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离散的和聚合的自组装钯(II)配合物作为超分子凝胶剂。

Discrete and Polymeric Self-Assembled Palladium(II) Complexes as Supramolecular Gelators.

机构信息

Department of Chemistry, Indian Institute of Technology Madras, Chennnai, 600036, India.

出版信息

Chem Asian J. 2018 Dec 18;13(24):3777-3789. doi: 10.1002/asia.201801161. Epub 2018 Oct 31.

Abstract

Supramolecular gels prepared from low-molecular-weight gelators have been extensively explored. However, the exploitation of discrete or polymeric metal complexes as gelators is a relatively recent trend. The synthesis of self-assembled coordination complexes from palladium(II) and selected ligands is well established, but the potential of these complexes as gelators is a less explored treasure. Herein we focus on the gelation abilities of some self-assembled palladium(II) complexes and the resulting unique properties. First, discrete complexes with PdL, PdL , Pd L, Pd L , Pd L , and Pd L compositions are discussed. Second, gelation behavior promoted by coordination-polymer-like gelators formed in situ is explored. These gel samples have been employed in catalysis and the uptake of organic and dye molecules from the solution and gas phases. It is concluded that untapped unique properties can be realized by further exploration of designer palladium(II) complexes.

摘要

已广泛探索了由低分子量凝胶剂制备的超分子凝胶。然而,将离散或聚合金属配合物用作凝胶剂是一种相对较新的趋势。钯(II)和选定配体的自组装配位配合物的合成已经成熟,但这些配合物作为凝胶剂的潜力是一个探索较少的宝藏。在此,我们重点介绍了一些自组装钯(II)配合物的成胶能力及其独特的性质。首先,讨论了具有 PdL、PdL、PdL、PdL、PdL 和 PdL 组成的离散配合物。其次,探讨了原位形成的类配位聚合物凝胶剂促进的凝胶化行为。这些凝胶样品已用于催化以及从溶液和气相中吸收有机和染料分子。结论是,通过进一步探索设计的钯(II)配合物,可以实现未被挖掘的独特性质。

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