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Development of a Novel Bidimensional Spectroelectrochemistry Cell Using Transfer Single-Walled Carbon Nanotubes Films as Optically Transparent Electrodes

机译:使用转移单壁碳纳米管薄膜作为光学透明电极的新型二维光谱电化学电池的开发

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摘要

A really easy method to transfer commercial single-walled carbon nanotubes (SWCNTs) to different substrates is proposed. In this paper, a homogeneous transference of SWCNTs films to nonconductor and transparent supports, such as polyethylene terephthalate, glass, and quartz, and to conductor supports, such as indium tin oxide, aluminum, highly ordered pyrolytic graphite, and glassy carbon, was achieved using a very fast, reproducible, and clean methodology. In order to test these transferences, SWCNTs films transferred on quartz were used as working optically UV–vis transparent electrodes due to their optimal electrical and optical properties. A new easy-to-use, homemade optical fiber based cell for bidimensional spectroelectrochemistry was developed, offering the possibility to measure in normal and parallel configuration. The cell was tested with ferrocenemethanol, a compound widely used in electrochemistry but scarcely studied by spectroelectrochemistry, covering the UV–vis spectral region.
机译:提出了一种真正简单的将商业单壁碳纳米管(SWCNT)转移到不同基材的方法。在本文中,实现了SWCNTs薄膜向非导体和透明载体(如聚对苯二甲酸乙二醇酯,玻璃和石英)和导体载体(如铟锡氧化物,铝,高度有序的热解石墨和玻璃碳)的均匀转移。使用非常快速,可重复且干净的方法。为了测试这些转移,由于其最佳的电学和光学特性,在石英上转移的SWCNTs薄膜被用作光学可见的透明电极。开发了一种新的易于使用的自制的用于二维光谱电化学的基于光纤的电池,从而提供了在正常和并行配置下进行测量的可能性。该电池用二茂铁甲醇进行了测试,二茂铁甲醇是一种广泛用于电化学的化合物,但很少通过光谱电化学研究,其覆盖了紫外可见光谱区域。

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