论文标题

二茂铁作为标志性氧化还原标记:从溶液化学到分子电子设备

Ferrocene as an iconic redox marker: from solution chemistry to molecular electronic devices

论文作者

Roy, Gargee, Gupta, Ritu, Sahoo, Satya Ranjan, Saha, Sumit, Asthana, Deepak, Mondal, Prakash Chandra

论文摘要

自1951年发现以来,在各种过程中,已广泛利用了氧化还原探测器,从溶液化学,药物化学,超分子化学,表面化学到固态分子电子和旋转器电路元件到透视电化学电荷电荷动力学。二茂铁代表了一种极其化学和热稳定的,高度可再现的氧化还原探针,可分别在电极/二循环溶液的界面上进行可逆的单电子氧化,并分别对施加的阳极和阴极电位进行还原。它已经发现了将近70年,并且已成为研究和模型最广泛的有机金属化合物之一,不仅用于探测电化学电荷转移过程,而且还成为合成chiral Organtallic催化剂的分子构建块,可能是分子构建块,潜在的药物候选物,聚合物化合物,电化学化合物,电化学化合物,几个。由于其多功能反应性,引人入胜的化学结构,非常规的金属配体配位以及电子的魔术数(18 e-),因此在许多方面都取得了突破。本综述讨论了利用用于氧化还原反应,表面附着,旋转依赖性的电化学过程的最新进展,以探测自旋极化,光电性化学化学以及整合到原型型分子电子设备中。总体而言,本评论展示了有关最近对二茂铁及其衍生物的最新进步的集体信息,这些信息已被用作标志性的氧化还原标记。

Ferrocene, since its discovery in 1951, has been extensively exploited as a redox probe in a variety of processes ranging from solution chemistry, medicinal chemistry, supramolecular chemistry, surface chemistry to solid-state molecular electronic and spintronic circuit elements to unravel electrochemical charge-transfer dynamics. Ferrocene represents an extremely chemically and thermally stable, and highly reproducible redox probe that undergoes reversible one-electron oxidation and reduction occurring at the interfaces of electrode/ferrocene solution in response to applied anodic and cathodic potentials, respectively. It has been almost 70 years after its discovery and has become one of the most widely studied and model organometallic compounds not only for probing electrochemical charge-transfer process but also as molecular building blocks for the synthesis of chiral organometallic catalysts, potential drug candidates, polymeric compounds, electrochemical sensors, to name a few. Ferrocene and its derivatives have been a breakthrough in many aspects due to its versatile reactivity, fascinating chemical structures, unconventional metal-ligand coordination, and the magic number of electrons (18 e-). The present review discusses the recent progress made towards ferrocene-containing molecular systems exploited for redox reactions, surface attachment, spin-dependent electrochemical process to probe spin polarization, photo-electrochemistry, and integration into prototype molecular electronic devices. Overall, the present reviews demonstrate a piece of collective information about the recent advancements made towards the ferrocene and its derivatives that have been utilized as iconic redox markers.

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