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基于聚腈的配位聚合物通过脱水反应实现固态一维到三维的转变。

Solid-state 1D → 3D transformation of polynitrile-based coordination polymers by dehydration reaction.

作者信息

Dmitrienko Artem O, Buzin Mikhail I, Setifi Zouaoui, Setifi Fatima, Alexandrov Eugeny V, Voronova Evgeniia D, Vologzhanina Anna V

机构信息

A. N. Nesmeyanov Institute of Organoelement Compounds, RAS. 28 Vavilova str., 119991 Moscow, Russia.

出版信息

Dalton Trans. 2020 Jun 7;49(21):7084-7092. doi: 10.1039/d0dt00917b. Epub 2020 May 14.

Abstract

In crystal structures of two chain coordination polymers [M(tcnopr3OH)(HO)] (M = Ni and Co; tcnopr3OH = [(NC)CC(O(CH)OH)C(CN)]) based on a N,O or N,N'-bridge polynitrile ligand, the parallel chains are connected via, respectively, C[triple bond, length as m-dash]NH-O and O-HO hydrogen bonds between uncoordinated functional groups of the ligand and coordinated water molecules. Upon heating, both solids undergo dehydration accompanied by degradation of their single crystals. Powder X-ray diffraction showed that non-isostructural triclinic single crystals transformed to isostructural monoclinic compounds. The solid-state reaction yielded 3D coordination polymers [M(tcnopr3OH)] (M = Ni and Co) based on a N,N',O-connected tcnopr3OH. Although previously tens of complexes based on tcnopr3OH and similar anions were synthesized and X-ray characterized, none of these contain a tridentate polynitrile ligand. Thus, this study provides evidence that solid-state reactions allow obtaining novel coordination modes of polynitrile ligands. The possible pathways for the transformation of H-bonded networks to 3D coordination polymers are discussed on the basis of the topological approach. Applicability of the topological approach to predict possible networks of solid-state reaction products based on the crystal structures of initial compounds is demonstrated.

摘要

在基于N,O或N,N'-桥连多腈配体的两种链状配位聚合物[M(tcnopr3OH)(HO)](M = Ni和Co;tcnopr3OH = [(NC)CC(O(CH)OH)C(CN)])的晶体结构中,平行链分别通过配体未配位官能团与配位水分子之间的C≡NH-O和O-HO氢键相连。加热时,两种固体均发生脱水并伴随着单晶的降解。粉末X射线衍射表明,非等结构的三斜单晶转变为等结构的单斜化合物。固态反应生成了基于N,N',O连接的tcnopr3OH的3D配位聚合物[M(tcnopr3OH)](M = Ni和Co)。尽管此前已经合成了数十种基于tcnopr3OH和类似阴离子的配合物并进行了X射线表征,但这些配合物均不包含三齿多腈配体。因此,本研究提供了证据,证明固态反应能够获得多腈配体的新型配位模式。基于拓扑方法讨论了氢键网络转变为3D配位聚合物的可能途径。证明了拓扑方法基于初始化合物的晶体结构预测固态反应产物可能网络的适用性。

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