Pazderski Leszek, Tousek Jaromír, Sitkowski Jerzy, Kozerski Lech, Szłyk Edward
Faculty of Chemistry, Nicholas Copernicus University, Gagarina 7, PL-87100 Toruń, Poland.
Magn Reson Chem. 2007 Dec;45(12):1045-58. doi: 10.1002/mrc.2104.
1H, 13C and 15N NMR studies of platinide(II) (M=Pd, Pt) chloride complexes with methyl and phenyl derivatives of 2,2'-bipyridine and 1,10-phenanthroline [LL=4,4'-dimethyl-2,2'-bipyridine (dmbpy); 4,4'-diphenyl-2,2'-bipyridine (dpbpy); 4,7-dimethyl-1,10-phenanthroline (dmphen); 4,7-diphenyl-1,10-phenanthroline (dpphen)] having a general [M(LL)Cl2] formula were performed and the respective chemical shifts (delta1H, delta13C, delta15N) reported. 1H high-frequency coordination shifts (Delta1Hcoord=delta1Hcomplex-delta1Hligand) were discussed in relation to the changes of diamagnetic contribution in the relevant 1H shielding constants. The comparison to literature data for similar [M(LL)(XX)], [M(LL)X2] and [M(LL)XY] coordination or organometallic compounds containing various auxiliary ligands revealed a large dependence of delta1H parameters on inductive and anisotropic effects. 15N low-frequency coordination shifts (Delta15Ncoord=delta 15Ncomplex-delta15Nligand) of ca 88-96 ppm for M=Pd and ca 103-111 ppm for M=Pt were attributed to both the decrease of the absolute value of paramagnetic contribution and the increase of the diamagnetic term in the expression for 15N shielding constants. The absolute magnitude of Delta15Ncoord parameter increased by ca 15 ppm upon Pd(II)-->Pt(II) transition and by ca 6-7 ppm following dmbpy-->dmphen or dpbpy-->dpphen ligand replacement; variations between analogous complexes containing methyl and phenyl ligands (dmbpy vs dpbpy; dmphen vs dpphen) did not exceed+/-1.5 ppm. Experimental 1H, 13C, 15N NMR chemical shifts were compared to those quantum-chemically calculated by B3LYP/LanL2DZ+6-31G**//B3LYP/LanL2DZ+6-31G*, both in vacuo and in DMSO or DMF solution.
对通式为[M(LL)Cl₂]的铂系元素(II)(M = Pd、Pt)氯化物配合物与2,2'-联吡啶和1,10-菲咯啉的甲基及苯基衍生物[配体LL = 4,4'-二甲基-2,2'-联吡啶(dmbpy);4,4'-二苯基-2,2'-联吡啶(dpbpy);4,7-二甲基-1,10-菲咯啉(dmphen);4,7-二苯基-1,10-菲咯啉(dpphen)]进行了¹H、¹³C和¹⁵N核磁共振研究,并报告了各自的化学位移(δ¹H、δ¹³C、δ¹⁵N)。根据相关¹H屏蔽常数中抗磁贡献的变化,讨论了¹H高频配位位移(Δ¹Hcoord = δ¹H络合物 - δ¹H配体)。与含有各种辅助配体的类似[M(LL)(XX)]、[M(LL)X₂]和[M(LL)XY]配位或有机金属化合物的文献数据比较表明,δ¹H参数对诱导效应和各向异性效应有很大依赖性。对于M = Pd,¹⁵N低频配位位移(Δ¹⁵Ncoord = δ¹⁵N络合物 - δ¹⁵N配体)约为88 - 96 ppm,对于M = Pt约为103 - 111 ppm,这归因于¹⁵N屏蔽常数表达式中顺磁贡献绝对值的降低和抗磁项的增加。在从Pd(II)转变为Pt(II)以及dmbpy被dmphen或dpbpy被dpphen配体取代后,Δ¹⁵Ncoord参数的绝对值分别增加了约15 ppm和约6 - 7 ppm;含有甲基和苯基配体的类似配合物(dmbpy对dpbpy;dmphen对dpphen)之间的变化不超过±1.5 ppm。将实验测得的¹H、¹³C、¹⁵N核磁共振化学位移与在真空以及DMSO或DMF溶液中通过B3LYP/LanL2DZ + 6 - 31G**//B3LYP/LanL2DZ + 6 - 31G*进行量子化学计算得到的结果进行了比较。