链烷
化学
结晶学
超分子化学
卤化物
单体
离子
配体(生物化学)
金属
笼子
水溶液中的金属离子
产量(工程)
共价键
钯
立体化学
晶体结构
分子
无机化学
材料科学
催化作用
有机化学
聚合物
受体
冶金
组合数学
生物化学
数学
作者
Sudhakar Ganta,Alexander S. Mikherdov,Ananya Baksi,Christoph Drechsler,Guido H. Clever
标识
DOI:10.1002/anie.202516952
摘要
Abstract The combination of different metal ions in supramolecular structures can lead to the emergence of new features, such as enhanced stability, reduced symmetry, and peculiar reactivity. Mechanically interlocked architectures containing dissimilar metal ions are still scarce. Herein, we report the first example of a heterometallic, quadruply interlocked Pt 2 Pd 2 L 8 cage catenane, assembled via a combination of metal‐mediated self‐assembly and dynamic covalent chemistry. While direct complexation of the used asymmetric ligand with a mixture of Pt(II) and Pd(II) ions could yield 14 different monomeric and 576 interlocked cage products, the chosen approach allowed us to selectively obtain one PtPd L 4 monomeric cage and a single Pt 2 Pd 2 L 8 double cage isomer as major products, respectively, depending on the reaction conditions. In the obtained interlocked Pt 2 Pd 2 L 8 structure, the kinetically inert Pt(II) ions are positioned peripherally, while the more labile Pd(II) ions are buried and interlocked within the cage interior, as confirmed by NMR spectroscopy, trapped ion mobility spectrometry (TIMS), and single‐crystal X‐ray diffraction. The resulting catenane structure exhibits an enhanced kinetic stability, resisting disassembly in the presence of excess competitive ligands such as halide anions, unlike previously reported Pd(II) cage catenanes. Furthermore, the Pt 2 Pd 2 L 8 cage binds halide anions with high affinity, enabling efficient sequestration of halides from organic substrates.
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