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Comparison of the Thermodynamic Properties of Particulate and Monolithic Columns of Molecularly Imprinted Copolymers

机译:分子印迹共聚物颗粒柱和整体柱热力学性质的比较

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A variety of polymerization techniques can be used to prepare molecularly imprinted copolymers(MIPs)for the purpose of the separation of enantiomers by HPLC.Unfortunately,the lack of thermodynamic and kinetic data characterizing the imprinted polymers prepared by these different techniques prevents the rational choice of the one most suited for a specific application.We investigated and compared the thermodynamic properties of copolymers imprinted for Fmoc-L-tryptophan and prepared by two different methods.The first was an in situ polymerization method that gives monolithic columns(monolithic MIPs),the second,a traditional method giving bulk MIPs.Examination of the thermodynamic properties on these two different MIPs showed that three types of binding sites coexist on their surface.The highest energy sites adsorb only the imprinted molecule or template.Most of the intermediate energy sites adsorb both the template and its antipode,although part of them may adsorb only the template.Finally,the lowest energy sites provide nonse-lective interactions of both the template and its antipode.On the nonimprinted copolymer,there are only two types of sites.The high-energy sites have a slightly lower energy that the intermediate sites of the MIPs,and the low-energy sites have properties close to those of the lowest energy sites on the MIPs.The monolithic MIPs have fewer nonselective sites than the bulk MIPs.However,the polar porogen that is needed to prepare the monolithic MIPs negatively affects the enantiomeric separation.
机译:为了通过HPLC分离对映异构体,可以使用多种聚合技术来制备分子印迹共聚物(MIP)。不幸的是,由于缺乏热力学和动力学数据来表征通过这些不同技术制备的印迹聚合物而无法合理选择我们研究并比较了通过两种不同方法制备的Fmoc-L-色氨酸印迹的共聚物的热力学性质。第一种是原位聚合方法,该方法得到了整体式色谱柱(整体式MIP),第二,这是产生大量MIP的传统方法。对这两种不同的MIP的热力学性质的研究表明,三种类型的结合位点共存于它们的表面。最高的能量位点仅吸附印迹的分子或模板。模板及其对映体都可以,尽管它们的一部分可能仅吸附模板。通常,最低能量位点可提供模板及其对映体的非选择性相互作用。在非印迹共聚物上,只有两种类型的位点。高能量位点的能量略低于MIP的中间位点,整体MIP的非选择性位点比本体MIP少,但是制备整体MIP所需的极性致孔剂对对映体分离产生负面影响。

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