首页> 外文期刊>ACS applied materials & interfaces >Reticular Chemistry and the Discovery of a New Family of Rare Earth (4,8)-Connected Metal-Organic Frameworks with csq Topology Based on RE4(mu(3)-O)(2)(COO)(8) Clusters
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Reticular Chemistry and the Discovery of a New Family of Rare Earth (4,8)-Connected Metal-Organic Frameworks with csq Topology Based on RE4(mu(3)-O)(2)(COO)(8) Clusters

机译:网状化学和发现新的稀土系列(4,8)的基于RE4(MU(3)-O)(2)(COO)(8)集群的CSQ拓扑

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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 (H4L), 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, RE4(mu(3)-O)(2) (RE: Y3+, Tb3+, Dy3+, Ho3+, Er3+, and Yb3+), with planar D-2h symmetry. The rigid 4-c linker, H4L, directs the in situ assembly of the unique 8-c RE4(mu(3)-O)(2)(COO)(8) 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(-1)), with high Xe/Kr selectivity (IAST 12.1, Henry 12.9) and good Xe uptake (1.94 mmol g(-1) at 298 K and 1 bar), placing this MOF among the top-performing adsorbents for Xe/Kr separation.
机译:近年来,通过施加网状化学规则和分子构建块(MBB)方法,具有不同结构特征和可调谐化学组成的新金属 - 有机框架(MOF)平台的设计和发现具有显着提高。我们针对基于矩形的4-C接头的新稀土(RE)-MOF平台的合成,作为刚性有机MBB。因此,我们设计和合成了有机配体1,2,4,5-四(4-羧基苯基)-3,6-二甲基 - 苯(H4L),其中连接到中央苯环的两个甲基锁定了四个外周羧基到正交/垂直位置。我们在此报告新的RE-MOF系列,具有新型无机建筑单元,RE4(MU(3)-O)(2)(RE:Y3 +,TB3 +,DY3 +,HO3 +,ER3 +和YB3 +),具有平面D- 2h对称性。刚性4-C接头H4L,直接原位组装在唯一的8-C RE4(mu(3)-O)(2)(2)(COO)(8)簇中,导致第一(4, 8)-C具有CSQ拓扑的RE-MOF,RE-CSQ-MOF-1。通过单晶X射线衍射分析测定钇(Y-CSQ-MOF-1)和钬(HO-CSQ-MOF-1)类似物的结构。 Y-CSQ-MOF-1已成功激活并测试XE / KR分离。结果表明,Y-CSQ-MOF-1对XE的吸附具有高旁边热(33.8kJ摩尔(-1)),具有高XE / KR选择性(IAST 12.1,HENRY 12.9)和良好的XE摄取(1.94mmol G. (-1)在298 k和1 bar),将该MOF放入XE / KR分离的顶部进行的吸附剂中。

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