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大气 CO 的固定作为新型碳酸盐-(水)-碳酸盐簇,以及在中性双脲支架的线性四聚桶内捕获双硫酸盐。

Fixation of atmospheric CO as novel carbonate-(water)-carbonate cluster and entrapment of double sulfate within a linear tetrameric barrel of a neutral bis-urea scaffold.

机构信息

Department of Chemistry, Indian Institute of Technology Guwahati, Assam-781039, India.

出版信息

Dalton Trans. 2017 Aug 8;46(31):10374-10386. doi: 10.1039/c7dt01697b.

Abstract

A meta-phenylenediamine-based disubstituted bis-urea receptor L1 with electron-withdrawing 3-chloro and electron-donating 4-methylphenyl terminals has been established as a potential system to fix and efficiently capture atmospheric CO as air-stable entrapment of an unprecedented {CO-(HO)-CO} cluster (complex 1a) within its tetrameric long straight pillar-like assembly entirely sealed by n-TBA cations via formation of a barrel-type architecture. L1 and its isomeric 4-bromo-3-methyl disubstituted bis-urea receptor L2 have been found to entrap similar kinds of water-free naked sulfate-sulfate double anion (complexes 1b and 2a) by cooperative binding of urea moieties inside the two pairs of the inversion-symmetric linear tetrameric barrel of L1 and L2, respectively. On the other hand, in the presence of excess halides, L1 self-assembles to form hexa-coordinated fluoride complex 1c and tetra-coordinated bromide complex 1d, while L2 self-assembles to form penta-coordinated fluoride complex 2b in the solid state via semicircular receptor architectures and non-cooperative H-bonding interactions of urea moieties.

摘要

建立了一种基于间苯二胺的取代双脲受体 L1,其两端带有吸电子的 3-氯和供电子的 4-甲基苯基,作为一种潜在的系统,可以固定和有效地捕获大气中的 CO,形成前所未有的 {CO-(HO)-CO} 簇(配合物 1a),该簇完全被 n-TBA 阳离子密封在其四聚体长直柱状组装体中,通过形成桶型结构。发现 L1 及其异构的 4-溴-3-甲基取代双脲受体 L2 通过脲基部分在对称线性四聚体桶内的协同结合,分别捕获类似的无水裸露硫酸盐-硫酸盐双阴离子(配合物 1b 和 2a)。另一方面,在过量卤化物存在下,L1 通过半圆弧受体结构和脲基部分的非协同氢键相互作用自组装形成六配位氟化物配合物 1c 和四配位溴化物配合物 1d,而 L2 自组装形成五配位氟化物配合物 2b。

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