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机械可控分子结在分子电子学中的进展。

Advance of Mechanically Controllable Break Junction for Molecular Electronics.

机构信息

Key Laboratory of Optical Information Science and Technology, Institute of Modern Optics, College of Electronic Information and Optical Engineering, Nankai University, Tianjin, 300071, China.

出版信息

Top Curr Chem (Cham). 2017 Jun;375(3):61. doi: 10.1007/s41061-017-0149-0. Epub 2017 May 24.

Abstract

Molecular electronics stands for the ultimate size of functional elements, keeping up with an unstoppable trend over the past few decades. As a vital component of molecular electronics, single molecular junctions have attracted significant attention from research groups all over the world. Due to its pronounced superiority, the mechanically controllable break junctions (MCBJ) technique has been widely applied to characterize the dynamic performance of single molecular junctions. This review presents a system analysis for single-molecule junctions and offers an overview of four test-beds for single-molecule junctions, thus offering more insight into the mechanisms of electron transport. We mainly focus on the development of state-of-the-art mechanically controlled break junctions. The three-terminal gated MCBJ approaches are introduced to manipulate the electron transport of molecules, and MCBJs are combined with characterization techniques. Additionally, applications of MCBJs and remarkable properties of single molecules are addressed. Finally, the challenges and perspective for the mechanically controllable break junctions technique are provided.

摘要

分子电子学代表了功能元件的极限尺寸,与过去几十年不可阻挡的趋势保持一致。作为分子电子学的重要组成部分,单分子结引起了世界各地研究小组的极大关注。由于其显著的优越性,机械可控的断结(MCBJ)技术已被广泛应用于表征单分子结的动态性能。本综述对单分子结进行了系统分析,并概述了单分子结的四个测试平台,从而更深入地了解了电子输运的机制。我们主要关注最先进的机械控制断结的发展。引入了三端门控 MCBJ 方法来操纵分子的电子输运,并将 MCBJ 与表征技术相结合。此外,还介绍了 MCBJ 的应用和单分子的显著特性。最后,提供了机械可控断结技术的挑战和展望。

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