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Characterization of Inherently Chiral Electrosynthesized Oligomeric Films by Voltammetry and Scanning Electrochemical Microscopy (SECM)

机译:伏安法和扫描电化学显微镜(SECM)的本身性手性电结合寡聚膜的表征(SECM)

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摘要

A voltammetric and scanning electrochemical microscopy (SECM) investigation was performed on an inherently chiral oligomer-coated gold electrode to establish its general properties (i.e., conductivity and topography), as well as its ability to discriminate chiral electroactive probe molecules. The electroactive monomer (S)-2,2′-bis(2,2′-bithiophene-5-yl)-3,3′-bibenzothiophene ((S)-BT2T4) was employed as reagent to electrodeposit, by cyclic voltammetry, the inherently chiral oligomer film of (S)-BT2T4 (oligo-(S)-BT2T4) onto the Au electrode surface (resulting in oligo-(S)-BT2T4-Au). SECM measurements, performed in either feedback or competition mode, using the redox mediators [Fe(CN)6]4− and [Fe(CN)6]3− in aqueous solutions, and ferrocene (Fc), (S)-FcEA, (R)-FcEA and rac-FcEA (FcEA is N,N-dimethyl-1-ferrocenylethylamine) in CH3CN solutions, indicated that the oligomer film, as produced, was uncharged. The use of [Fe(CN)6]3− allowed establishing that the oligomer film behaved as a porous insulating membrane, presenting a rather rough surface. This was inferred from both the approach curves and linear and bidimensional SECM scans, which displayed negative feedback effects. The oligomer film acquired semiconducting or fully conducting properties when the Au electrode was biased at potential more positive than 0.6 V vs. Ag|AgCl|KCl. Under the latter conditions, the approach curves displayed positive feedback effects. SECM measurements, performed in competition mode, allowed verifying the discriminating ability of the oligo-(S)-BT2T4 film towards the (S)-FcEA and (R)-FcEA redox mediators, which confirmed the results obtained by cyclic voltammetry. SECM linear scans indicated that the enantiomeric discriminating ability of the oligo-(S)-BT2T4 was even across its entire surface.
机译:在固有的手性低聚物涂覆的金电极上进行伏安和扫描电化学显微镜(SECM)研究,以确定其通用性质(即导电性和形貌),以及其区分手性电活性探针分子的能力。电活性单体-2,2'-BIS(2,2'-二苯乙烯-5-基)-3,3'-双孔噻吩((S)-BT2T4)用循环伏安法作为电沉积作为电沉积, (S)-BT2T4(寡核苷酸-BT4)上固有的手性低聚物膜在Au电极表面上(得到寡核苷酸-BT2T4-Au)。 SECM测量,在反馈或竞争模式中使用氧化还原介质[Fe(CN)6] 4-和[Fe(CN)6] 3-在水溶液中,以及二茂铁(Fc),(S)-FCEA, (R)-FCEA和RAC-FCEA(FCEA是N,N-二甲基-1-二铁烯基乙胺)在CH 3 CN溶液中,表明如所制备的低聚物膜不带电。使用[Fe(CN)6] 3-允许建立低聚物膜的表现为多孔绝缘膜,呈现相当粗糙的表面。这是从方法曲线和线性和竞争SECM扫描中推断出来,这显示了负反馈效果。当Au电极在比0.6V与Ag的电位下偏压时,寡聚物膜获得半导体或完全导电性能。在后一种条件下,方法曲线显示了正反馈效果。在竞争模式下进行的SECM测量,允许验证寡核苷酸-BT2T4膜朝向(S)-FCEA和(R)-FCEA氧化还原介质的区分能力,该氧化铈介质证实了通过循环伏安法获得的结果。 SECM线性扫描表明,寡核苷酸-BT2T4的对映体区分能力甚至穿过其整个表面。

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