Feng Xiao, Ren Yanwei, Wang Haosen, Wu Wanqing, Jiang Huanfeng
Key Laboratory of Functional Molecular Engineering of Guangdong Province, School of Chemistry and Chemical Engineering, South China University of Technology, Guangzhou 510641, China.
Inorg Chem. 2024 May 27;63(21):9854-9863. doi: 10.1021/acs.inorgchem.4c00545. Epub 2024 May 16.
Heterogeneous palladium catalysts with high efficiency, high Pd atom utilization, simplified separation, and recycle have attracted considerable attention in the field of synthetic chemistry. Herein, we reported a zirconium-based two-dimensional metal-organic framework (2D-MOF)-based Pd(II) photocatalyst (Zr-Ir-Pd) by merging the Ir photosensitizers and Pd(II) species into the skeletons of the 2D-MOF for the Pd(II)-catalyzed oxidation reaction. Morphological and structural characterization identified that Zr-Ir-Pd with a specific nanoflower-like structure consists of ultrathin 2D-MOF nanosheets (3.85 nm). Due to its excellent visible-light response and absorption capability, faster transfer and separation of photogenerated carriers, more accessible Pd active sites, and low mass transfer resistance, Zr-Ir-Pd exhibited boosted photocatalytic activity in catalyzing sterically hindered isocyanide insertion of diarylalkynes for the construction of fused tetracyclic heterocycles, with up to 12 times the Pd catalyst turnover number than the existing catalytic systems. In addition, Zr-Ir-Pd inhibited the competitive agglomeration of Pd(0) species and could be reused at least five times, owing to the stabilization of 2D-MOF on the single-site Pd and Ir sites. Finally, a possible mechanism of the photocatalytic synthesis of fused tetracyclic heterocycles catalyzed by Zr-Ir-Pd was proposed.
具有高效率、高钯原子利用率、简化分离和可循环利用的多相钯催化剂在合成化学领域引起了广泛关注。在此,我们通过将铱光敏剂和钯(II)物种合并到二维金属有机框架(2D-MOF)的骨架中,报道了一种基于锆的二维金属有机框架(2D-MOF)的钯(II)光催化剂(Zr-Ir-Pd),用于钯(II)催化的氧化反应。形态和结构表征表明,具有特定纳米花状结构的Zr-Ir-Pd由超薄的二维金属有机框架纳米片(3.85纳米)组成。由于其优异的可见光响应和吸收能力、光生载流子的更快转移和分离、更多可及的钯活性位点以及低传质阻力,Zr-Ir-Pd在催化二芳基炔烃的空间位阻异腈插入以构建稠合四环杂环时表现出增强的光催化活性,其钯催化剂周转数比现有催化体系高多达12倍。此外,由于二维金属有机框架在单位点钯和铱位点上的稳定作用,Zr-Ir-Pd抑制了钯(0)物种的竞争性团聚,并且可以重复使用至少五次。最后,提出了Zr-Ir-Pd催化稠合四环杂环光催化合成的可能机理。