Department of Chemistry, University of Crete , Voutes, 71003 Heraklion, Greece.
Department of Chemistry, University of Cyprus , Nicosia 1678, Cyprus.
ACS Appl Mater Interfaces. 2017 Dec 27;9(51):44560-44566. doi: 10.1021/acsami.7b16380. Epub 2017 Dec 15.
In recent years, the design and discovery of new metal-organic framework (MOF) platforms with distinct structural features and tunable chemical composition has remarkably enhanced by applying reticular chemistry rules and the molecular building block (MBB) approach. We targeted the synthesis of new rare earth (RE)-MOF platforms based on a rectangular-shaped 4-c linker, acting as a rigid organic MBB. Accordingly, we designed and synthesized the organic ligand 1,2,4,5-tetrakis(4-carboxyphenyl)-3,6-dimethyl-benzene (HL), in which the two methyl groups attached to the central phenyl ring lock the four peripheral carboxyphenyl groups to an orthogonal/vertical position. We report here a new family of RE-MOFs featuring the novel inorganic building unit, RE(μ-O) (RE: Y, Tb, Dy, Ho, Er, and Yb), with planar D symmetry. The rigid 4-c linker, HL, directs the in situ assembly of the unique 8-c RE(μ-O)(COO) cluster, resulting in the formation of the first (4, 8)-c RE-MOFs with csq topology, RE-csq-MOF-1. The structures of the yttrium (Y-csq-MOF-1) and holmium (Ho-csq-MOF-1) analogues were determined by single-crystal X-ray diffraction analysis. Y-csq-MOF-1 was successfully activated and tested for Xe/Kr separation. The results show that Y-csq-MOF-1 has high isosteric heat of adsorption for Xe (33.8 kJ mol), with high Xe/Kr selectivity (IAST 12.1, Henry 12.9) and good Xe uptake (1.94 mmol g at 298 K and 1 bar), placing this MOF among the top-performing adsorbents for Xe/Kr separation.
近年来,通过应用网状化学规则和分子构建块(MBB)方法,设计和发现具有独特结构特征和可调化学成分的新型金属有机骨架(MOF)平台取得了显著进展。我们的目标是基于矩形 4-c 连接体合成新型稀土(RE)-MOF 平台,该连接体充当刚性有机 MBB。相应地,我们设计并合成了有机配体 1,2,4,5-四(4-羧基苯基)-3,6-二甲基苯(HL),其中两个甲基基团连接到中心苯基环上,将四个外围羧基苯基锁定在正交/垂直位置。我们在这里报告了一类新的稀土金属有机骨架,其特征在于具有平面 D 对称性的新型无机构建单元 RE(μ-O)(RE:Y、Tb、Dy、Ho、Er 和 Yb)。刚性 4-c 连接体 HL 指导独特的 8-c RE(μ-O)(COO)簇的原位组装,导致具有 csq 拓扑的首个(4,8)-c RE-MOF 的形成,即 RE-csq-MOF-1。通过单晶 X 射线衍射分析确定了钇(Y-csq-MOF-1)和钬(Ho-csq-MOF-1)类似物的结构。Y-csq-MOF-1 成功被激活并用于 Xe/Kr 分离测试。结果表明,Y-csq-MOF-1 对 Xe 的等吸附热高(33.8 kJ mol),具有较高的 Xe/Kr 选择性(IAST 12.1,Henry 12.9)和良好的 Xe 吸附量(298 K 和 1 bar 时为 1.94 mmol g),这使该 MOF 成为 Xe/Kr 分离性能最好的吸附剂之一。