2007•Chemical Research and ApplicationRequires access

Preparation and recognition properties of molecularly imprinted polymer for ciprofloxacin

DU Li-ming

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Abstract

Using ciprofloxacin as template molecule,methacrylic acid and 4-rinylpyridine as functional monomer,a kind of molecularly imprinted polymer(MIP) was prepared by a molecular imprinting technique.The molecularly imprinted polymer was investigated in equilibrium binding experiment to evaluate its adsorption property and selective recognition.Scatchard analysis showed that two classes of binding sites were formed in the imprinted polymer under the studied concentration.The selective binding experiments for substrates indicated that the imprinted polymer exhibited higher selectivity and affinity ability.

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What this paper is about

Using ciprofloxacin as template molecule,methacrylic acid and 4-rinylpyridine as functional monomer,a kind of molecularly imprinted polymer(MIP) was prepared by a molecular imprinting technique.The molecularly imprinted polymer was investigated in equilibrium binding experiment to evaluate its adsorption property and selective recognition.Scatchard analysis showed that two classes of binding sites were formed in the imprinted polymer under the studied concentration.The selective binding experiments for substrates indicated that the imprinted polymer exhibited higher selectivity and affinity ability.

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Available abstract

Using ciprofloxacin as template molecule,methacrylic acid and 4-rinylpyridine as functional monomer,a kind of molecularly imprinted polymer(MIP) was prepared by a molecular imprinting technique.The molecularly imprinted polymer was investigated in equilibrium binding experiment to evaluate its adsorption property and selective recognition.Scatchard analysis showed that two classes of binding sites were formed in the imprinted polymer under the studied concentration.The selective binding experiments for substrates indicated that the imprinted polymer exhibited higher selectivity and affinity ability.

Key concepts: Molecularly imprinted polymer, Methacrylic acid, Molecular imprinting, Polymer, Molecular recognition, Adsorption, Selectivity, Chemistry

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