Giant Cycloparaphenylene‐Scaffolded Porphyrins as Photocatalysts
Abstract
Abstract The efficient synthesis of cycloparaphenylenes (CPPs) with the designated functional groups still remains challenging. Meanwhile, the applications of functional CPPs have received increasing attention. In this paper, we first present a staged macrocyclization and TMS‐I exchange strategy for the precise synthesis of [12]CPP‐8I, while a direct three‐fold macrocyclization of a diiodo‐terphenyl precursor yields [9]CPP‐6I in 39% yield. These results not only provide reliable routes to iodinated CPPs, but also reveal the influence of ring size on their chemical reactivity. Second, we further synthesized the giant porphyrin‐CPP conjugates [12]CPP‐8 t Bu 3 TPP and [9]CPP‐6 t Bu 3 TPP from the respective iodinated precursors via Suzuki coupling with the porphyrin boronic ester. The unique 3D structure of the CPP scaffold can weaken intermolecular π–π stacking and favor the intermolecular loose packing of porphyrin units, ushering in generating 1 O 2 and O 2 ·− with high efficiency under light irradiation in DMF. Third, the giant porphyrin‐CPP conjugates, in particular [9]CPP‐6 t Bu 3 TPP, were demonstrated to be efficient photocatalysts for the photochemical reaction between tertiary aniline and maleimide with high yield and wide substrate scope, significantly outperforming porphyrins and other benchmark catalysts reported previously. Furthermore, the utility of [9]CPP‐6 t Bu 3 TPP as the photocatalyst for developing photoinduced polymerization was explored.
Article Details
Authors (18)
Yu Ren
Department of Medicine, The University of Oklahoma Health Sciences Center
Yang‐Yang Zhang
Fundamental Science Center of Rare Earths, Ganjiang Innovation Academy Chinese Academy of Sciences Ganzhou China
Hong‐Guang Jin
School of Materials Science and Engineering Changsha University of Science & Technology Changsha 410114 China
Chengxu Gong
Beijing National Laboratory For Molecular Sciences CAS Key Laboratory of Organic Solids Institute of Chemistry Chinese Academy of Sciences Beijing China
Yangqi Wei
Beijing National Laboratory for Molecular Sciences CAS Key Laboratory of Organic Solids Institute of Chemistry Chinese Academy of Sciences Beijing 100190 China
Xiangyun Zhao
Beijing National Laboratory For Molecular Sciences CAS Key Laboratory of Organic Solids Institute of Chemistry Chinese Academy of Sciences Beijing China
Wansong Shang
Haoran Sun
State Key Laboratory of Rare Earth Resource Utilization
Qi Liang
Beijing National Laboratory for Molecular Sciences, CAS Center of Excellence in Molecular Science
Junlong Ma
Beijing National Laboratory for Molecular Sciences, CAS Center of Excellence in Molecular Science
YiChen Hu
Xi‐Sha Zhang
Beijing National Laboratory for Molecular Sciences, CAS Key Laboratory of Organic Solids, CAS Center of Excellence in Molecular Science, Institute of Chemistry Chinese Academy of Sciences Beijing China
Jun Li
Fengqing Jiao
Beijing Key Laboratory for Optical Materials and Photonic Devices Department of Chemistry Capital Normal University Beijing 100048 P. R. China
Yishi Wu
Beijing Key Laboratory for Optical Materials and Photonic Devices Department of Chemistry Capital Normal University Beijing China
Hongbing Fu
Beijing Key Laboratory for Optical Materials and Photonic Devices, Department of Chemistry
Yanbang Li
Beijing National Laboratory for Molecular Sciences, CAS Center of Excellence in Molecular Science
Deqing Zhang
Beijing National Laboratory for Molecular Sciences, CAS Center of Excellence in Molecular Science