Tiwari Ranjay K, Shruti Ipsha, Behera J N
School of Chemical Sciences, National Institute of Science Education and Research (NISER) Bhubaneswar P.O. Jatni, Khurda Odisha-752050 India
Homi Bhabha National Institute Mumbai India.
RSC Adv. 2021 Mar 12;11(18):10767-10776. doi: 10.1039/d1ra00207d. eCollection 2021 Mar 10.
Three novel metal-tiron (4,5-dihydroxy-1,3-benzenedisulfonic acid disodium salt) and other pillared ligand bpy (4,4'-bipyridyl)-centered coordination polymers of the formulae [Cd(tiron)(bpy)(HO)]·0.5(HO), 1, [Co(tiron-bpy)(bpy)(HO)]·(HO), 2, and [Ba(tiron-bpy)(HO)][solvent], 3, were successfully synthesized under hydrothermal conditions. The as-synthesized materials were well characterized by complimentary techniques such as single-crystal X-ray diffraction, powder X-ray diffraction, Fourier-transform infrared spectroscopy and thermogravimetric analysis techniques. The as-synthesized coordination polymers of 1 and 2 featured 1D chains, while 3 shows a layered structure. Co-based 2 shows linear trinuclear Co(ii) ions and these Co(ii) ions have antiferromagnetic interactions among themselves. The structure of 1 features a zig-zag chain formed by the linkage between monodentate tiron ligands and octahedral Cd(ii) ions, interconnected by a twisted bpy ligand, 2 shows a linear chain constructed from corner-sharing trinuclear octahedral Co(ii) ions and coordinated with a tridentate tiron-bpy adduct ligand, whereas 3 shows nona-coordinated Ba(ii) ions sharing edges with other Ba(ii) ions and connected by hexadentate tiron-bridged structures resulting in a layered structure. In 2 and 3, the bpy nitrogen attacks at the position of the tiron ligand and forms an ligand adduct. The central metal ions show an octahedral geometry in 1 (Cd(ii) ions) and 2 (Co(ii) ions), but nona-coordination of Ba(ii) ions in 3. The short interatomic interactions in the crystal structures were evaluated by mapping the Hirshfeld surface process using pseudo-mirrored 2D fingerprint plots. The major short interatomic interactions H⋯H, O⋯H and C⋯H cover the Hirshfeld surfaces.
成功在水热条件下合成了三种新型的以金属-钛铁试剂(4,5-二羟基-1,3-苯二磺酸二钠盐)和其他柱状配体联吡啶(4,4'-联吡啶)为中心的配位聚合物,其化学式分别为[Cd(tiron)(bpy)(H₂O)]·0.5(H₂O)(1)、[Co(tiron-bpy)(bpy)(H₂O)]·(H₂O)(2)和[Ba(tiron-bpy)(H₂O)][溶剂](3)。通过诸如单晶X射线衍射、粉末X射线衍射、傅里叶变换红外光谱和热重分析技术等互补技术对合成的材料进行了充分表征。合成的配位聚合物1和2具有一维链结构,而3呈现层状结构。钴基的2显示出线性三核Co(ii)离子,并且这些Co(ii)离子之间存在反铁磁相互作用。1的结构特征是由单齿钛铁试剂配体和八面体Cd(ii)离子之间的连接形成的锯齿链,由扭曲的联吡啶配体相互连接;2显示出由角共享的三核八面体Co(ii)离子构建并与三齿钛铁试剂-联吡啶加合物配体配位的线性链;而3显示出九配位的Ba(ii)离子与其他Ba(ii)离子共享边,并通过六齿钛铁桥连结构连接,从而形成层状结构。在2和3中,联吡啶氮原子攻击钛铁试剂配体的特定位置并形成配体加合物。中心金属离子在1(Cd(ii)离子)和2(Co(ii)离子)中呈现八面体几何构型,但在3中Ba(ii)离子为九配位。通过使用伪镜像二维指纹图谱绘制Hirshfeld表面过程来评估晶体结构中的短原子间相互作用。主要的短原子间相互作用H⋯H、O⋯H和C⋯H覆盖了Hirshfeld表面。