Journal Article10.1016/J.CCLET.2010.12.004
Preparation of hydrophilic molecularly imprinted polymers for tetracycline antibiotics recognition
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TL;DR: In this article, the imprinting effect and adsorption amounts of hydrophilic molecularly imprinted polymers for tetracycline (TC) were greatly improved in water media.
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About: This article is published in Chinese Chemical Letters. The article was published on 01 May 2011. The article focuses on the topics: Molecularly imprinted polymer & Methacrylic acid.
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Citations
Molecular imprinting science and technology: a survey of the literature for the years 2004-2011.
TL;DR: A survey of the literature covering the development of molecular imprinting science and technology over the years 2004–2011 and efforts to apply these polymeric materials to a range of application areas is presented.
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Preparation of molecularly imprinted nanoparticles with superparamagnetic susceptibility through atom transfer radical emulsion polymerization for the selective recognition of tetracycline from aqueous medium.
Jiangdong Dai,Jianming Pan,Longcheng Xu,Xiuxiu Li,Zhou Zhiping,Rongxian Zhang,Yong-Sheng Yan,Yong-Sheng Yan +7 more
TL;DR: As-prepared magnetic molecularly imprinted nanoparticles (MMINs) were evaluated as adsorbents for selective recognition of tetracycline molecules from aqueous medium and demonstrated outstanding affinity and selectivity towards TC over competitive antibiotics.
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Recent advances in electrochemical sensors for antibiotics and their applications
TL;DR: This mini review has summarized the latest developments and new trends in electrochemical sensors for antibiotics, and the existing problems and the future challenges ahead have been proposed.
128
Molecularly imprinted polymer-high performance liquid chromatography for the determination of tetracycline drugs in animal derived foods
TL;DR: In this paper, a molecularly imprinted polymer solid phase extraction method combining high performance liquid chromatography was developed to determine the residues of tetracycline drugs in animal derived foods.
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Enhanced Adsorption of Aqueous Tetracycline Hydrochloride on Renewable Porous Clay-Carbon Adsorbent Derived from Spent Bleaching Earth via Pyrolysis
TL;DR: The results indicate that SBE@C is a likely candidate for the treatment of TCH wastewater in the coming practical applications and the problem of secondary pollution caused by SBE and residual oil is resolved by the use of S BE@C.
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References
Preparation of magnetic molecularly imprinted polymer for the separation of tetracycline antibiotics from egg and tissue samples.
TL;DR: The proposed method reduced the complicacy of classical method and improved the reliability of method by carrying out a single step extraction and clean-up procedures.
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Preparation and evaluation of solid-phase microextraction fiber based on molecularly imprinted polymers for trace analysis of tetracyclines in complicated samples
TL;DR: A method for the fluorimetric determination of four TCs by the MIP-coated SPME coupled with HPLC was developed and the special selectivity to tetracycline and structure-similar oxytetracyCline, doxycycline, chlortetracy Cline were discovered with the Mip-coating fibers.
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New restricted access materials combined to molecularly imprinted polymers for selective recognition/release in water media
Francesco Puoci,Francesca Iemma,Giuseppe Cirillo,Manuela Curcio,Ortensia Ilaria Parisi,Umile Gianfranco Spizzirri,Nevio Picci +6 more
TL;DR: In this paper, a new restricted access materials combined to molecularly imprinted polymers (RAM-MIP) with hydrophilic external layer were prepared and their applicability in p-acetaminophenol (AMP) selective recognition and release was evaluated.
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Preparation of mixed-templates molecularly imprinted polymers and investigation of the recognition ability for tetracycline antibiotics
TL;DR: The mixed-templates MIPs were shown to be promising for on-line solid-phase extraction-HPLC-UV determination of trace TCs in foodstuffs.
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Molecularly imprinted polymers microsphere prepared by precipitation polymerization for hydroquinone recognition
TL;DR: A one-step precipitation polymerization synthesis was adopted for the preparation of molecularly imprinted polymers (MIPs) by using hydroquinone as a template molecule to show that the polymers were uniform spheres with the diameter of about 700 nm.
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