Catalan Institute of Nanoscience and Nanotechnology (ICN2) , CSIC and The Barcelona Institute of Science and Technology , Campus UAB, Bellaterra, 08193 Barcelona , Spain.
ALBA Synchrotron , Cerdanyola del Vallès, 08290 Barcelona , Spain.
J Am Chem Soc. 2019 Mar 6;141(9):4094-4102. doi: 10.1021/jacs.8b13593. Epub 2019 Feb 20.
Metal-organic polyhedra (MOP) are ultrasmall (typically 1-4 nm) porous coordination cages made from the self-assembly of metal ions and organic linkers and are amenable to the chemical functionalization of its periphery; however, it has been challenging to implement postsynthetic functionalization due to their chemical instability. Herein, we report the use of coordination chemistries and covalent chemistries to postsynthetically functionalize the external surface of ≈2.5 nm stable Rh(II)-based cuboctahedra through their Rh-Rh paddlewheel units or organic linkers, respectively. We demonstrate that 12 N-donor ligands, including amino acids, can be coordinated on the periphery of Rh-MOPs. We used this reactivity to introduce new functionalities (e.g., chirality) to the MOPs and to tune their hydrophilic/hydrophobic characteristics, which allowed us to modulate their solubility in diverse solvents such as dichloromethane and water. We also demonstrate that all 24 organic linkers can be postsynthetically functionalized with esters via covalent chemistry. In addition, we anticipate that these two types of postsynthetic reactions can be combined to yield doubly functionalized Rh-MOPs, in which a total of 36 new functional molecules can be incorporated on their surfaces. Likewise, these chemistries could be synergistically combined to enable covalent functionalization of MOPs through new linkages such as ethers. We believe that both reported postsynthetic pathways can potentially be used to engineer Rh-MOPs as scaffolds for applications in delivery, sorption, and catalysis.
金属有机多面体(MOP)是由金属离子和有机配体自组装而成的超小(通常为 1-4nm)多孔配位笼,可对其外围进行化学功能化修饰;然而,由于其化学不稳定性,实现后合成功能化具有挑战性。在此,我们报告了使用配位化学和共价化学分别通过 Rh-Rh 桨轮单元或有机配体后合成功能化约 2.5nm 稳定的 Rh(II)基立方八面体的外部表面。我们证明了 12 个 N-供体配体,包括氨基酸,可以配位在 Rh-MOP 的外围。我们利用这种反应性将新功能(例如手性)引入到 MOP 中,并调整其亲水/疏水特性,这使我们能够调节它们在二氯甲烷和水等多种溶剂中的溶解度。我们还证明所有 24 个有机配体都可以通过共价化学用酯后合成功能化。此外,我们预计这两种类型的后合成反应可以组合使用,以生成双官能化的 Rh-MOP,总共可以在其表面上结合 36 个新的功能分子。同样,这些化学可以协同组合,通过醚等新键合实现 MOP 的共价功能化。我们相信,所报道的两种后合成途径都有可能被用于工程化 Rh-MOP 作为递药、吸附和催化应用的支架。