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首页> 外文期刊>CrystEngComm >Influence of the cavity dimension on encapsulation of halides within the capsular assembly and side-cleft recognition of a sulfate-water cluster assisted by polyammonium tripodal receptors
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Influence of the cavity dimension on encapsulation of halides within the capsular assembly and side-cleft recognition of a sulfate-water cluster assisted by polyammonium tripodal receptors

机译:腔体尺寸对卤化物在囊体组件中的包封的影响以及三脚架受体辅助的硫酸盐-水团簇的侧裂识别

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摘要

The p-nitrophenyl and p-bromophenyl functionalized tris-polyamine receptors, L-1 and L-2, have formed capsular assembly with halide ions in an encapsulated fashion through efficient hydrogen-bonding. On the other hand, the positional isomer of L-1, the m-nitrophenyl functionalized tripodal amine receptor L-3, displays a rather flat-open conformation and is unable to bind halide anions in an encapsulated form. The presence of a smaller cavity in these receptors hinders the binding of larger oxyanions like sulfate. As a result, the protonated tripodal scaffold encapsulates small solvent molecules and helps in side-cleft binding of the larger sulfate anion. Herein, we report the design, synthesis and characterization of tren-based polyammonium receptors L-1, L-2 and L-3 and their complexation as well as binding discrepancy with several anions in the presence of acid. The solid state crystal structure of the anion complexes with L-1, L-2 and L-3 reveal that the anions are recognized via stable N-H center dot center dot center dot A, C-H center dot center dot center dot A, anion-pi interactions with the protonated receptor molecule in a unimolecular fashion either inside or outside the cavity. The sulfate-water complexes of receptors L-1, L-2 and L-3 are stabilized by (NH)(+)center dot center dot center dot O type H-bonding and electrostatic interactions among sulfate, water and ammonium groups. The polyammonium based tripodal scaffold with positional variation of the functional group shows significant difference in anion binding fashion through either capsular or non-capsular complex formation.
机译:对硝基苯基和对溴苯基官能化的三聚胺受体L-1和L-2通过有效的氢键键合以卤化物离子的形式形成了胶囊组件。另一方面,L-1的位置异构体,间硝基苯基官能化的三脚胺受体L-3,显示出相当开放的构象,并且不能以封装形式结合卤化物阴离子。这些受体中较小空腔的存在阻碍了较大的氧阴离子如硫酸盐的结合。结果,质子化的三脚架支架封装了小的溶剂分子,并有助于较大的硫酸根阴离子的侧裂结合。在本文中,我们报告了基于tren的聚铵受体L-1,L-2和L-3的设计,合成和表征,以及它们的络合以及在酸存在下与几种阴离子的结合差异。具有L-1,L-2和L-3的阴离子配合物的固态晶体结构表明,阴离子可通过稳定的NH中心点中心点中心点A,CH中心点中心点中心点A,阴离子-pi识别在腔内或腔外以非分子形式与质子化受体分子相互作用。受体L-1,L-2和L-3的硫酸盐-水配合物通过(NH)(+)中心点中心点中心点中心点O型H键和硫酸根,水和铵基之间的静电相互作用而稳定。具有官能团位置变化的基于聚铵的三脚架支架通过包膜或非包膜复合物的形成在阴离子结合方式上显示出显着差异。

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