Simmons Joe D, Sarkar Subham, Ezazi Andrew A, Sur Aishanee, Iverson Ethan T, Morey Merissa N, Chivington Austin D, Fisher Sarah G, Grunlan Jaime C, Powers David C, Bloch Eric D
Department of Chemistry, Indiana University Bloomington IN 47405 USA
Department of Chemistry, Texas A&M University College Station Texas 77843 USA
Chem Sci. 2025 Jul 29. doi: 10.1039/d4sc08061k.
Post-synthetic metalation and metathesis chemistry are central to rational synthesis of metal-organic frameworks (MOFs) that are unavailable by direct self-assembly. The inherent microcrystallinity and heterogeneous nature of many MOFs renders characterization of the rate, extent, and distribution of post-synthetic modifications challenging. Here we describe the deposition of optically transparent, permanently porous thin films comprised of peripherally carboxylated free-base porphyrins and cationic porous molecular cages. The films are assembled layer-by-layer growth controlled by coulombic charge pairing, which allows for systematic control over film thickness. The obtained thin films are optically transparent monoliths that retain the permanent porosity of the corresponding porous salts. Post-synthetic metalation of these films with Mn(HMDS) affords the corresponding Mn(ii) porphyrin-based materials (HMDS = hexamethyldisilazide). Access to thin films with systematically varied thickness (and thus optical density), combined with spectroscopy, enables the kinetics and extent of metalation to be directly monitored. We demonstrate both structure- and thickness-dependence on metalation kinetics. These results provide a unique window into the molecular-scale mechanisms that underpin materials synthesis.
合成后金属化和复分解化学对于合理合成通过直接自组装无法获得的金属有机框架(MOF)至关重要。许多MOF固有的微晶性和多相性质使得表征合成后修饰的速率、程度和分布具有挑战性。在此,我们描述了由周边羧基化的游离碱卟啉和阳离子多孔分子笼组成的光学透明、具有永久孔隙率的薄膜的沉积。这些薄膜通过库仑电荷配对控制的逐层生长进行组装,这使得能够对薄膜厚度进行系统控制。所获得的薄膜是光学透明的整体材料,保留了相应多孔盐的永久孔隙率。用Mn(HMDS)对这些薄膜进行合成后金属化,得到相应的基于Mn(ii)卟啉的材料(HMDS = 六甲基二硅氮烷)。获得具有系统变化厚度(从而光学密度)的薄膜,结合光谱学,能够直接监测金属化的动力学和程度。我们证明了金属化动力学对结构和厚度的依赖性。这些结果为支撑材料合成的分子尺度机制提供了一个独特的窗口。