超分子
双稳态
化学
非共价相互作用
超分子化学
纳米技术
稳健性(进化)
电子线路
氢键
化学物理
光电子学
分子
物理
材料科学
生物化学
有机化学
量子力学
基因
作者
Ping Zhou,Yanjun Fu,Maolin Wang,Renhui Qiu,Yuwei Wang,Yuwei Wang,J. Fraser Stoddart,Yuping Wang,Yuping Wang,Hongliang Chen
摘要
Supramolecular electronics provide an opportunity to introduce molecular assemblies into electronic devices through a combination of noncovalent interactions such as [π···π] and hydrogen-bonding interactions. The fidelity and dynamics of noncovalent interactions hold considerable promise when it comes to building devices with controllable and reproducible switching functions. Here, we demonstrate a strategy for building electronically robust switches by harnessing two different noncovalent interactions between a couple of pyridine derivatives. The single-supermolecule switch is turned ON when compressing the junction enabling [π···π] interactions to dominate the transport, while the switch is turned OFF by stretching the junction to form hydrogen-bonded dimers, leading to a dramatic decrease in conductance. The robustness and reproducibility of these single-supermolecule switches were achieved by modulating the junction with Ångström precision at frequencies of up to 190 Hz while obtaining high ON/OFF ratios of ∼600. The research presented herein opens up an avenue for designing robust bistable mechanoresponsive devices which will find applications in the building of integrated circuits for microelectromechanical systems.
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