Ammari Y, Baaalla N, Hlil E K, Abid S
Université de Carthage, Faculté des sciences de Bizerte, LR13ES08 Laboratoire de chimie des matériaux, 7021, Zarzouna Bizerte, Tunisie.
LaMCScI, Laboratory of Condensed Matter and Interdisciplinary Sciences, B.P. 1014, Faculty of Science, Mohammed V University, Rabat, Morocco.
Sci Rep. 2020 Jan 28;10(1):1316. doi: 10.1038/s41598-020-58176-3.
Single crystal of 1D homometallic coordination polymer involving cobalt metal ion and PMo Strandberg type polyoxometallate cluster (CHN)[Co(HO)PMoO].6HO, is prepared in aqueous solution and characterized by X-ray diffraction (XRD), UV-vis diffuse reflectance, fluorescence and magnetism. Single crystal X-ray diffraction analysis reveals that this compound crystallizes in the triclinic system with space group P [Formula: see text]. The 3-(ammoniomethyl)pyridine CHN organic fragment is used merely as stabilizer for the promotion of topological structure. DRS data indicate that the synthesized material can be identified as a ferromagnetic semiconductor with optical bands gaps energy of 1.81 and 2.74 eV, respectively. The large value of refractive index observed in the visible region make the simple a promising candidate for visible optical communication devices and fluorescent emisson result provides that the complex belongs to a blue luminescent compounds. Moreover, magnetic measurements and electronic structure calculations show that PMo Strandberg polyoxoanion can be reported as a new class of ligand that is candidate to construct metal-inorganic framworks with long distance ferromagnetic superechange between Co(II) centers. The evidence from this study suggests that the syntesized polymer can become a great multifunctional material openning the door for the developpement of new coordination polymers based on Strandberg type polyxoxmetalate with potential applications.
一维同金属配位聚合物单晶,其包含钴金属离子和PMo斯特兰德伯格型多金属氧酸盐簇(CHN)[Co(HO)PMoO].6HO,在水溶液中制备,并通过X射线衍射(XRD)、紫外可见漫反射、荧光和磁性进行表征。单晶X射线衍射分析表明,该化合物结晶于三斜晶系,空间群为P [公式:见正文]。3-(氨甲基)吡啶CHN有机片段仅用作促进拓扑结构的稳定剂。DRS数据表明,合成材料可被鉴定为铁磁半导体,其光学带隙能量分别为1.81和2.74 eV。在可见光区域观察到的大折射率值使该材料有望成为可见光通信器件的候选材料,荧光发射结果表明该配合物属于蓝色发光化合物。此外,磁性测量和电子结构计算表明,PMo斯特兰德伯格多金属氧阴离子可被报道为一类新型配体,有望构建具有Co(II)中心之间长距离铁磁超交换的金属无机框架。本研究的证据表明,合成的聚合物可以成为一种多功能材料,为基于斯特兰德伯格型多金属氧酸盐的新型配位聚合物的开发打开大门,具有潜在应用价值。