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Tin and organotin coordination polymers and covalently bonded supramolecular materials - The last 15 years of research

机译:锡和有机锡配位聚合物和共价键合的超分子材料 - 过去15年的研究

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The objective of this paper is to summarise the main achievements concerning the tin and organotin supramolecular chemistry in the last 15 years. Since the last review several compounds have been documented in the literature together with new synthetic approaches and potential applications. It is divided in two parts, according to the forces sustaining the repeating units along with the supramolecular structures. The first topic comprises details about R2Sn and R3Sn-based polymers supported by N center dot center dot center dot H, O-H center dot center dot center dot O, C-H center dot center dot center dot O, C-H center dot center dot center dot pi, among other weak intermolecular interactions. The second part is dedicated to cover data regarding R2Sn, R3Sn and Sn(II)-containing structures and miscellaneous Sn(II) polymers constructed by the multidimensional Sn-O, Sn-N, or other covalent bonds. Among the ligands stand carboxylates, sulfonates, phosphonates, sulphur and phosphorous mixed electron donors and other Lewis bases containing sulphur atoms or heterocyclic groups. The dimensionality of R2Sn or R3Sn-containing polymers is influenced by the geometry at the Sn(IV), the bulkiness of the organic group attached to it, as well as by the nature of the ligands. The architecture of Sn(II) supramolecular structures depends also on the existence of stereochemically active electron lone pairs in Sn(II) species. The antitumoral or biocide studies employing organotin polymers revealed excellent activities towards different isolates. Other potential applications of organotin and Sn(II) polymers were also investigated, for example photo-luminescence or semiconducting properties, in electrochemistry, or as single-source precursors for the production of tin materials or nanowires, among others. (C) 2020 Elsevier B.V. All rights reserved.
机译:本文的目的是总结过去15年中锡和有机锡的主要成就。自上次审查以来,在文献中汇集了几种化合物,以及新的合成方法和潜在应用。根据维持重复单元以及超分子结构的力,它分为两部分。第一个主题包括关于R2SN和基于R3SN的聚合物的详细信息,由N中心DOT中心DOT中心点H,OH中心点中心DOT中心DOT O,CH中心DOT中心DOT中心DOT O,CH中心DOT中心点中心点PI,在其他弱分子间相互作用中。第二部分专用于涵盖关于R2SN,R3SN和Sn(II)的数据 - 统一的结构和由多维Sn-O,Sn-N或其他共价键构成的杂项Sn(II)聚合物。在配体支架中,羧酸盐,磺酸盐,膦酸盐,硫和磷混合电子供体和含有硫原子或杂环基的其他路易斯碱。 R2SN或含R3Sn聚合物的维度受到Sn(IV)的几何形状的影响,其中有机基团附着在其上,以及配体的性质。 Sn(II)超分子结构的结构也取决于SN(II)种中立体化学活性电子孤子对的存在。采用有机锡聚合物的抗肿瘤或生物剂研究揭示了不同分离株的优异活性。还研究了有机锡和Sn(II)聚合物的其他潜在应用,例如光发光或半导体性质,电化学,或作为用于生产锡材料或纳米线的单源前体。 (c)2020 Elsevier B.v.保留所有权利。

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