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分子电路
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  molecular circuits
     In the Chapter two, several molecular electronic devices and their operating principle are presented, of which three-terminal molecular device is of great importance to the molecular circuits requiring some form of power gain and signal restoration. Based on the two-terminal UDM (universal device model) proposed by Matthew and Garrett, this paper puts forward a generic three-terminal UDM such that circuit simulation and design become possible at the nanoscale level .
     文章的第二部分重点介绍了几种常用的分子电子器件及其工作原理; 其中三端分子器件对于需要功率增益和信号还原的分子电路来说是非常重要的,本文基于Matthew 和Garrett 等人提出的两端分子器件的通用器件模型(Universal Device Model,简记为UDM),创造性地提出了一种一般的三端分子器件的UDM,用于在纳米尺度下的分子电路仿真和设计。
短句来源
     For the molecular circuits requiring some forms of power gain and signal restoration, three-terminal molecular device is of great importance. We propose a generic universal device model(UDM) that captures the molecular device behavior such that circuit simulation and design become possible at the nanoscale level.
     三端分子器件对于需要功率增益和信号还原的分子电路来说是非常重要的,本文提出了一种一般的三端分子器件的通用器件模型(UniversalDeviceModel,简记为UDM),用于在纳米尺度下的分子电路仿真和设计。
短句来源
  “分子电路”译为未确定词的双语例句
     In order to implement subtraction circuit in molecular scale, based on the principle of solid-state electronic circuit design, a binary subtractor based on polyphenylene was proposed.
     为了在分子电路水平实现减法运算,按照固态电子学组合逻辑原理,提出了一种基于聚亚苯基分子器件的二进制减法器(包括半减器和全减器)逻辑电路的设计。
短句来源
  相似匹配句对
     10 ?
     分子
短句来源
     The Analysis of Nitrogen Laser Discharge Circuit
     氮分子激光器放电电路分析
短句来源
     Basic Direct Current Circuits
     直流电路
短句来源
     Molecular Selection
     分子选择
短句来源
     Communication ICs
     通信电路
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  molecular circuit
These thresholds vary among different implementations of the same logical formula, allowing molecular circuit designers to trade-off reliability, circuit area, crossbar geometry and the computational complexity of locating functional components.
      
However, up till now, the molecular circuit governed by MYCN and its target genes is not fully understood.
      
  molecular circuits
Our knowledge about the molecular circuits regulating the duplication of the genetic material and the subsequent division of a cell into two daughter cells has exploded over the last decade.
      
The Hd mutant is a good model with which to study developmental cascades, since it has a distinct phenotype in the limb where cellular and molecular circuits have been thoroughly investigated.
      
In addition, a significant portion of the known molecular circuits is at the protein level.
      
Molecular circuits involving MK participate in early phase to induce inflammation.
      
Such molecular circuits may initiate chain reactions, which make the inflammation worse and consequently induce the neointima formation.
      
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In recent years the research of nanodevices have an enormous impact on various scientific fields. Some new developments of nanodevices were reviewed in this paper, especially molecular circuits which are associated with information technology industry, and some main applications of nanodevices which are up to date.

近几年来对纳米器件的研究给各个领域带来了巨大的冲击。文章讨论了纳米器件特别是和信息技术产业密切相关的分子电路的最新进展 ,以及目前对纳米器件的一些主要的应用

Organic functional materials have attracted particular attention recently,which have accelerated the appearance of new ideas,new theory and new materials. The electronic states,conducting mechanism and doping effects of organic functional materials are completely different from metals and inorganic semiconductors. Therefore,the excavation of the structure and function of organic functional materials will guide the design of molecules and devices,to overcome the shortcoming of inorganic materials to reach the...

Organic functional materials have attracted particular attention recently,which have accelerated the appearance of new ideas,new theory and new materials. The electronic states,conducting mechanism and doping effects of organic functional materials are completely different from metals and inorganic semiconductors. Therefore,the excavation of the structure and function of organic functional materials will guide the design of molecules and devices,to overcome the shortcoming of inorganic materials to reach the aim for designing and fabricating molecular circuits. Here,we review the concepts,types,thin films and devices of organic functional materials. The concepts of Molecular Electronics and molecular devices are also simply introduced.

具有光、电、磁物理功能的有机材料的出现促进新思想、新概念、新材料的发展 ;有机功能材料的电子状态、导电机理以及杂质的影响完全有别于无机金属和半导体 ,因此 ,在深入探索结构与功能的关系的基础上 ,有可能开展分子、聚集态以及器件设计的研究。若与有机化合物的结构多样化 ,良好的加工性、成膜和成纤性等特点相结合 ,有可能实现无机电子材料所难兼具的电子行为 ,进而实现“分子电路”的设想。这里 ,我们对有机功能材料的基本概念、种类 ,功能材料薄膜的沉积、器件的构筑 ,分子电子学和分子器件的概念作了一个较为全面的介绍

In order to implement subtraction circuit in molecular scale, based on the principle of solid-state electronic circuit design, a binary subtractor based on polyphenylene was proposed. The NOT, OR and XOR gate of combinational logic were replaced by the polyphenylene based molecular device whileTour-type molecular wire constitute the framework in the molecular circuit accounting for the geometry and steric constraints imposed by the bonding and shapes of the organic molecules. The resulting structure of this...

In order to implement subtraction circuit in molecular scale, based on the principle of solid-state electronic circuit design, a binary subtractor based on polyphenylene was proposed. The NOT, OR and XOR gate of combinational logic were replaced by the polyphenylene based molecular device whileTour-type molecular wire constitute the framework in the molecular circuit accounting for the geometry and steric constraints imposed by the bonding and shapes of the organic molecules. The resulting structure of this circuit, optimized using ab initio Hartree-Fock (HF) method, should have dimensions of about one millionth of the solid state one. This work is a significant milestone in molecular electronics.

为了在分子电路水平实现减法运算,按照固态电子学组合逻辑原理,提出了一种基于聚亚苯基分子器件的二进制减法器(包括半减器和全减器)逻辑电路的设计。这种单分子电路是用聚亚苯基分子逻辑门的分子结构代替组合逻辑中非门、与门和XOR门,再用Tour分子线作为框架,同时考虑有机分子的形状和连接产生的几何和空间排列的约束条件,用Hartree-Fock(HF)从头算方法优化得到,其结构尺寸是传统固态电子电路的百万分之一。这种分子减法器电路的实现对分子电子学发展有重要的意义。

 
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