Pyrrolidinecarbodithioate as a planarity chuck in the search for cis-platin analogues of nickel: Spectral, single crystal X-ray structural, BVS, and CSM analysis of some planar nickel(II) mixed ligand complexes

K. Ramalingam, Murugesan Saravanan, G. Bocelli, L. Righi, Y. Chumakov, A. Cantoni
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Abstract

[Ni(pyrdtc)(PPh3)(NCS)] (1), [Ni(pyrdtc)(4-MP)(NCS)] (2), [Ni(pyrdtc)(PPh3)(CN)]·H2O (3), [Ni(pyrdtc)(PPh3)2]ClO4 (4), and [Ni(pyrdtc)(P͡P)]BPh4·2H2O (5) [where pyrdtc: Pyrrolidine carbodithioate/S͡S, PPh3: Triphenylphosphine, 4-MP: Tri(4-methylphenyl)phosphine, dppe/P͡P: 1,2-Bis(diphenylphosphino)ethane] have been prepared from the parent bis-dithiocarbamate, [Ni(pyrdtc)]2 (6). The prepared compounds were characterized by electronic, IR, 1H, 13C, and 31P NMR spectra. In the IR spectra of the compounds, thioureide bands are observed at higher wavenumbers for the mixed ligand complexes 1-5 (1528-1540 cm-1) than the parent compound (1490 cm-1). Cyclic voltammetry showed an increasing order of reduction potentials: 5 << 1 ~ 2 < 3 < 4 << [Ni(pyrdtc)2] indicating an alleviation of electron density on nickel in the mixed complexes compared to the parent compound. Single crystal X-ray structure of the complexes displayed planar geometry around nickel which is in keeping with their diamagnetism. Bond Valence Sums calculated with the corrected Rij indicated the divalent nature of nickel with predominant covalent interactions. Continuous shape measure analysis of the mixed ligand chromophores stipulates a planar square environment around central nickel atom and deviation to tetrahedral or trigonal bipyramidal variants are absolutely negated. In this study, CSM analysis of cis-platin, a clinical anti-cancer agent, showed a comparable shape measure as those of the mixed ligand complexes 1-5. Hence, pyrrolidinecarbodithioate acts as a ‘chuck’ in compounds 1-5 to stabilize the planar square shape of the nickel chromophores and provides a suitable template to synthesize analogues of cis-platin.
吡咯烷碳二硫代酸作为寻找镍顺铂类似物的平面夹盘:一些平面镍(II)混合配体配合物的光谱、单晶x射线结构、BVS和CSM分析
[Ni(pyrdtc)(PPh3)(NCS)](1)、[Ni(pyrdtc)(4- mp)(NCS)](2)、[Ni(pyrdtc)(PPh3)(CN)]·H2O(3)、[Ni(pyrdtc)(PPh3)2]ClO4(4)和[Ni(pyrdtc)(P (P))]BPh4·2H2O(5)[其中pyrdtc:吡罗烷碳二硫酸盐/S (S) S, PPh3:三苯基膦,4- mp:三(4-甲基苯基)膦,dppe/P (P): 1,2-双(二苯基膦)乙烷]由母体双二硫代氨基甲酸酯[Ni(pyrdtc)]2(6)]合成。所制备的化合物通过电子、IR、1H、13C和31P NMR谱进行了表征。在化合物的红外光谱中,观察到混合配体1-5 (1528-1540 cm-1)比母体化合物(1490 cm-1)具有更高的波数。循环伏安法显示,还原电位依次为5 << 1 ~ 2 < 3 < 4 << [Ni(pyrdtc)2],表明与母体化合物相比,混合配合物中镍的电子密度有所减轻。配合物的x射线单晶结构在镍周围呈平面几何形状,这与配合物的抗磁性一致。用修正后的Rij计算的键价和表明镍的二价性质以共价相互作用为主。混合配体发色团的连续形状测量分析规定了中心镍原子周围的平面方形环境,绝对否定了四面体或三角双锥体变体的偏差。在本研究中,临床抗癌药物顺式铂的CSM分析显示,其形状测量与混合配体复合物1-5的形状测量相当。因此,吡咯烷碳二硫酸盐作为化合物1-5中的“夹头”来稳定镍发色团的平面方形形状,并为合成顺式铂的类似物提供了合适的模板。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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