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Light-Controlled Conductance Switching of Ordered Metal-Molecule-Metal Devices

机译:有序金属-分子-金属器件的光控电导开关

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摘要

We demonstrate reversible, light-controlled conductance switching of molecular devices based on photochromic diarylethene molecules. These devices consist of ordered, two-dimensional lattices of gold nanoparticles, in which neighboring particles are bridged by switchable molecules. We independently confirm that reversible isomerization of the diarylethenes employed is at the heart of the room-temperature conductance switching. For this, we take full advantage of the possibility to use optical spectroscopy to follow molecular switching in these samples.
机译:我们展示了基于光致变色二芳基乙烯分子的分子器件的可逆,光控电导切换。这些设备由金纳米颗粒的有序二维晶格组成,其中相邻颗粒由可切换分子桥接。我们独立地确认,所采用的二芳烃的可逆异构化是室温电导转换的核心。为此,我们充分利用了使用光谱学跟踪这些样品中分子切换的可能性。

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