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首页> 外文期刊>RSC Advances >5-Phenyl-dipyrromethane and 5-(4-pyridyl)-dipyrromethane as modular building blocks for bio-inspired conductive molecularly imprinted polymer (cMIP). An electrochemical and piezoelectric investigation
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5-Phenyl-dipyrromethane and 5-(4-pyridyl)-dipyrromethane as modular building blocks for bio-inspired conductive molecularly imprinted polymer (cMIP). An electrochemical and piezoelectric investigation

机译:5-苯基-二吡咯甲烷和5-(4-吡啶基)-二吡咯甲烷作为生物启发的导电分子印迹聚合物(cMIP)的模块化构建基块。电化学和压电研究

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摘要

5-Phenyl-dipyrromethane (5-ph-DP) and 5-(4-pyridyl) dipyrromethane (5-py-DP) are proposed, for the first time, as electroactive building blocks for the preparation of sensors based on molecularly imprinted conductive polymers (cMIP). This paper reports the electrochemical and gravimetric investigation on 5phenyl- dipyrromethane and 5-(4-pyridyl) dipyrromethane and it demonstrates their ability to form both conductive homo-polymers (cMIP) and co-polymers (co-cMIP). The template salicylic acid (SA) was reversibly and selectively incorporated in the obtained synthetic pockets as proved by both voltammetric and piezoelectric investigation. Moreover, the sensitivity of co-cMIP was higher compared to the two homopolymers. The analytical performances confirm that dipyrromethanes, properly functionalized, can be used as electroactive amino acid-like monomers, to prepare bio-inspired imprinted polymers.
机译:首次提出了5-苯基-二吡咯甲烷(5-ph-DP)和5-(4-吡啶基)二吡咯甲烷(5-py-DP),作为用于制备基于分子印迹导电性的传感器的电活性基石聚合物(cMIP)。本文报道了对5苯基-二吡咯甲烷和5-(4-吡啶基)二吡咯甲烷的电化学和重量分析,并证明了它们能够形成导电均聚物(cMIP)和共聚物(co-cMIP)。如通过伏安法和压电研究证明的那样,将模板水杨酸(SA)可逆地和选择性地掺入所获得的合成袋中。而且,与两种均聚物相比,co-cMIP的灵敏度更高。分析性能证实,适当官能化的二吡咯甲烷可用作电活性氨基酸样单体,以制备受生物启发的印迹聚合物。

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