2021
DOI: 10.1039/d1ra00134e
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An ionic liquid–molecularly imprinted composite based on graphene oxide for the specific recognition and extraction of cancer antigen 153

Abstract: In this research, we used GO as the support material, IL as the stabilizer, CA153 as the template and DA as the functional monomer for the preparation of GMIPs. The GMIP was successfully used as an enrichment agent for the selective enrichment of CA153.

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Cited by 11 publications
(2 citation statements)
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“…It introduces a novel development and research to analytical chemistry. [7][8][9][10] Owing to high speci-city for target molecules, remarkable sensitivity, and simple operation, 11 MIECS have extensive applications in the elds of food security, pesticide residues, environmental detection, clinical medicine and so on. [12][13][14] To increase the surface area of the modied electrode, materials with excellent performance are usually incorporated.…”
Section: Introductionmentioning
confidence: 99%
“…It introduces a novel development and research to analytical chemistry. [7][8][9][10] Owing to high speci-city for target molecules, remarkable sensitivity, and simple operation, 11 MIECS have extensive applications in the elds of food security, pesticide residues, environmental detection, clinical medicine and so on. [12][13][14] To increase the surface area of the modied electrode, materials with excellent performance are usually incorporated.…”
Section: Introductionmentioning
confidence: 99%
“…GO is typically synthesized by the modified Hummers' method, which involves strong acids and oxidants under harsh conditions. [178][179][180][181][182] As such, the resulting graphene-based adsorbents are expensive and unsuitable for large-scale applications. Reducing the cost of the starting graphene material is essential to fabricate a lowcost and environment-friendly graphene-based adsorbent.…”
Section: Summary and Perspectivesmentioning
confidence: 99%