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Crystal engineering of MOF based on polypyridyl ligands and coordinatively unsatured NiII ions

机译:基于多吡啶配体和配位不饱和NiII离子的mOF晶体工程

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摘要

The thesis reports on the synthesis, structural and spectroscopic characterization of coordination polymers obtained by reacting dithiophosphato [((RO)2PS2)2Ni] and dithiophosphonato [Ni(ROpdt)2] NiII complexes [ROpdt = (RO)(4-MeOC6H4)PS2; R = Me, Et] with a variety of polypyridyl donors prepared and characterized as a part of the PhD work, selected according to their rigidity, topology, number and position of donor atoms.udChapter 1 An introductory part is presented which reports the main concepts of supramolecular chemistry and crystal engineering. The objectives of the research are outlined and the square planar NiII phosphorodithioato complexes used as the building blocks in the building up of the polymers introduced. The tendency of these coordinatively unsaturated complexes to axially bound two additional donor molecules by reaching octahedral coordination geometry in a quite predicable way, is discussed. Chapter 2 A discussion of the results is presented mainly focused on structural description motifs and crystallographic datasets obtained through the deliberate construction of coordination polymers obtained by reacting NiII phosphorodithioato complexes with various bi-pyridyl donors. Three different typologies of ligands were prepared: bidentate rigid spacers such as the 1,4-bis(3-pyridyl)-butadiyne ligand; semi-rigid bidentate spacers such as the 2,5-bis(4-pyridyl)-4-thia-1,3-thiazolidine and 2,5-bis-(3-pyridyl)-4-thia-1,3-thiazolidine ligands, and a set of tridentate spacers such as 1 1,3,5-benzenetricarboxylic acid-1,3-bis-4-pyridyl ester. The ligands were synthesized following different synthetic routes here described. The self-assembly process is based on the capability of the coordinatively unsaturated NiII ion of the square-planar phosphorodithioato complexes to bind suitable bipyridyl and tripyridil-based spacers thus forming 1D and 2D coordination polymers with different geometrical and topological features. It has been demonstrated that the primary structural motif of the polymers depends mainly on the features of the pyridyl-based spacers such as length, rigidity, number and orientation of the donor atoms, whereas the substituents on the phosphorus atoms play a crucial role in determining the final network through secondary intermolecular interactions involving the polymeric chains.udChapter 3 The experimental procedures and spectroscopic characterizations are here reported along with all the materials, instruments, synthetic procedures, crystallization methods, and technical parameters used for the spectroscopic investigations.udChapter 4 The conclusions about this research work and new perspectives in coordination polymers building-up are here reported.
机译:论文报道了通过二硫代膦酸酯[(((RO)2PS2)2Ni]和二硫代膦酸酯与[Ni(ROpdt)2] NiII配合物[ROpdt =(RO)(4-MeOC6H4)PS2]反应得到的配位聚合物的合成,结构和光谱表征; [R = Me,Et],并根据其刚性,拓扑结构,给体原子的数量和位置选择了各种聚吡啶基供体,并将其作为博士工作的一部分进行了表征。 ud第1章介绍了主要部分,超分子化学和晶体工程的概念。概述了研究的目标,并介绍了方形平面NiII磷酸二硫代磷酸根络合物作为构建聚合物的基础材料。讨论了这些配位不饱和配合物通过以相当可预测的方式达到八面体配位几何结构轴向结合两个额外供体分子的趋势。第2章对结果进行了讨论,主要集中在通过有意构建NiII磷酸二硫代氨基配合物与各种联吡啶供体反应而得到的配位聚合物的结构描述图案和晶体学数据集。制备了三种不同类型的配体:二齿刚性间隔基,例如1,4-双(3-吡啶基)-丁二炔配体;半刚性双齿间隔基,例如2,5-双(4-吡啶基)-4-噻-1,3-噻唑烷和2,5-双-(3-吡啶基)-4-噻-1,3-噻唑烷配体和一组三齿间隔基,例如1 1,3,5-苯三羧酸-1,3-双-4-吡啶基酯。按照本文所述的不同合成途径合成配体。自组装过程是基于方形平面二硫代硫代磷酸酯络合物的配位不饱和NiII离子结合合适的联吡啶基和三吡啶基间隔基的能力,从而形成具有不同几何和拓扑特征的1D和2D配位聚合物。已经证明,聚合物的主要结构基序主要取决于吡啶基间隔基的特征,例如供体原子的长度,刚度,数量和方向,而磷原子上的取代基在确定 ud第3章这里报告了实验程序和光谱表征,以及用于光谱学研究的所有材料,仪器,合成程序,结晶方法和技术参数。 ud第4章本文报道了有关这项研究工作的结论以及配位聚合物聚集的新观点。

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    Lai Romina;

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