Jangir Ritambhara, Kalita Alok Ch, Kaleeswaran Dhananjayan, Gupta Sandeep K, Murugavel Ramaswamy
Department of Chemistry, Institution Institute of Technology Bombay, Powai, Mumbai-, 400076, India.
Chemistry. 2018 Apr 20;24(23):6178-6190. doi: 10.1002/chem.201800149. Epub 2018 Mar 22.
Double-4-ring zinc phosphate (D4R), [Zn(dipp)(4-Py-CHO)] (2) (dipp=diiminopyridine), bearing four formyl groups, has been utilized as a building block (SBU) for the synthesis of a new class of imine-linked [4+2] COF-like polycrystalline zinc phosphate frameworks. Reactions of 2 with a series of linear aromatic diamines results in the formation of polycrystalline frameworks [Zn (dipp) (L) ] (3-6) (L=L to L , diimines formed by condensation of 4-pyridine carboxaldehyde with diamines). Employing an alternative synthetic strategy, through a diffusion-controlled slow reaction of 2 with the pre-synthesized 4,4'-bispyridyl bisimine (L ), [Zn (dipp) (L ) ] (5') has been obtained as single crystals. Complex 5' is a 3D-framework, exhibiting a rare eightfold interpenetrated diamondoid network. The long spacer length (19.6 Å) results in extensive entanglement in 5'. Powder diffraction data suggest that these compounds are isoreticular 3D-frameworks. To study the effect of the relative position of pyridyl donors with respect to the central benzidine moiety, 3,3'-bispyridyl bisimine (L ) was investigated as the spacer. A slow reaction of 1 b with L leads to the isolation of a 2D-boxed-sheet coordination polymer [Zn (dipp) (L ) ] (7). Selective formation of 3D-framework 5' from L and the 2D-framework 7 from L is due to the angles created by the coordination of para- and meta-pyridyl nitrogen centers at the zinc centers of the D4R cubane. Compound 5' has been utilized as a catalyst for Knoevenagel condensation.
双四环磷酸锌(D4R),即[Zn(dipp)(4-Py-CHO)] (2)(dipp = 二亚氨基吡啶),带有四个甲酰基,已被用作构建单元(SBU)来合成一类新型的亚胺连接的[4+2]类共价有机框架磷酸锌多晶型物。2与一系列线性芳族二胺的反应导致形成多晶型框架[Zn (dipp) (L) ] (3 - 6)(L = L₁至L₄,由4-吡啶甲醛与二胺缩合形成的二亚胺)。采用另一种合成策略,通过2与预合成的4,4'-联吡啶双亚胺(L₅)的扩散控制缓慢反应,得到了单晶[Zn (dipp) (L₅) ] (5')。配合物5'是一种三维框架,呈现出罕见的八重互穿类金刚石网络。较长的间隔长度(19.6 Å)导致5'中存在广泛的缠结。粉末衍射数据表明这些化合物是等规三维框架。为了研究吡啶供体相对于中心联苯胺部分的相对位置的影响,研究了3,3'-联吡啶双亚胺(L₆)作为间隔物。1b与L₆的缓慢反应导致分离出二维盒状片层配位聚合物[Zn (dipp) (L₆) ] (7)。从L₅选择性形成三维框架5'以及从L₆形成二维框架7是由于D4R立方烷锌中心处对吡啶和间吡啶氮中心配位所形成的角度。化合物5'已被用作Knoevenagel缩合反应的催化剂。