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Multinuclear NMR study and crystal structures of complexes of the types cis- and trans-Pt(amine)(2)I-2

机译:多核NMR研究和顺式和反式Pt(胺)(2)I-2型配合物的晶体结构

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Complexes of the types cis- and trans-Pt(amine)(2)I-2 were studied by spectroscopic methods, especially by multinuclear NMR spectroscopy. In Pt-195 NMR, the cis diiodo compounds with primary amines were observed between -3342 and -3357 ppm in acetone, while the trans compounds were found between -3336 and -3372 ppm. For the secondary amines, the chemical shifts were observed at lower fields. In H-1 NMR, the trans complexes were observed at higher fields than the cis compounds, while in C-13 NMR, the reverse was observed. The (2)J(Pt-195(-1) H) and (3)J(Pt-195-H-1) coupling constants are larger for the cis compounds (ave. 67 and 45 Hz, respectively) than for the trans isomers (ave. 59 and 38 Hz). In C-13 NMR, the values of (2)J(Pt-195-C-13) and (3)J(Pt-195-C-13) were also found to be larger for the cis complexes (ave. 17 and 39 Hz versus 11 and 28 Hz). There seems to be a slight dependence of the pK(a) values of the protonated amines or the proton affinity in the gas phase with the delta(Pt) chemical shifts. The crystal structures of eight diiodo complexes were determined. These compounds are cis-Pt(CH3NH2)(2)I-2, cis-Pt(n-C4H9NH2)(2)I-2, cis-Pt(Et2NH)(2)I-2, trans-Pt(nC(3)H(7)NH(2))(2)I-2, trans-Pt(iso-C3H7NH2)(2)I-2, trans-Pt(n-C(4)HqNH(2))(2)I-2, trans-Pt(t-C(4)HqNH(2))(2)I-2 and trans-Pt(Me2NH)(2)I-2. The Pt-N bond distances located in trans position to the iodo ligands were compared to those located in trans position to the amines. The Pt-N bond in cis-Pt(Et2NH)(2)I-2 are much longer than the others, probably caused by the steric hindrance of the two very bulky ligands located in cis positions. (C) 2004 Elsevier B.V. All rights reserved.
机译:顺式和反式Pt(胺)(2)I-2类型的配合物是通过光谱方法研究的,尤其是通过多核NMR光谱法研究的。在Pt-195 NMR中,在丙酮中观察到具有伯胺的顺式二碘代化合物在-3342和-3357 ppm之间,而在-3336和-3372 ppm之间发现了反式化合物。对于仲胺,在较低的电场下观察到化学位移。在H-1 NMR中,在比顺式化合物更高的电场下观察到反式配合物,而在C-13 NMR中,观察到相反的结果。顺式化合物(分别为67和45 Hz)的(2)J(Pt-195(-1)H)和(3)J(Pt-195-H-1)耦合常数比顺式化合物大反式异构体(分别为59和38 Hz)。在C-13 NMR中,还发现顺式配合物的(2)J(Pt-195-C-13)和(3)J(Pt-195-C-13)值较大(第17版)和39 Hz以及11和28 Hz)。质子化胺的pK(a)值或气相中的质子亲和力似乎与δ(Pt)化学位移有轻微的相关性。确定了八种二碘配合物的晶体结构。这些化合物是顺式-Pt(CH3NH2)(2)I-2,顺式-Pt(n-C4H9NH2)(2)I-2,顺式-Pt(Et2NH)(2)I-2,反式-Pt(nC( 3)H(7)NH(2))(2)I-2,反式Pt(iso-C3H7NH2)(2)I-2,反式Pt(nC(4)HqNH(2))(2)I -2,反式Pt(tC(4)HqNH(2))(2)I-2和反式Pt(Me2NH)(2)I-2。将与碘配体反位的Pt-N键距离与与胺反位的Pt-N键距离进行比较。顺式-Pt(Et2NH)(2)I-2中的Pt-N键比其他键长得多,这可能是由于位于顺式位置的两个非常大的配体的空间位阻所致。 (C)2004 Elsevier B.V.保留所有权利。

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