You Shaojie, Ding Zhengxin, Yuan Rusheng, Long Jinlin, Xu Chao
Research Institute of Photocatalysis, State Key Laboratory of Photocatalysis on Energy and Environment, College of Chemistry, Fuzhou University, Fuzhou 350108, P. R. China.
Research Institute of Photocatalysis, State Key Laboratory of Photocatalysis on Energy and Environment, College of Chemistry, Fuzhou University, Fuzhou 350108, P. R. China.
J Colloid Interface Sci. 2024 Jun 15;664:63-73. doi: 10.1016/j.jcis.2024.03.031. Epub 2024 Mar 6.
Photocatalytic oxidative coupling of amines is considered a mild, efficient, and sustainable strategy for the synthesis of imines. As a versatile organic semiconductor, conjugated microporous polymers (CMPs) are attractive in photocatalysis areas due to the diversity of their polymeric monomers. Herein, we report that in addition to the design of monomers, size-confined polymerization is also a feasible strategy to modulate the structure and photocatalysis properties of CMPs. We adopted dibromopyrazine as polymeric units to prepare pyrazine-involved hollow spherical CMPs (H-PyB) using a template method and successfully performed size-confined polymerization of hollow samples by resizing the templates. Interestingly, the small confinement space induced the formation of CMPs with better conjugate extensibility, resulting in enhanced conductivity, narrowed bandgaps, improved photoelectric performance, etc. As a result, small-sized H-PyB CMPs had superior activity for the photocatalytic oxidation of amines. Particularly, the smallest H-PyB CMPs that we designed in the present work exhibited excellent performance for the photocatalytic coupling oxidation of amines. When using benzylamine as a model substrate, the yield of the corresponding imine reached ∼ 113 mmol·g·h, accompanied by almost 100 % selectivity. Furthermore, the as-designed confined samples exhibited stable photocatalytic activity as well as good applicability for oxidative coupling of different amines. This work not merely reports a kind of CMP photocatalysts with excellent performance for the imine coupling oxidation but also proposes an alternative strategy for constructing high-performance organic photocatalysts by size-confined synthesis.
胺的光催化氧化偶联被认为是一种温和、高效且可持续的亚胺合成策略。作为一种多功能有机半导体,共轭微孔聚合物(CMPs)因其聚合物单体的多样性而在光催化领域具有吸引力。在此,我们报道除了单体设计外,尺寸受限聚合也是调节CMPs结构和光催化性能的可行策略。我们采用二溴吡嗪作为聚合物单元,通过模板法制备了含吡嗪的空心球形CMPs(H-PyB),并通过调整模板大小成功地对空心样品进行了尺寸受限聚合。有趣的是,小的受限空间诱导形成了具有更好共轭扩展性的CMPs,导致电导率增强、带隙变窄、光电性能改善等。结果,小尺寸的H-PyB CMPs对胺的光催化氧化具有优异的活性。特别是,我们在本工作中设计的最小尺寸的H-PyB CMPs在胺的光催化偶联氧化中表现出优异的性能。以苄胺为模型底物时,相应亚胺的产率达到约113 mmol·g·h,选择性几乎为100%。此外,所设计的受限样品表现出稳定的光催化活性以及对不同胺氧化偶联的良好适用性。这项工作不仅报道了一种对亚胺偶联氧化具有优异性能的CMP光催化剂,还提出了一种通过尺寸受限合成构建高性能有机光催化剂的替代策略。