Jin Bo, Wang Zai-Ran, Yan Miao, Feng Lin-Yan, Miao Chang-Qing, Wang Ying-Jin
Department of Chemistry, Xinzhou Normal University, 034000, Xinzhou, Shanxi, People's Republic of China.
Chemistry. 2024 Sep 11;30(51):e202402132. doi: 10.1002/chem.202402132. Epub 2024 Aug 22.
The design of boron-based molecular rotors stems from boron-carbon binary clusters containing multiple planar hypercoordinate carbons (phCs, such as CB). However, the design of boron-coordinated phCs is challenging due to boron's tendency to occupy hypercoordinate centers more than carbon. Although this challenge has been addressed, the designed clusters of interest have not exhibited dynamic fluxionality similar to that of the initial CB. To address this issue, we report a σ/π doubly aromatic CBH cluster, the first global minimum containing a boron-coordinated planar tetracoordinate carbon atom with dynamic fluxionality. Dynamics simulations show that two ligand H atoms exhibit alternate rotation, resulting in an intriguing dynamic fluxionality in this cluster. Electronic structure analysis reveals the flexible bonding positions of the ligand H atoms because they do not participate in π delocalized bonding nor bond to any other non-carbon atom, highlighting this rotational fluxionality. Unprecedentedly, the fluxional process involves not only the usual conversion of the number of bonding atoms, but also the type of bonding (3c π bonds ↔4c σ bonds), which is an uncommon fluxional mechanism. The cluster represents an effort to apply phC species to molecular machines.
硼基分子转子的设计源于包含多个平面超配位碳(phC,如CB)的硼 - 碳二元簇。然而,由于硼比碳更倾向于占据超配位中心,硼配位的phC的设计具有挑战性。尽管这一挑战已得到解决,但所设计的目标簇尚未表现出与初始CB类似的动态流动性。为了解决这个问题,我们报道了一种σ/π双芳香性CBH簇,这是第一个包含具有动态流动性的硼配位平面四配位碳原子的全局最小值。动力学模拟表明,两个配体H原子表现出交替旋转,从而在该簇中产生了有趣的动态流动性。电子结构分析揭示了配体H原子灵活的键合位置,因为它们既不参与π离域键合,也不与任何其他非碳原子键合,突出了这种旋转流动性。前所未有的是,这种流动过程不仅涉及键合原子数量的通常转换,还涉及键合类型(3c π键↔4c σ键),这是一种不常见的流动机制。该簇代表了将phC物种应用于分子机器的一种尝试。