Università degli Studi di Milano, Dipartimento di Chimica, Via Golgi 19, 20133, Milano, Italy.
Chem Commun (Camb). 2023 Feb 16;59(15):2072-2080. doi: 10.1039/d2cc06630k.
Different areas of modern chemistry, require wireless systems able to transfer chirality from the molecular to the macroscopic event. The ability to recognize the enantiomers of a chiral analyte is highly desired, since in the majority of cases such molecules present different physico-chemical properties that could lead, eventually, to dangerous or harmful interactions with the environment or the human body. From an electrochemical point of view, enantiomers have the same electrochemical behavior except when they interact in a chiral environment. In this Feature Article, different approaches for the electrochemical recognition of chiral information based on the actuation of conducting polymers are described. Such a dynamic behavior of π-conjugated materials is based on an electrochemically induced shrinking/swelling transition of the polymeric matrix. Since all the systems, described so far in the literature, are achiral and require a direct connection to a power supply, new strategies will be presented in the manuscript, concerning the implementation of chirality in electrochemical actuators and their use in a wireless manner through bipolar electrochemistry. Herein, the synergy between the wireless unconventional actuation and the outstanding enantiorecognition of inherent chiral oligomers is presented as an easy and straightforward read out of chiral information in solution. This approach presents different advantages in comparison to classic electrochemical systems such as its wireless nature and the possible real-time data acquisition.
现代化学的不同领域都需要能够将手性从分子传递到宏观事件的无线系统。能够识别手性分析物的对映异构体是非常需要的,因为在大多数情况下,这些分子具有不同的物理化学性质,最终可能导致与环境或人体的危险或有害相互作用。从电化学的角度来看,除非对映异构体在手性环境中相互作用,否则它们具有相同的电化学行为。在这篇特写文章中,描述了基于导电聚合物致动的电化学识别手性信息的不同方法。这种π共轭材料的动态行为基于聚合物基质的电化学诱导收缩/溶胀转变。由于迄今为止文献中描述的所有系统都是非手性的,并且需要直接连接到电源,因此本文将提出新的策略,涉及电化学致动器中的手性实施及其通过双极电化学以无线方式使用。在此,无线非常规致动与固有手性低聚物出色的对映体识别之间的协同作用被呈现为对手性信息在溶液中进行简单直接的读取。与经典电化学系统相比,这种方法具有不同的优势,例如其无线性质和可能的实时数据采集。