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硅基分子整流器:通过增强顶电极/分子耦合实现高性能

Molecular Rectifiers on Silicon: High Performance by Enhancing Top-Electrode/Molecule Coupling.

作者信息

Lamport Zachary A, Broadnax Angela D, Scharmann Ben, Bradford Robert W, DelaCourt Andrew, Meyer Noah, Li Hui, Geyer Scott M, Thonhauser Timo, Welker Mark E, Jurchescu Oana D

出版信息

ACS Appl Mater Interfaces. 2019 May 22;11(20):18564-18570. doi: 10.1021/acsami.9b02315. Epub 2019 May 10.

Abstract

One of the simplest molecular-scale electronic devices is the molecular rectifier. In spite of considerable efforts aimed at understanding structure-property relationships in these systems, devices with predictable and stable electronic properties are yet to be developed. Here, we demonstrate highly efficient current rectification in a new class of compounds that form self-assembled monolayers on silicon. We achieve this by exploiting the coupling of the molecules with the top electrode which, in turn, controls the position of the relevant molecular orbitals. The molecules consist of a silane anchoring group and a nitrogen-substituted benzene ring, separated by a propyl group and imine linkage, and result from a simple, robust, and high-yield synthetic procedure. We find that when incorporated in molecular diodes, these compounds can rectify current by as much as 3 orders of magnitude, depending on their structure, with a maximum rectification ratio of 2635 being obtained in ( E)-1-(4-cyanophenyl)- N-(3-(triethoxysilyl) propyl)methanimine (average R = 1683 ± 458, at an applied voltage of 2 V). This performance is on par with that of the best molecular rectifiers obtained on metallic electrodes, but it has the advantage of lower cost and more efficient integration with current silicon technologies. The development of molecular rectifiers on silicon may yield hybrid systems that can expand the use of silicon toward novel functionalities governed by the molecular species grafted onto its surface.

摘要

最简单的分子尺度电子器件之一是分子整流器。尽管人们为理解这些系统中的结构 - 性质关系付出了巨大努力,但具有可预测且稳定电子性质的器件仍有待开发。在此,我们展示了一类新型化合物在硅上形成自组装单分子层时具有高效的电流整流特性。我们通过利用分子与顶部电极的耦合来实现这一点,这反过来又控制了相关分子轨道的位置。这些分子由一个硅烷锚定基团和一个氮取代的苯环组成,中间隔着一个丙基和亚胺连接键,并且通过一种简单、可靠且高产率的合成方法制备而成。我们发现,当将这些化合物纳入分子二极管中时,根据其结构,它们能够使电流整流高达3个数量级,在(E)-1-(4-氰基苯基)-N-(3-(三乙氧基甲硅烷基)丙基)甲亚胺中获得的最大整流比为2635(在2 V的施加电压下,平均R = 1683 ± 458)。这一性能与在金属电极上获得的最佳分子整流器相当,但它具有成本更低以及与当前硅技术集成更高效的优势。在硅上开发分子整流器可能会产生混合系统,从而能够将硅的应用扩展到由接枝在其表面的分子物种所决定的新功能上。

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