Hein Robert, Stindt Charlotte N, Feringa Ben L
Stratingh Institute for Chemistry, University of Groningen, Nijenborgh 4, 9747AG Groningen, The Netherlands.
J Am Chem Soc. 2024 Sep 25;146(38):26275-26285. doi: 10.1021/jacs.4c08284. Epub 2024 Sep 13.
Overcrowded alkenes have received considerable attention as versatile structural motifs in a range of optical switches and light-driven unidirectional motors. In contrast, their actuation by electrochemical stimuli remains underexplored, even though this alternative energy input may be preferred in various applications and enables additional control over molecular switching states and properties. While symmetric bistricyclic overcrowded enes (BAEs) containing two identical halves based on either thioxanthene (TX) or acridine (Acr) motifs are known to be reversible conformational redox switches, their redox potentials are generally too high or low, respectively, thereby preventing wider applications. Herein, we demonstrate that the "mixed" TX-Acr switch possesses redox properties that lie between those of its parent symmetric analogs, enabling interconversion between three stable redox and conformational states at mild potentials. This includes the neutral folded, the dicationic orthogonal, and a unique twisted monoradical cation state, the latter of which is only accessible in the case of the mixed TX-Acr switch and in a pathway-dependent manner. Consequently, with this multistate redox switch, a myriad of molecular properties, including geometry, polarity, absorbance, and fluorescence, can be modulated with high fidelity and reversibility between three distinct stable states. More generally, this study highlights the versatility of the "mix and match" approach in rationally designing redox switches with specific (redox) properties, which in turn is expected to enable a myriad of applications ranging from molecular logic and memory to actuators and energy storage systems.
过度拥挤的烯烃作为一系列光开关和光驱动单向电机中的通用结构基序受到了广泛关注。相比之下,尽管在各种应用中电化学刺激这种替代能量输入可能更受青睐,并且能够对分子开关状态和性质进行额外控制,但通过电化学刺激对其进行驱动仍未得到充分探索。虽然已知基于噻吨(TX)或吖啶(Acr)基序的包含两个相同半部分的对称双环过度拥挤烯(BAE)是可逆的构象氧化还原开关,但它们的氧化还原电位通常分别过高或过低,从而阻碍了更广泛的应用。在此,我们证明“混合”的TX - Acr开关具有介于其母体对称类似物之间的氧化还原性质,能够在温和电位下在三种稳定的氧化还原和构象状态之间相互转换。这包括中性折叠态、双阳离子正交态和一种独特的扭曲单自由基阳离子态,后者仅在混合的TX - Acr开关情况下且以途径依赖的方式可获得。因此,借助这种多态氧化还原开关,可以在三种不同的稳定状态之间以高保真度和可逆性调节包括几何形状、极性、吸光度和荧光在内的众多分子性质。更一般地说,这项研究突出了“混合搭配”方法在合理设计具有特定(氧化还原)性质的氧化还原开关方面的通用性,这反过来有望实现从分子逻辑和存储到致动器和能量存储系统等众多应用。