Rehhagen Chris, Argüello Cordero Miguel A, Kamounah Fadhil S, Deneva Vera, Angelov Ivan, Krupp Marvin, Svenningsen So Ren W, Pittelkow Michael, Lochbrunner Stefan, Antonov Liudmil
Institute for Physics and Department of Life, Light and Matter, University of Rostock, 18051 Rostock, Germany.
Department of Chemistry, University of Copenhagen, DK-2100 Copenhagen Ø, Denmark.
J Am Chem Soc. 2024 Jan 24;146(3):2043-2053. doi: 10.1021/jacs.3c10789. Epub 2024 Jan 12.
Herein, we demonstrate a working prototype of a conjugated proton crane, a reversible tautomeric switching molecule in which truly intramolecular long-range proton transfer occurs in solution at room temperature. The system consists of a benzothiazole rotor attached to a 7-hydroxy quinoline stator. According to the experimental and theoretical results, the OH proton is delivered under irradiation to the quinolyl nitrogen atom through a series of consecutive proton transfer and twisting steps. The use of a rigid rotor prevents undesired side processes that decrease the switching performance in previously described proton cranes and provides an unprecedented switching efficiency and fatigue resistance. The newly designed system confirms the theoretical concept for the application of proton transfer-initiated intramolecular twisting as the switching mechanism, developed more than 10 years ago, and provides unique insights for the further development of tautomeric molecular switches and motors, molecular logic gates, and new molecular-level energy storage systems.
在此,我们展示了一种共轭质子起重机的工作原型,它是一种可逆互变异构开关分子,在室温下的溶液中会发生真正的分子内远程质子转移。该系统由连接到7-羟基喹啉定子上的苯并噻唑转子组成。根据实验和理论结果,在光照下,OH质子通过一系列连续的质子转移和扭转步骤传递到喹啉氮原子上。使用刚性转子可防止出现降低先前所述质子起重机开关性能的不良副反应,并提供了前所未有的开关效率和抗疲劳性。新设计的系统证实了十多年前提出的将质子转移引发的分子内扭转用作开关机制的理论概念,并为互变异构分子开关和马达、分子逻辑门以及新型分子级储能系统的进一步发展提供了独特的见解。