Department of Chemistry, Zanjan Branch, Islamic Azad University, Zanjan, Iran.
Department of Chemistry, Payame Noor University, Zanjan, Iran.
Acta Crystallogr C Struct Chem. 2021 Feb 1;77(Pt 2):68-80. doi: 10.1107/S2053229620016502. Epub 2021 Jan 8.
The conformational flexibilities are studied in two new organotin(IV) complexes, namely, trans-dichloridodimethylbis[N,N',N''-tris(2-chlorobenzyl)phosphoric triamide]tin(IV), [Sn(CH)(CHClNOP)Cl] or Sn(CH)Cl{OP[NHCHCH(2-Cl)]}, (I), and bis(dipropylammonium) tetrachloridodimethylstannate(IV), [(CHCHCH)NH][Sn(CH)Cl], (II), and their analogous structures from the Cambridge Structural Database (CSD). The conformations are considered based on the N-P=O-Sn torsion angles for (I) and the C-C-C-N, C-C-N-C, C-N-C-C and N-C-C-C torsion angles for the two symmetry-independent [CHCHCHNHCHCHCH] cations in (II), and the ±ac±sp±ac (ac = anticlinal and sp = synperiplanar) and ±ap±ap±ap±ap (ap = antiperiplanar) conformations are observed, respectively. In both structures, the four atoms in the corners of the square-planar segment of the octahedral shape around the Sn atom participate in normal hydrogen-bonding interactions as acceptors, which include two O and two Cl atoms for (I), and four Cl atoms for (II). However, the phosphoric triamide ligands block the environment around the Sn atom and limit the hydrogen-bond pattern to form a supramolecular ribbon assembly, while in the presence of small organic cations in (II), a two-dimensional hydrogen-bonded architecture is achieved. The weak interactions π-π, C-H...π and C-Cl...π in (I), and C-H...Cl in (II) do not change the dimensionality of the hydrogen-bond pattern. The 62 CSD structures analogous to (I), i.e. with an SnOPN segment (including 83 entries) fall into four categories of conformations based on the N-P=O-Sn torsion angles. The 132 [(CHCHCH)NH] cations from 85 CSD structures are classified into seven groups based on the torsion angles noted for (II). Most of the CSD structures adopt the same associated conformations noted for (I) and (II). 15 [Sn(CH)Cl] anions extracted from the CSD are compared with the structure of (II).
研究了两个新的有机锡(IV)配合物的构象灵活性,即反式-二氯二甲基双[N,N',N''-三(2-氯苄基)膦酸三酰胺]锡(IV),[Sn(CH)(CHClNOP)Cl]或 Sn(CH)Cl{OP[NHCHCH(2-Cl)]},(I)和双(二丙基铵)四氯二甲基锡(IV),[(CHCHCH)NH][Sn(CH)Cl],(II)及其类似结构来自剑桥结构数据库(CSD)。构象是基于(I)的 N-P=O-Sn 扭转角和(II)中两个独立对称的[CHCHCHNHCHCHCH]阳离子的 C-C-C-N、C-C-N-C、C-N-C-C 和 N-C-C-C 扭转角来考虑的,分别观察到±ac±sp±ac(ac = 斜向)和±ap±ap±ap±ap(ap = 反斜向)构象。在这两种结构中,八面体形状中围绕 Sn 原子的正方形平面部分的四个原子作为受体参与正常的氢键相互作用,其中(I)包括两个 O 和两个 Cl 原子,(II)包括四个 Cl 原子。然而,磷酸三酰胺配体阻止了 Sn 原子周围的环境,并将氢键模式限制为形成超分子带状组装,而在(II)中存在小有机阳离子时,实现了二维氢键架构。(I)中的弱相互作用π-π、C-H...π和 C-Cl...π,以及(II)中的 C-H...Cl 并没有改变氢键模式的维度。与(I)类似的 62 个 CSD 结构,即具有 SnOPN 片段(包括 83 个条目),根据 N-P=O-Sn 扭转角分为四类构象。从 85 个 CSD 结构中提取的 132 个[(CHCHCH)NH]阳离子根据(II)中指出的扭转角分为七组。大多数 CSD 结构采用与(I)和(II)相同的相关构象。从 CSD 中提取的 15 个[Sn(CH)Cl]阴离子与(II)的结构进行了比较。