Department of Chemistry, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, Massachusetts 02139, USA.
J Am Chem Soc. 2013 Aug 28;135(34):12886-91. doi: 10.1021/ja4064475. Epub 2013 Aug 19.
The metal nodes in metal-organic frameworks (MOFs) are known to act as Lewis acid catalysts, but few reports have explored their ability to mediate reactions that require electron transfer. The unique chemical environments at the nodes should facilitate unusual redox chemistry, but the difficulty in synthesizing MOFs with metal ions in reduced oxidation states has precluded such studies. Herein, we demonstrate that MZn3O(O2C-)6 clusters from Zn4O(1,4-benzenedicarboxylate)3 (MOF-5) serve as hosts for V(2+) and Ti(3+) ions and enable the synthesis of the first MOFs containing these reduced early metal ions, which can be accessed from MOF-5 by postsynthetic ion metathesis (PSIM). Additional MOF-5 analogues featuring Cr(2+), Cr(3+), Mn(2+), and Fe(2+) at the metal nodes can be obtained by similar postsynthetic methods and are reported here for the first time. The inserted metal ions are coordinated within an unusual all-oxygen trigonal ligand field and are accessible to both inner- and outer-sphere oxidants: Cr(2+)- converts into Cr(3+)-substituted MOF-5, while Fe(2+)-MOF-5 activates NO to produce an unusual Fe-nitrosyl complex.
金属-有机骨架(MOFs)中的金属节点已知可作为路易斯酸催化剂,但很少有报道探索其介导需要电子转移的反应的能力。节点处的独特化学环境应该有利于不寻常的氧化还原化学,但由于难以合成具有还原氧化态金属离子的 MOFs,因此无法进行此类研究。在此,我们证明 Zn4O(1,4-苯二甲酸酯)3(MOF-5)中的 MZn3O(O2C-)6 簇作为 V(2+)和 Ti(3+)离子的宿主,并能够合成含有这些还原后的早期金属离子的首个 MOFs,这些 MOFs 可通过后合成离子交换(PSIM)从 MOF-5 获得。通过类似的后合成方法可以获得具有金属节点处 Cr(2+)、Cr(3+)、Mn(2+)和 Fe(2+)的额外 MOF-5 类似物,这是首次报道。插入的金属离子在不寻常的全氧三角配位场中配位,并可与内球和外球氧化剂接触:Cr(2+)-转化为 Cr(3+)-取代的 MOF-5,而 Fe(2+)-MOF-5 可激活 NO 生成不寻常的 Fe-亚硝酰配合物。