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首页> 外文期刊>Physica, E. Low-dimensional systems & nanostructures >Hybrid molecule-on-silicon nanoelectronics: Electrochemical processes for grafting and printing of monolayers
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Hybrid molecule-on-silicon nanoelectronics: Electrochemical processes for grafting and printing of monolayers

机译:硅上杂化分子纳米电子技术:单层接枝和印刷的电化学过程

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摘要

The hybrid nanoelectronics, i.e., organic molecules deposited on Si exhibiting electronic functionalities is expected to extend the scaling limits of Si microelectronics down to few nanometers. In this review. first we make an overview of the organic molecules exhibiting various functionalities, such as, dielectric, diode, memory and transistor. We then review the literature on electrochemical grafting of organic molecules to Si, which have been carried Out using terminal vinyl (C=C), ethynyl (C=C), halide (Cl, Br, 1), tetraalkylammonium salt, diazonium salt and silane as reactant. It has been demonstrated that electrochemistry not only allows grafting of molecules on Si but also provides very useful information on the characteristics of the grafted layers. The electronic functionalities of various electrografted molecules are discussed. An additional advantage of the electrochemical process is that monolayer patterns with spatial resolution in a wide range, i.e. from nanometer to millimeter, can be easily prepared. The recent advances made in the spatial patterning of rnonolayers using electrochemical lithography are briefly reviewed. (C) 2008 Elsevier B.V. All rights reserved.
机译:杂化纳米电子学,即沉积在具有电子功能的硅上的有机分子,有望将硅微电子学的规模限制扩展到几纳米。在这篇评论中。首先,我们将概述具有各种功能的有机分子,例如电介质,二极管,存储器和晶体管。然后,我们回顾了有关使用末端乙烯基(C = C),乙炔基(C = C),卤化物(Cl,Br,1),四烷基铵盐,重氮盐和有机硅将有机分子电化学接枝到Si的文献。硅烷作为反应物。已经证明,电化学不仅允许分子在Si上接枝,而且还提供了有关接枝层特性的非常有用的信息。讨论了各种电接枝分子的电子功能。电化学方法的另一优点是可以容易地制备具有宽范围(即从纳米到毫米)的空间分辨率的单层图案。简要回顾了使用电化学光刻技术在金属层的空间图案化方面取得的最新进展。 (C)2008 Elsevier B.V.保留所有权利。

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