School of Chemistry, College of Science and Engineering, National University of Ireland Galway, H91 TK 33 Galway, Ireland.
Department of Chemistry, University of Cyprus, 1678 Nicosia, Cyprus.
Dalton Trans. 2021 May 25;50(20):6997-7006. doi: 10.1039/d1dt00940k.
Metal organic frameworks (MOFs) have attracted considerable attention in recent years due to their use in a wide range of environmental, industrial and biomedical applications. The employment of benzophenone-4,4'-dicarboxylic acid (bphdcH2) in MOF chemistry provided access to the 3D mixed metal MOFs [CoNa2(bphdc)2(DMF)2]n (NUIG2) and [ZnK2(bphdc)2(DMF)2]n (NUIG3), and the 2D homometallic MOF [Co2(OH)(bphdcH)2(DMF)2(H2O)2]n(OH)·DMF (1·DMF). 1·DMF is based on a dinuclear SBU and consists of interpenetrating networks with an sql topology. Dc magnetic susceptibility studies were carried out in 1·DMF and revealed the presence of weak antiferomagnetic exchange interactions between the metal centres. NUIG2 and NUIG3 are structural analogues of [ZnNa2(bphdc)2(DMF)2]n (NUIG1), which has shown an exceptionally high encapsulation for ibuprophen (Ibu), NO and metal ions. Both NUIG2 and NUIG3 display high metal ion (CoII, NiII, CuII) adsorption capacity, comparable to that of NUIG1, with NUIG2 exhibiting good performance in Ibu uptake (780 mg Ibu per g NUIG2). Monte Carlo simulations were conducted in NUIG1 in order to assess its adsorption capacity for other guest molecules, and revealed that it possesses an outstanding CO2 uptake at ambient pressure, which is larger than that of the previously reported best functioning species (104 vs. 100 cm3 (stp) per cm3). Furthermore, NUIG1 exhibits high selectivity for CO2 over CH4.
金属有机骨架(MOFs)由于其在环境、工业和生物医学等广泛领域的应用而受到了极大的关注。苯甲酮-4,4'-二羧酸(bphdcH2)在 MOF 化学中的应用为制备 3D 混合金属 MOFs [CoNa2(bphdc)2(DMF)2]n(NUIG2)和[ZnK2(bphdc)2(DMF)2]n(NUIG3)以及 2D 同金属 MOF [Co2(OH)(bphdcH)2(DMF)2(H2O)2]n(OH)·DMF(1·DMF)提供了途径。1·DMF 基于双核 SBU,由具有 sql 拓扑的互穿网络组成。1·DMF 的 dc 磁化率研究表明,金属中心之间存在弱反铁磁交换相互作用。NUIG2 和 NUIG3 是[ZnNa2(bphdc)2(DMF)2]n(NUIG1)的结构类似物,NUIG1 对布洛芬(Ibu)、NO 和金属离子表现出极高的包封能力。NUIG2 和 NUIG3 均表现出对金属离子(CoII、NiII、CuII)的高吸附能力,与 NUIG1 相当,NUIG2 在 Ibuprofen(Ibu)的吸附性能方面表现出色(每克 NUIG2 可吸附 780mg Ibu)。为了评估其对其他客体分子的吸附能力,在 NUIG1 中进行了蒙特卡罗模拟,结果表明其在环境压力下具有出色的 CO2 吸附能力,比以前报道的最佳功能化物种(104 比 100 cm3(stp)/cm3)更大。此外,NUIG1 对 CO2 对 CH4 的选择性高。