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Single Molecule Electronics and Devices

机译:单分子电子器件

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摘要

The manufacture of integrated circuits with single-molecule building blocks is a goal of molecular electronics. While research in the past has been limited to bulk experiments on self-assembled monolayers, advances in technology have now enabled us to fabricate single-molecule junctions. This has led to significant progress in understanding electron transport in molecular systems at the single-molecule level and the concomitant emergence of new device concepts. Here, we review recent developments in this field. We summarize the methods currently used to form metal-molecule-metal structures and some single-molecule techniques essential for characterizing molecular junctions such as inelastic electron tunnelling spectroscopy. We then highlight several important achievements, including demonstration of single-molecule diodes, transistors, and switches that make use of electrical, photo, and mechanical stimulation to control the electron transport. We also discuss intriguing issues to be addressed further in the future such as heat and thermoelectric transport in an individual molecule.
机译:具有单分子构件的集成电路的制造是分子电子学的目标。尽管过去的研究仅限于对自组装单分子膜的大量实验,但技术的进步使我们能够制造单分子结。这已导致在单分子水平上理解分子系统中电子传输的重大进展以及随之而来的新设备概念的出现。在这里,我们回顾了该领域的最新发展。我们总结了目前用于形成金属分子金属结构的方法和一些表征分子连接的非分子电子隧道光谱学必不可少的单分子技术。然后,我们重点介绍了几个重要的成就,包括单分子二极管,晶体管和利用电,光和机械刺激来控制电子传输的开关的演示。我们还讨论了将来需要进一步解决的有趣问题,例如单个分子中的热和热电传输。

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