Chohan Balwant S, Shoner Steven C, Kovacs Julie A, Maroney Michael J
Department of Chemistry, University of Massachusetts, Amherst, Massachusetts 01003, USA.
Inorg Chem. 2004 Nov 29;43(24):7726-34. doi: 10.1021/ic049110n.
Oxidations of a trigonal-bipyramidal, high-spin Ni(II) dithiolate complex of a pentadentate, N3S2-donor ligand, N1,N9-bis(imino-2-mercaptopropane)-1,5,9-triazanonane) nickel(II), and the structurally analogous Zn(II) complex, lead to oxidations of the ligand. Oxidation of the Ni(II) complex with I2 produces a novel Ni(II) macrocyclic cationic complex containing a monodentate disulfide ligand (2). Crystals of the I3- salt of the complex form in the triclinic space group P(1) with cell dimensions a=8.508(3) A, b=9.681(2) A, c=14.066(4) A, angles alpha=90.97(2) degrees , beta=91.61(3) degrees , gamma=90.83(2) degrees , and Z=2. The structure was refined to R=6.31% and Rw=16.63% (I > 2sigma(I)). Oxidation of the Ni(II) complex with O2 leads to the formation of a novel pentadentate bis-iminothiocarboxylate complex with trigonal-bipyramidal geometry (3). This neutral product crystallizes in the monoclinic space group P21/c with cell dimensions a=13.625(3) A, b=7.605(5) A, c=14.902(4) A, angles alpha=gamma=90 degrees, beta=102.81(2) degrees , and Z=4. The structure was refined to R=7.18% and Rw=17.86% (I > 2sigma(I)). Oxidation of the Zn(II) dithiolate analogue with O2 leads to the formation of the Zn(II) complex of the pentadentate bis-iminothiocarboxylate ligand. The neutral complex is isomorphous with the Ni(II) complex and crystallizes in the monoclinic space group P2(1)/c with cell dimensions a=13.8465(4) A, b=7.6453(2) A, c=15.0165(6) A, angles alpha=gamma=90 degrees , beta=103.2140(11) degrees , and Z=4. The structure was refined to R=3.96% and Rw=9.45% (I > 2sigma(I)). Details of the crystal structures are reported. Kinetics of the O2 reactions show that the reactions of the Ni(II) and Zn(II) dithiolates follow the rate law, Rate=k2[1][O2], with k2=1.81 M(-1) s(-1) for the Ni(II) complex and k2=1.93 x 10(-2) M(-1) s(-1) for the Zn(II) complex. The O2 oxidation of the high-spin Ni(II) thiolate complex was found to follow a similar oxidation mechanism to those of low-spin Ni(II) complexes, which form transient persulfoxide intermediates that yield S-oxidation products. In the case of the high-spin system reported here, the transient persulfoxide intermediate gives rise to an alternative ligand oxidation product, a bis-iminothiocarboxylate complex, because of the reactivity of the ligand, which contains a methylene with acidic H atoms alpha to the thiolate sulfur. The proposed mechanism is supported by studies of the analogous Zn dithiolate complex, which gives rise to the analogous bis-iminothiocarboxylate product (5).
五齿N3S2供体配体N1,N9 - 双(亚氨基 - 2 - 巯基丙烷)-1,5,9 - 三氮杂壬烷的三角双锥高自旋Ni(II)二硫醇盐配合物以及结构类似的Zn(II)配合物发生氧化反应时,会导致配体被氧化。Ni(II)配合物与I2发生氧化反应生成一种新型的含单齿二硫化物配体的Ni(II)大环阳离子配合物(2)。该配合物的I3 - 盐晶体形成于三斜空间群P(1)中,晶胞参数为a = 8.508(3) Å,b = 9.681(2) Å,c = 14.066(4) Å,α = 90.97(2)°,β = 91.61(3)°,γ = 90.83(2)°,Z = 2。结构精修后R = 6.31%,Rw = 16.63%(I > 2σ(I))。Ni(II)配合物与O2发生氧化反应生成一种具有三角双锥几何构型的新型五齿双亚氨基硫代羧酸盐配合物(3)。该中性产物结晶于单斜空间群P21/c中,晶胞参数为a = 13.625(3) Å,b = 7.605(5) Å,c = 14.902(4) Å,α = γ = 90°,β = 102.81(2)°,Z = 4。结构精修后R = 7.18%,Rw = 17.86%(I > 2σ(I))。Zn(II)二硫醇盐类似物与O2发生氧化反应生成五齿双亚氨基硫代羧酸盐配体的Zn(II)配合物。该中性配合物与Ni(II)配合物同晶型,结晶于单斜空间群P2(1)/c中,晶胞参数为a = 13.8465(4) Å,b = 7.6453(2) Å,c = 15.0165(6) Å,α = γ = 90°,β = 103.2140(11)°,Z = 4。结构精修后R = 3.96%,Rw = 9.45%(I > 2σ(I))。报告了晶体结构的详细信息。O2反应的动力学表明,Ni(II)和Zn(II)二硫醇盐的反应遵循速率定律Rate = k2[1][O2]),其中Ni(II)配合物的k2 = 1.81 M(-1) s(-1),Zn(II)配合物的k2 = 1.93 x 10(-2) M(-1) s(-1)。发现高自旋Ni(II)硫醇盐配合物的O2氧化反应遵循与低自旋Ni(II)配合物类似的氧化机制,低自旋Ni(II)配合物形成瞬态过硫氧化物中间体,进而产生S - 氧化产物。在本文报道的高自旋体系中,由于配体的反应性,瞬态过硫氧化物中间体产生了另一种配体氧化产物——双亚氨基硫代羧酸盐配合物,该配体在硫醇盐硫原子的α位含有一个带有酸性H原子的亚甲基。对类似的Zn二硫醇盐配合物的研究支持了所提出的机制,该配合物产生了类似的双亚氨基硫代羧酸盐产物(5)。