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金(111)表面上自组装的电活性聚氯三苯甲基自由基单分子层。

Self-assembled monolayers of electroactive polychlorotriphenylmethyl radicals on Au(111).

作者信息

Crivillers Núria, Mas-Torrent Marta, Vidal-Gancedo José, Veciana Jaume, Rovira Concepció

机构信息

Institut de Ciència de Materials de Barcelona and Networking Research Center on Bioengineering, Biomaterials and Nanomedicine, Campus Universitari de Bellaterra, 08193 Cerdanyola del Vallès, Spain.

出版信息

J Am Chem Soc. 2008 Apr 23;130(16):5499-506. doi: 10.1021/ja710845v. Epub 2008 Apr 1.

Abstract

Two new polychlorotriphenylmethyl (PTM) derivatives bearing a thioacetate and a disulfide group have been synthesized to anchor on gold substrate. On the basis of these molecules, three strategies were followed to prepare self-assembled monolayers (SAMs) of electroactive PTMs. The resulting SAMs were fully characterized by contact angle, atomic force microscopy (AFM), and time-of-flight secondary ion mass spectroscopy (ToF-SIMS). The high coverage surface and stability of the SAMs were demonstrated by cyclic voltammetry. In addition, the electrochemical experiments proved that these SAMs are bistable since it is possible to reversibly switch between the PTM radical state to the corresponding anion. The magnetic response was investigated by electron paramagnetic resonance. We observed that when the PTM SAMs are in their radical form they confer magnetic functionality to the surface, whereas when they are in the anionic state, the surface is diamagnetic. Thus, the PTM-modified substrates are multifunctional surfaces since they combine magnetic and electroactive properties. The reported results show the high potential of these materials for the fabrication of surface molecular devices.

摘要

已合成了两种带有硫代乙酸酯和二硫键基团的新型聚氯三苯甲基(PTM)衍生物,用于锚定在金基底上。基于这些分子,采用了三种策略来制备具有电活性的PTM自组装单分子层(SAMs)。通过接触角、原子力显微镜(AFM)和飞行时间二次离子质谱(ToF-SIMS)对所得的SAMs进行了全面表征。循环伏安法证明了SAMs具有高覆盖率的表面和稳定性。此外,电化学实验证明这些SAMs是双稳态的,因为可以在PTM自由基态和相应阴离子之间可逆切换。通过电子顺磁共振研究了磁响应。我们观察到,当PTM SAMs处于自由基形式时,它们赋予表面磁功能,而当它们处于阴离子状态时,表面是抗磁性的。因此,PTM修饰的基底是多功能表面,因为它们兼具磁性能和电活性。报道的结果表明这些材料在制造表面分子器件方面具有很高的潜力。

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