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Probing peptide nanowire conductivity by THz nanoscopy

机译:太赫兹纳米法探测肽纳米线电导率

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Significant efforts have recently been invested in assessing the physical and chemical properties of microbial nanowires for their promising role in developing alternative renewable sources of electricity, bioelectronic materials and implantable sensors. One of their outstanding properties, the ever-desirable conductivity has been the focus of numerous studies. However, the lack of a straightforward and reliable method for measuring it seems to be responsible for the broad variability of the reported data. Routinely employed methods tend to underestimate or overestimate conductivity by several orders of magnitude. In this work, synthetic peptide nanowires conductivity is interrogated employing a non-destructive measurement technique developed on a terahertz scanning near-field microscope to test if peptide aromaticity leads to higher electrical conductivity. Our novel peptide conductivity measurement technique, based on triple standards calibration method, shows that in the case of two biopolymer mimicking peptides, the sample incorporating aromatic residues (W6) is about six times more conductive than the negative control (L6). To the best of our knowledge, this is the first report of a quantitative nano-scale terahertz s-SNOM investigation of peptides. These results prove the suitability of the terahertz radiation-based non-destructive approach in tandem with the designer peptides choice as model test subjects. This approach requires only simple sample preparation, avoids many of the pitfalls of typical contact-based conductivity measurement techniques and could help understanding fundamental aspects of nature's design of electron transfer in biopolymers.
机译:最近,人们投入了大量精力来评估微生物纳米线的物理和化学性质,因为它们在开发替代可再生能源、生物电子材料和植入式传感器方面发挥着有希望的作用。作为其突出的特性之一,理想的导电性一直是众多研究的焦点。然而,由于缺乏一种直接可靠的方法来衡量它,这似乎是造成报告数据广泛可变性的原因。常规采用的方法往往会低估或高估电导率几个数量级。在这项工作中,使用在太赫兹扫描近场显微镜上开发的无损测量技术来询问合成肽纳米线的电导率,以测试肽芳香性是否导致更高的电导率。我们基于三重标准校准方法的新型肽电导率测量技术表明,在两种模拟肽的生物聚合物的情况下,含有芳香族残基(W6)的样品的导电性约为阴性对照(L6)的六倍。据我们所知,这是第一份对肽进行定量纳米级太赫兹s-SNOM研究的报告。这些结果证明了基于太赫兹辐射的无损方法与设计多肽选择作为模型测试对象的适用性。这种方法只需要简单的样品制备,避免了典型的基于接触的电导率测量技术的许多陷阱,并有助于理解生物聚合物中电子转移的自然设计的基本方面。

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