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About:
Molecularly Imprinted Solid Phase Extraction using Bismethacryloyl-β-cyclodextrin and Methacrylic Acid as Double Functional Monomers for Selective Analysis of Glycyrrhizic Acid in Aqueous Media
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wasabi.inria.fr
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Type:
Academic Article
research paper
schema:ScholarlyArticle
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type
Academic Article
research paper
schema:ScholarlyArticle
isDefinedBy
Covid-on-the-Web dataset
title
Molecularly Imprinted Solid Phase Extraction using Bismethacryloyl-β-cyclodextrin and Methacrylic Acid as Double Functional Monomers for Selective Analysis of Glycyrrhizic Acid in Aqueous Media
Creator
Fu, Qiang
Du, Wei
Li, Ji
Chang, Chun
Chang, Ruimiao
Du, Kangli
Guo, Pengqi
Jing, Wanghui
Luo, Zhimin
Tang, Weili
Wu, Ningli
Xu, Changgen
Zeng, Aiguo
source
Medline; PMC
abstract
In this work, a new molecularly imprinted solid phase extraction protocol was developed for the selective extraction and purification of glycyrrhizic acid from liquorice roots in aqueous media. The molecularly imprinted polymers (MIPs) for glycyrrhizic acid were prepared by using bismethacryloyl-β-cyclodextrin and methacrylic acid as double functional monomers and characterized by Fourier transform infrared spectroscopy, scanning electron microscope, thermo gravimetric analysis, nitrogen adsorption and elemental analysis. In aqueous media, the adsorption properties of MIPs including adsorption kinetics, adsorption isotherms and selectivity adsorption were investigated. The characterization of imprinted polymers indicated that the prepared MIPs had good stability and many cavity structures. The results of adsorption experiments illustrated the MIPs had high adsorption capacity of glycyrrhizic acid (69.3 mg g(−1)) with the imprinting factor 3.77, and it took ~5 min to get adsorption equilibrium. The MIPs could be used as an solid phase extraction sorbent absorbent for enrichment and purification of glycyrrhizic acid from the crude extraction of licorice roots, and the results showed promising practical value.
has issue date
2017-02-01
(
xsd:dateTime
)
bibo:doi
10.1093/chromsci/bmw161
bibo:pmid
28087760
has license
no-cc
sha1sum (hex)
42cb06b6a38bf4c93a8bc0dae78d7f3f626fcadf
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https://doi.org/10.1093/chromsci/bmw161
resource representing a document's title
Molecularly Imprinted Solid Phase Extraction using Bismethacryloyl-β-cyclodextrin and Methacrylic Acid as Double Functional Monomers for Selective Analysis of Glycyrrhizic Acid in Aqueous Media
has PubMed Central identifier
PMC7109652
has PubMed identifier
28087760
schema:publication
J Chromatogr Sci
resource representing a document's body
covid:42cb06b6a38bf4c93a8bc0dae78d7f3f626fcadf#body_text
is
schema:about
of
named entity 'AQUEOUS'
named entity 'investigated'
named entity 'imprinted'
named entity 'analysis'
named entity 'equilibrium'
named entity 'polymers'
named entity 'MEDIA'
named entity 'ISOTHERMS'
named entity 'ABSORBENT'
named entity 'IMPRINTED'
named entity 'PREPARED'
named entity 'VALUE'
named entity 'INVESTIGATED'
named entity 'ENRICHMENT'
named entity 'USED'
named entity 'ANALYSIS'
named entity 'USING'
named entity 'CYCLODEXTRIN'
named entity 'MIPS'
named entity 'STRUCTURES'
named entity 'CHARACTERIZED'
named entity 'KINETICS'
covid:arg/42cb06b6a38bf4c93a8bc0dae78d7f3f626fcadf
named entity 'SOLID PHASE EXTRACTION'
named entity 'MONOMERS'
named entity 'FUNCTIONAL'
named entity 'ROOTS'
named entity 'ADSORPTION'
named entity 'INCLUDING'
named entity 'DOUBLE'
named entity 'NEW'
named entity 'IMPRINTED'
named entity 'SELECTIVE'
named entity 'CAVITY'
named entity 'ELEMENTAL ANALYSIS'
named entity 'FOURIER TRANSFORM INFRARED SPECTROSCOPY'
named entity 'WORK'
named entity 'CYCLODEXTRIN'
named entity 'INDICATED'
named entity 'MIN'
named entity 'HIGH'
named entity 'DOUBLE'
named entity 'EXPERIMENTS'
named entity 'FACTOR'
named entity 'LICORICE ROOTS'
named entity 'SELECTIVITY'
named entity 'SOLID PHASE EXTRACTION'
named entity 'METHACRYLIC ACID'
named entity 'COULD BE'
named entity 'USING'
named entity 'EXTRACTION'
named entity 'IMPRINTING'
named entity 'GRAVIMETRIC ANALYSIS'
named entity 'EXTRACTION PROTOCOL'
named entity 'AQUEOUS'
named entity 'FUNCTIONAL'
named entity 'GLYCYRRHIZIC ACID'
named entity 'PROPERTIES'
named entity 'PURIFICATION'
named entity 'CAPACITY'
named entity 'NITROGEN'
named entity 'MEDIA'
named entity 'GOOD'
named entity 'LIQUORICE'
named entity 'MONOMERS'
named entity '921'
named entity 'GLYCYRRHIZIC ACID'
named entity 'STABILITY'
named entity 'CHARACTERIZATION'
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