon Kaen University
Theanchai Wiwasuku
Jintana Othong
Jaursup Boonmak
Vuthichai Ervithayasuporn
Sujittra Youngme
format Article
author Theanchai Wiwasuku
Jintana Othong
Jaursup Boonmak
Vuthichai Ervithayasuporn
Sujittra Youngme
author_sort Theanchai Wiwasuku
title Sonochemical synthesis of microscale Zn(ii)-MOF with dual Lewis basic sites for fluorescent turn-on detection of Al<sup>3+</sup>and methanol with low detection limits
title_short Sonochemical synthesis of microscale Zn(ii)-MOF with dual Lewis basic sites for fluorescent turn-on detection of Al<sup>3+</sup>and methanol with low detection limits
title_full Sonochemical synthesis of microscale Zn(ii)-MOF with dual Lewis basic sites for fluorescent turn-on detection of Al<sup>3+</sup>and methanol with low detection limits
title_fullStr Sonochemical synthesis of microscale Zn(ii)-MOF with dual Lewis basic sites for fluorescent turn-on detection of Al<sup>3+</sup>and methanol with low detection limits
title_full_unstemmed Sonochemical synthesis of microscale Zn(ii)-MOF with dual Lewis basic sites for fluorescent turn-on detection of Al<sup>3+</sup>and methanol with low detection limits
title_sort sonochemical synthesis of microscale zn(ii)-mof with dual lewis basic sites for fluorescent turn-on detection of al<sup>3+</sup>and methanol with low detection limits
publishDate 2020
url https://repository.li.mahidol.ac.th/handle/123456789/59934
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