Rashid Umar, Chatir Elarbi, Medrano Sandonas Leonardo, Sreelakshmi P A, Dianat Arezoo, Gutierrez Rafael, Cuniberti Gianaurelio, Cobo Saioa, Kaliginedi Veerabhadrarao
Department of Inorganic and Physical Chemistry (IPC), Indian Institute of Science (IISc), Bangalore, 560012, India.
Université Grenoble Alpes, CNRS, DCM UMR 5250, 38000, Grenoble, France.
Angew Chem Int Ed Engl. 2023 Apr 11;62(16):e202218767. doi: 10.1002/anie.202218767. Epub 2023 Mar 6.
By employing a mechanically controllable break junction technique, we have realized an ideal single molecular linear actuator based on dithienylethene (DTE) based molecular architecture, which undergoes reversible photothermal isomerization when subjected to UV irradiation under ambient conditions. As a result, open form (compressed, UV OFF) and closed form (elongated, UV ON) of dithienylethene-based molecular junctions are achieved. Interestingly, the mechanical actuation is achieved without changing the conductance of the molecular junction around the Fermi level over several cycles, which is an essential property required for an ideal single molecular actuator. Our study demonstrates a unique example of achieving a perfect balance between tunneling width and barrier height change upon photothermal isomerization, resulting in no change in conductance but a change in the molecular length, which results in mechanical actuation at the single molecular level.
通过采用机械可控断裂结技术,我们基于二噻吩乙烯(DTE)分子结构实现了一种理想的单分子线性致动器,该致动器在环境条件下受到紫外线照射时会发生可逆的光热异构化。结果,实现了基于二噻吩乙烯的分子结的开放形式(压缩,紫外线关闭)和闭合形式(伸长,紫外线开启)。有趣的是,在几个循环中,机械致动是在不改变费米能级附近分子结电导率的情况下实现的,这是理想单分子致动器所需的基本特性。我们的研究展示了一个独特的例子,即在光热异构化时,隧道宽度和势垒高度变化之间实现了完美平衡,导致电导率不变但分子长度发生变化,从而在单分子水平上实现了机械致动。