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Control of electrochemical signals from quantum dots conjugated to organic materials by using DNA structure in an analog logic gate

机译:通过在模拟逻辑门中使用DNA结构控制来自与有机材料结合的量子点的电化学信号

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摘要

Various bio-logic gates have been studied intensively to overcome the rigidity of single-function silicon-based logic devices arising from combinations of various gates. Here, a simple control tool using electrochemical signals from quantum dots (QDs) was constructed using DNA and organic materials for multiple logic functions. The electrochemical redox current generated from QDs was controlled by the DNA structure. DNA structure, in turn, was dependent on the components (organic materials) and the input signal (pH). Independent electrochemical signals from two different logic units containing QDs were merged into a single analog-type logic gate, which was controlled by two inputs. We applied this electrochemical biodevice to a simple logic system and achieved various logic functions from the controlled pH input sets. This could be further improved by choosing QDs, ionic conditions, or DNA sequences. This research provides a feasible method for fabricating an artificial intelligence system. (C) 2016 Elsevier B.V. All rights reserved.
机译:已经对各种生物逻辑门进行了深入研究,以克服由于各种门的组合而产生的单功能基于硅的逻辑器件的刚性。在这里,使用来自量子点(QDs)的电化学信号的简单控制工具是使用DNA和有机材料构建的,用于多种逻辑功能。由QD产生的电化学氧化还原电流受DNA结构控制。反过来,DNA结构则取决于组分(有机物)和输入信号(pH)。来自包含QD的两个不同逻辑单元的独立电化学信号合并到单个模拟型逻辑门中,该门由两个输入控制。我们将这种电化学生物设备应用于简单的逻辑系统,并从受控的pH输入集中实现了各种逻辑功能。通过选择QD,离子条件或DNA序列可以进一步改善这一点。这项研究为制造人工智能系统提供了一种可行的方法。 (C)2016 Elsevier B.V.保留所有权利。

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