Molecularly imprinted polymer-coated silica microbeads for high-performance liquid chromatography
Molecularly imprinted polymer (MIP)-based chromatographic separation materials, owing to their advantages of unique selectivity, low cost, suitable reproducibility, and acceptable stability, have attracted a great deal of research in different fields. In this investigation, a new type of MIP-coated...
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Veröffentlicht in: | Analyst (London) 2024-07, Vol.149 (14), p.3765-3772 |
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Sprache: | eng |
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Zusammenfassung: | Molecularly imprinted polymer (MIP)-based chromatographic separation materials, owing to their advantages of unique selectivity, low cost, suitable reproducibility, and acceptable stability, have attracted a great deal of research in different fields. In this investigation, a new type of MIP-coated silica (MIP/SiO
2
) separation material was developed using sulfamethoxazole as a template; the specific recognition ability of MIP and appropriate physicochemical properties (abundant Si-OH, suitable pore structure, good stability,
etc
.) of SiO
2
microbeads were combined. The MIP/SiO
2
separation materials were characterized carefully. Then, various compounds (such as sulfonamides, ginsenosides, nucleosides, and several pesticides) were used to comprehensively evaluate the chromatographic performances of the MIP/SiO
2
column. Furthermore, the chromatographic performances of the MIP/SiO
2
column were compared with those of other separation materials (such as non-imprinted polymer-coated silica, C18/SiO
2
, and bare silica) packed columns. The resolution value of all measured compounds was more than 1.51. The column efficiencies of 13 510 plates per meter (N m
−1
) for sulfamethoxazole, 11 600 N m
−1
for ginsenoside Rd, and 10 510 N m
−1
for 2′-deoxyadenosine were obtained. The acceptable results verified that the MIP/SiO
2
column can be applied to separate highly polar drugs such as sulfonamides, ginsenosides, nucleosides, and pesticides.
Molecularly imprinted polymer-based chromatographic separation materials, owing to their advantages of unique selectivity, low cost, suitable reproducibility, and acceptable stability, have attracted a great deal of research in different fields. |
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ISSN: | 0003-2654 1364-5528 1364-5528 |
DOI: | 10.1039/d4an00239c |