Chen Min, Unikela Kiran S, Ramalakshmi Rongala, Li Bo, Darrigan Clovis, Chrostowska Anna, Liu Shih-Yuan
Department of Chemistry, Boston College, Chestnut Hill, MA, 02467, USA.
Université de Pau et des Pays de l'Adour, E2S UPPA, CNRS, IPREM, UMR 5254, 64000, Pau, France.
Angew Chem Int Ed Engl. 2021 Jan 18;60(3):1556-1560. doi: 10.1002/anie.202010556. Epub 2020 Nov 16.
The first example of a BN-doped cycloparaphenylene BN-[10]CPP was synthesized and characterized. Its reactivity and photophysical properties were evaluated in direct comparison to its carbonaceous analogues Mes-[10]CPP and [10]CPP. While the photophysical properties of BN-[10]CPP remains similar to its carbonaceous analogues, the electronic structure changes associated with the introduction of a 1,2-azaborine BN heterocycle into a CPP scaffold enables facile and selective late-stage functionalizations that cannot be accomplished with carbonaceous CPPs. Specifically, Ir-catalyzed hydrogenation of BN-[10]CPP selectively reduces the BN heterocyclic ring, which upon hydrolysis produces a rare example of a macrocyclic paraphenylene 6 incorporating the versatile ketone functionality within the macrocyclic ring.
合成并表征了硼氮掺杂的环对亚苯基BN-[10]CPP的首个实例。将其反应活性和光物理性质与其碳质类似物Mes-[10]CPP和[10]CPP进行了直接比较评估。虽然BN-[10]CPP的光物理性质与其碳质类似物相似,但将1,2-氮硼杂环引入CPP支架所带来的电子结构变化使得能够实现碳质CPP无法完成的简便且选择性的后期官能化。具体而言,BN-[10]CPP的铱催化氢化选择性地还原了硼氮杂环,水解后产生了一个罕见的实例,即大环对亚苯基6在大环内包含了通用的酮官能团。