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基于氧化还原聚合物纳米片组装的准固态光学逻辑器件。

Quasi-solid-state optical logic devices based on redox polymer nanosheet assembly.

作者信息

Matsui Jun, Abe Kenichi, Mitsuishi Masaya, Aoki Atsushi, Miyashita Tokuji

机构信息

Institute of Multidisciplinary Research for Advanced Materials, Tohoku University, Katahira 2-1-1, Aoba-ku, Sendai, 980-8577, Japan.

出版信息

Langmuir. 2009 Sep 15;25(18):11061-6. doi: 10.1021/la901375b.

Abstract

We report fabrication of a quasi-solid-state optical logic gate based on a polymer nanosheet photodiode. Two amphiphilic copolymers, p(DDA/Ru) and p(DDA/Fc), which respectively have a ruthenium dipyridyl complex and a ferrocene derivative as a redox molecule, are synthesized to produce redox polymer nanosheets. To construct polymer nanosheet photodiodes, two redox polymer nanosheets were assembled onto an indium-tinoxide (ITO) electrode in a tailor-made manner. The ITO electrode was connected with a counter electrode using an agarose gel electrolyte. The simple two-electrode system performs as a quasi-solid-state polymer nanosheet photodiode (QS-PNP). The photocurrent flow direction of QS-PNP can be controlled to be anodic or be cathodic by changing the deposition order of the redox polymer nanosheets. The anodic and cathodic QS-PNPs were applied to construct optical OR and XOR logic gates. The OR logic gate was fabricated by connecting the anodic and cathodic QS-PNP in a series; XOR logic was fabricated by connecting two anodic QS-PNPs in series. In optical logic gates, excitations of p(DDA/Ru) were used as input signals, and photocurrent was used as an output signal. These optical logic gates operate in a quasi-solid-state in a simple two-electrode configuration, which facilitates integration of the logic elements.

摘要

我们报道了基于聚合物纳米片光电二极管的准固态光学逻辑门的制备。合成了两种两亲性共聚物,即分别含有钌联吡啶配合物和二茂铁衍生物作为氧化还原分子的p(DDA/Ru)和p(DDA/Fc),以制备氧化还原聚合物纳米片。为构建聚合物纳米片光电二极管,将两种氧化还原聚合物纳米片以定制方式组装到氧化铟锡(ITO)电极上。ITO电极通过琼脂糖凝胶电解质与对电极相连。这种简单的双电极系统作为准固态聚合物纳米片光电二极管(QS-PNP)发挥作用。通过改变氧化还原聚合物纳米片的沉积顺序,QS-PNP的光电流流动方向可以被控制为阳极或阴极。阳极和阴极QS-PNP被用于构建光学或门和异或门逻辑。或门逻辑通过将阳极和阴极QS-PNP串联连接来制备;异或逻辑通过将两个阳极QS-PNP串联连接来制备。在光学逻辑门中,p(DDA/Ru)的激发用作输入信号,光电流用作输出信号。这些光学逻辑门在简单的双电极配置中以准固态运行,这有利于逻辑元件的集成。

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