Study on Synthesis of O-Pinacolyl Methylphosphonic Acid-imprinted Polymer Microspheres and Their Recognition Characteristics
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Study on Synthesis of O-Pinacolyl Methylphosphonic Acid-imprinted Polymer Microspheres and Their Recognition Characteristics
Vol. 38, Issue 7, Pages: 775-783(2019)
作者机构:
1. 中国人民解放军军事科学院防化研究院
2. 国民核生化灾害防护国家重点实验室
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Study on Synthesis of O-Pinacolyl Methylphosphonic Acid-imprinted Polymer Microspheres and Their Recognition Characteristics. [J]. 38(7):775-783(2019)
DOI:
Study on Synthesis of O-Pinacolyl Methylphosphonic Acid-imprinted Polymer Microspheres and Their Recognition Characteristics. [J]. 38(7):775-783(2019)DOI:
Study on Synthesis of O-Pinacolyl Methylphosphonic Acid-imprinted Polymer Microspheres and Their Recognition Characteristics
The porous material O pinacolyl methylphosphonic acid imprinted polymer microspheres were synthesized through designing pre assembly system,based on the interaction between the degradation product of Soman(O pinacolyl methylphosphonic acid) molecules with methylacrylic acid and acrylamide functional monomer molecules discussed by techniques such as 31P {1H}NMR spectroscopy and 1H NMR spectroscopy.Scatchard analysis showed that the maximum apparent binding amount Qmax was 661 μg/g(AM as monomer),and a straight line was presented in the diagram of a low adsorption range(Q<500 μg/g).In static adsorption experiment,the polymer was observed to be regularly selective to homologous five alkyl phosphonates monoalkyl esters,and the identification factors α to other compounds with different structures were decreased obviously.A solid phase extraction column using this synthesized polymer microsheres was used in the separation of trace O pinacolyl methylphosphonic acid containing a large number of interferents with a remarkable effect.Results showed that the polymer synthesized provided an effective means for analysis and identification of trace degradation products of related chemical warfare agents in the complex samples.
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Simultaneous Determination of 12 Organophosphate Esters in Soil by Solid Phase Extraction/High Performance Liquid Chromatography-Tandem Mass Spectrometry
Determination of 53 Semi-volatile Organic Compounds in Solid Waste by Gas Chromatography-Mass Spectrometry with Microwave Extraction and Solid Phase Extraction Column Purification
Determination of New Red in Beverages and Prepared Wines by HPLC-MS/MS with Solid Phase Extraction Based on Metal Organic Frameworks UiO-66-NH2
Simultaneous Determination of Six Natural Estrogens in Milk by Gas Chromatography-Mass Spectrometry
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