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Assessment of the Electrochemical Behavior of Two-Dimensional Networks of Single-Walled Carbon Nanotubes

机译:单壁碳纳米管二维网络的电化学行为评估

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Scanning electrochemical microscopy (SECM) has been employed in the feedback mode to assess the electrochemical behavior of two-dimensional networks of single-walled carbon nanotubes (SWNTs). It is shown that, even though the network comprises both metallic and semiconducting SWNTs, at high density (well above the percolation threshold for metallic SWNTs) and with approximately millimolar concentrations of redox species the network behaves as a thin metallic film, irrespective of the formal potential of the redox couple. This result is particularly striking since the fractional surface coverage of SWNTs is only approx1percent and SECM delivers high mass transport rates to the network. Finite element simulations demonstrate that under these conditions diffusional overlap between neighboring SWNTs is significant so that planar diffusion prevails in the gap between the SECM tip and the underlying SWNT substrate. The SECM feedback response diminishes at higher concentrations of the redox species. However, wet gate measurements show that at the solution potentials of interest the conductivity is sufficiently high that lateral conductivity is not expected to be limiting. This suggests that reaction kinetics may be a limiting factor, especially since the low surface coverage of the SWNT network results in large fluxes to the SWNTs, which are characterized by a low density of electronic states. For electroanalytical purposes, significantly, two-dimensional SWNT networks can be considered as metallic films for typical millimolar concentrations employed in amperometry and voltammetry. Moreover, SWNT networks can be inexpensively and easily formed over large scales, opening up the possibility of further electroanalytical applications.
机译:扫描电化学显微镜(SECM)已用于反馈模式,以评估单壁碳纳米管(SWNT)的二维网络的电化学行为。结果表明,即使网络同时包含金属和半导体SWNT,在高密度下(远高于金属SWNT的渗滤阈值),并且氧化还原物质的浓度约为毫摩尔,该网络仍表现为金属薄膜,而与表面形式无关。氧化还原对的潜力。由于SWNT的部分表面覆盖率仅为大约1%,并且SECM向网络传输了高质量的传输速率,因此这一结果尤为惊人。有限元模拟表明,在这些条件下,相邻SWNT之间的扩散重叠非常明显,因此,平面扩散主要发生在SECM尖端和下面的SWNT基板之间的间隙中。在较高浓度的氧化还原物质中,SECM反馈响应减弱。但是,湿栅测量表明,在感兴趣的溶液电势下,电导率足够高,以至于横向电导率不会受到限制。这表明反应动力学可能是一个限制因素,特别是因为SWNT网络的低表面覆盖率会导致向SWNT的通量大,其特征是电子态密度低。出于电分析目的,对于在安培法和伏安法中采用的典型毫摩尔浓度,可以将二维SWNT网络视为金属膜。而且,SWNT网络可以廉价且容易地大规模形成,这为进一步的电分析应用打开了可能性。

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