铂(II)二苯甲酮亚胺配合物及反式-(N,N)-(二苯甲酮亚胺)氯-[2-(1-亚胺-1-苯基甲基)苯基碘]-铂(II)-丙酮(2/1)的晶体结构

L. Groendahl, J. Josephsen, Rikke Christina Mattsson Bruun, S. Larsen
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引用次数: 5

摘要

描述了铂(II)配合物[PtI2(Ph2C=NH)(2)]、[PtCl2(Ph2C=NH)(2)]、[PtCl(Ph(Ph- h)C=NH)-(NH2CH2CH2NH2)]和反式-(N,N)-[PtCl(Ph(Ph- h)C=NH)(Ph2C=NH)]的合成及H-1 NMR和IR表征。报道了后一种配合物在室温下的吸收光谱和发射光谱。反式-(N,N)的晶体结构[PtCl(Ph(Ph- h)C=NH)(Ph2C=NH)]。用x射线衍射法测定了1/2{(CH3)(2)CO}。空间群C2/c, a = 14.318(4)埃,b = 22.854(4)埃。c = 15.212(3)埃,beta = 108.42(2)度,在291个参数的细化中使用10 368个反射,R = 0.037, wR2 = 0.074(对于所有数据)。配体围绕铂呈平面构型,键长分别为Pt-Cl 2.404(1)埃、Pt-N(单齿亚胺配体)2.004(3)埃、Pt-N(双齿亚胺配体)1.979(3)埃和Pt-C 1.988(3)埃。反式-(N,N)-[PtCl(Ph(Ph- h)C=NH)(Ph2C=NH)] (CDCl3)的H-1核磁共振谱的化学位移显示出配合物浓度的变化,表明二聚化。二聚化常数由邻金属化配体的NH质子在300 K时的化学位移变化确定,K = 1.25(4) M-1。溶液中二聚体的结构类似于固态铂配合物之间的相互作用类型之一。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Platinum(II)Benzophenone Imine Complexes and the Crystal Structure of trans-(N,N)-(Benzophenoneimine)chloro-[2-(1-imino-1-phenylmeth yl)phenyliodo]-platinum(II)-Acetone(2/1)
Syntheses and characterisation by H-1 NMR and IR of the platinum(II) complexes [PtI2(Ph2C=NH)(2)], [PtCl2(Ph2C=NH)(2)], [PtCl(Ph(Ph-H)C=NH)-(NH2CH2CH2NH2)] and trans-(N,N)-[PtCl(Ph(Ph-H)C=NH)(Ph2C=NH)] are described. Absorption and emission spectra at room temperature for the latter complex are reported. The crystal structure of trans-(N,N)[PtCl(Ph(Ph-H)C=NH)(Ph2C=NH)] . 1/2{(CH3)(2)CO} was determined by X-ray diffraction methods. Space group C2/c, a = 14.318(4) Angstrom, b = 22.854(4) Angstrom. c = 15.212(3) Angstrom and beta = 108.42(2)degrees using 10 368 reflections in the refinement of 291 parameters gave R = 0.037 and wR2 = 0.074 (for all data). The ligands surround platinum in a planar configuration with bond lengths of Pt-Cl 2.404(1) Angstrom, Pt-N (monodentate imine ligand) 2.004(3) Angstrom, Pt-N (bidentate imine ligand) 1.979(3) Angstrom and Pt-C 1.988(3) Angstrom. The chemical shifts in the H-1 NMR spectrum of trans-(N,N)-[PtCl(Ph(Ph-H)C=NH)(Ph2C=NH)] (in CDCl3) display variations with concentration of the complex that indicate dimerisation. The dimerisation constant was determined from the change in chemical shift for the NH proton of the ortho-metalated ligand, K = 1.25(4) M-1 at 300 K. The structure of the dimer in solution is proposed to resemble one of the types of interactions that are encountered between platinum complexes in the solid state.
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