铁蛋白单电子晶体管。

IF 2.9 2区 化学 Q3 CHEMISTRY, PHYSICAL
Jacqueline A. Labra-Muñoz*,  and , Herre S. J. van der Zant*, 
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引用次数: 0

摘要

我们报告了利用宽自对准纳米间隙器件制造基于铁蛋白的单电子晶体管的情况。通过间隙区域下方的局部栅极可以进行三端电学测量,结果显示库仑阻塞与单电子隧道理论非常吻合。通过与该理论的比较,可以提取隧道电阻、电容和栅极耦合。此外,数据还表明存在两个串联或并联耦合的独立孤岛:这是仅使用双端测量无法区分的信息。为了解释电荷传输特征,我们根据铁蛋白的既定构型结构提出了一种方案,涉及有机外壳中的铁位点或核心中的两个不同的铁簇。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Ferritin Single-Electron Transistor

Ferritin Single-Electron Transistor

Ferritin Single-Electron Transistor

We report on the fabrication of a single-electron transistor based on ferritin using wide self-aligned nanogap devices. A local gate below the gap area enables three-terminal electrical measurements, showing the Coulomb blockade in good agreement with the single-electron tunneling theory. Comparison with this theory allows extraction of the tunnel resistances, capacitances, and gate coupling. Additionally, the data suggest the presence of two separate islands coupled in series or in parallel: information that was not possible to distinguish by using only two-terminal measurements. To interpret the charge transport features, we propose a scenario based on the established configuration structures of ferritin involving either iron sites in the organic shell or two dissimilar clusters within the core.

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来源期刊
CiteScore
5.80
自引率
9.10%
发文量
965
审稿时长
1.6 months
期刊介绍: An essential criterion for acceptance of research articles in the journal is that they provide new physical insight. Please refer to the New Physical Insights virtual issue on what constitutes new physical insight. Manuscripts that are essentially reporting data or applications of data are, in general, not suitable for publication in JPC B.
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