Pearcy Aston C, Lisboa Lynn S, Preston Dan, Page Nick B, Lawrence Tristan, Wright L James, Hartinger Christian G, Crowley James D
Department of Chemistry, University of Otago PO Box 56 Dunedin 9054 New Zealand
Research School of Chemistry, Australian National University Canberra ACT 0200 Australia.
Chem Sci. 2023 Jul 14;14(32):8615-8623. doi: 10.1039/d3sc01354e. eCollection 2023 Aug 16.
A new sequential metalation strategy that enables the assembly of a new more robust reduced symmetry heterobimetallic [PdPtL] cage C is reported. By exploiting a low-symmetry ditopic ligand (L) that features imidazole and pyridine donor units we were able to selectively form a [Pt(L)] "open-cage" complex. When this was treated with Pd(ii) ions the cage C assembled. H and DOSY nuclear magnetic resonance (NMR) spectroscopy and electrospray ionisation mass spectrometry (ESIMS) data were consistent with the quantitative formation of the cage and the heterobimetallic structure was confirmed by single crystal X-ray crystallography. The cage C was shown to bind anionic guest molecules. NMR studies suggested that these guests interacted with the cavity of the cage in a specific orientation and this was confirmed for the mesylate ion (MsO) : C host-guest adduct using X-ray crystallography. In addition, the system was shown to be stimulus-responsive and could be opened and closed on demand when treated with appropriate stimuli. If a guest molecule was bound within the cage, the opening and closing was accompanied by the release and re-uptake of the guest molecule.
报道了一种新的连续金属化策略,该策略能够组装出一种新的、更稳定的降低对称性的异双金属[PdPtL]笼状化合物C。通过利用一种具有咪唑和吡啶供体单元的低对称性双齿配体(L),我们能够选择性地形成[Pt(L)]“开笼”配合物。当用钯(II)离子处理该配合物时,笼状化合物C组装而成。氢谱和扩散排序核磁共振(NMR)光谱以及电喷雾电离质谱(ESIMS)数据与笼状化合物的定量形成一致,并且通过单晶X射线晶体学证实了异双金属结构。笼状化合物C被证明能够结合阴离子客体分子。核磁共振研究表明,这些客体以特定方向与笼的空腔相互作用,并且对于甲磺酸根离子(MsO):C主客体加合物,通过X射线晶体学证实了这一点。此外,该体系被证明具有刺激响应性,当用适当的刺激物处理时,可以按需打开和关闭。如果客体分子结合在笼内,打开和关闭伴随着客体分子的释放和重新摄取。