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首页> 外文期刊>Chemistry: A European journal >[3.3]ferrocenophanes with guanidine bridging units as multisignalling receptor molecules for selective recognition of anions, cations, and amino acids
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[3.3]ferrocenophanes with guanidine bridging units as multisignalling receptor molecules for selective recognition of anions, cations, and amino acids

机译:[3.3]具有鸟嘌呤桥联单元的多茂铁铁蛋白作为多信号受体分子,可选择性识别阴离子,阳离子和氨基酸

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摘要

The synthesis, electrochemical, and optical properties of a new [3.3]ferrocenophane framework in which two ferrocene subunits, with similar electronic environments, are linked through two substituted guanidine moieties, are reported. The receptors 4-7 have been prepared in good yields by the reaction of bis(carbodiimide) 3 with primary amines. This architecture is exceptionally "tunable" because a variety of "legs" may be appended to the basic [3.3]ferrocenophane scaffold to give a wide range of signaling units. These receptors show remarkable ion-sensing properties, due to the presence of a redox active unit (ferrocene), and an amphoteric binding site (guanidine). In this nitrogen-rich structural motif the guanidine bridges act as multipoint binding sites for anions, cations, and amino acids. Sensing of anions takes place both by unprecedented redox-ratiometric measurements (F-, Cl-, AcO-, NO3-, HSO4-, H2PO4-, and HP2O73-), and colorimetric change(F-, AcO-, H2PO4-, and HP2O73-). Sensing and discrimination of amino acids takes place by redox-ratiometric measurements, whereas the recognition of metal cations (Zn2+, Ni2+, and Cd2+) is achieved either by electrochemical or fluorescence measurements. Moreover, the reported receptors display splitting of the oxidation wave of the Fe-II/Fe-III redox couple, and form the mixed-valence species 4(+.)-7(+.) by electrochemical partial oxidation which, interestingly, show intervalence charge-transfer transitions associated to the appearance of absorption bands in the near infrared spectral region.
机译:报道了新的[3.3]二茂铁骨架的合成,电化学和光学性质,其中两个具有相似电子环境的二茂铁亚基通过两个取代的胍基连接。通过双(碳二亚胺)3与伯胺的反应以高收率制备了受体4-7。此体系结构异常“可调”,因为可以将各种“分支”附加到基本的[3.3]二茂铁玻璃骨架上,以提供各种信号单元。由于存在氧化还原活性单元(二茂铁)和两性结合位点(胍),这些受体显示出显着的离子感应特性。在这种富氮的结构基序中,胍桥用作阴离子,阳离子和氨基酸的多点结合位点。通过空前的氧化还原比测量(F-,Cl-,AcO-,NO3-,HSO4-,H2PO4-和HP2O73-)和比色变化(F-,AcO-,H2PO4-和HP2O73-)。氨基酸的感应和判别是通过氧化还原比测量进行的,而金属阳离子(Zn2 +,Ni2 +和Cd2 +)的识别则可以通过电化学或荧光测量来实现。此外,报道的受体显示Fe-II / Fe-III氧化还原对的氧化波分裂,并通过电化学部分氧化形成混合价态物种4(+。)-7(+。),有趣的是,与近红外光谱区中吸收带的出现相关的间隔电荷转移跃迁。

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