Molecular circuit design

L. Masiero, M. Pacheco, C. H. Barbosa, C. C. Santini
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引用次数: 5

Abstract

With a more realistic vision of a possible limit for miniaturization of components with conventional CMOS technology, a new technology has surfaced -molecular electronics which, from the bottom-up approach, aims at the construction of electrical devices to implement computation using individual or small collections of molecules, offering an alternative way to build nanoscale circuits. These circuits have the potential to reduce device size and fabrication costs by several orders of magnitude relative to conventional CMOS. Recently, some mechanisms have been considered as a basis to molecular electronic systems design. Two terminal molecular devices that work as diodes have been synthesized, with similar behavior to rectifying and tunnel diodes. In this article, a study on the synthesis of molecular circuits is presented, integrating simulated molecular devices as the molecular Tour-Reed diode based on the evolvable hardware (EHW) paradigm.
分子电路设计
随着传统CMOS技术对元件小型化可能限制的更现实的设想,一种新技术浮出水面——分子电子学,它从自下而上的方法出发,旨在构建电子设备,利用单个或小分子集合实现计算,为构建纳米级电路提供了另一种方法。与传统CMOS相比,这些电路有可能将器件尺寸和制造成本降低几个数量级。近年来,一些机制被认为是分子电子系统设计的基础。已经合成了两种作为二极管工作的终端分子器件,它们具有与整流二极管和隧道二极管相似的性能。本文介绍了一种基于可进化硬件(EHW)范式,将模拟分子器件集成为分子环簧二极管的分子电路的合成研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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