Bokach Nadezhda A, Kuznetsova Tatyana V, Simanova Svetlana A, Haukka Matti, Pombeiro Armando J L, Kukushkin Vadim Yu
St. Petersburg State University, 198504 Stary Petergof, Russian Federation.
Inorg Chem. 2005 Jul 11;44(14):5152-60. doi: 10.1021/ic050037q.
Treatment of trans-[PtCl4(RCN)2] (R = Me, Et, Ph, NEt2) with 2 equiv of the amidine PhC(=NH)NHPh in a suspension of MeCN (R = Me), CHCl3 (R = Et, Ph), or in CHCl3 solution (R = NEt2) results in the formation of the imidoylamidine complexes trans-[PtCl4{NH=C(R)N=C(Ph)NHPh}2] (1-4) isolated in good yields (66-84%). The reaction of soluble complexes 3 and 4 with 2 equiv of Ph3P=CHCO2Me in CH2Cl2 (40 degrees C, 5 h) leads to dehydrochlorination resulting in a chelate ring closure to furnish the platinum(IV) chelates [PtCl2{NH=C(R)NC(Ph)=NPh}2] (R = Ph, 5; R = NEt2, 6), accordingly, and the phosphonium salt [Ph3PCH2CO2Me]Cl. Treatment of 5 with 3 equiv of Ph3P=CHCO2Me at 50 degrees C for 5 d resulted in only a 30% conversion to the corresponding Pt(II) complex [Pt{NH=C(NEt2)NC(Ph)=NPh}2] (15). The reduction can be achieved within several minutes, when Ph2PCH2CH2PPh2 in CDCl3 is used. When the platinum(II) complex trans-[PtCl2(RCN)2] is reacted with 2 equiv of the amidine, the imidoylamidinato complexes [PtCl(RCN){NH=C(R)NC(Ph)=NHPh}] (8-11) and [PhC(=NH)NHPh] x HCl (7) are formed. The reaction of trans-[PtCl2(RCN)2] with 4 equiv of the amidine under a prolonged reaction time or treatment of [PtCl(RCN){NH=C(R)NC(Ph)=NHPh}] (8-11) with 2 more equiv of the amidine yields the complex bearing two chelate rings [Pt{NH=C(R)NC(Ph)=NHPh}2] (12-15). The treatment of cis-[PtCl2(RCN)2] (R = Me, Et) with the amidine gives ca. 50-60% yield of [PtCl2{NH=C(R)NHC(Ph)=NHPh}] (16 and 17). All of the platinum compounds were characterized by elemental analyses; FAB mass spectrometry; IR spectroscopy; 1H, 13C{1H}, and 195Pt NMR spectroscopies, and four of them (4, 6, 8, and 15) were also characterized by X-ray crystallography. The coupling of the Pt-bound nitriles and the amidine is metal-mediated insofar as RCN and PhC(=NH)NHPh do not react in the absence of the metal centers in conditions more drastic than those of the observed reactions. The nitrile-amidine coupling reported in this work constitutes a route to the synthesis of imidoylamidine complexes, some of them exhibiting luminescent properties.
在乙腈(R = Me)、氯仿(R = Et、Ph)悬浮液或氯仿溶液(R = NEt2)中,用2当量的脒PhC(=NH)NHPh处理反式-[PtCl4(RCN)2](R = Me、Et、Ph、NEt2),会生成亚氨基脒配合物反式-[PtCl4{NH=C(R)N=C(Ph)NHPh}2](1 - 4),产率良好(66 - 84%)。可溶性配合物3和4与2当量的Ph3P=CHCO2Me在二氯甲烷中(40℃,5小时)反应会导致脱氯化氢,从而形成螯合环,相应地生成铂(IV)螯合物[PtCl2{NH=C(R)NC(Ph)=NPh}2](R = Ph,5;R = NEt2,6)以及鏻盐[Ph3PCH2CO2Me]Cl。在50℃下用3当量的Ph3P=CHCO2Me处理5达5天,仅30%转化为相应地铂(II)配合物[Pt{NH=C(NEt2)NC(Ph)=NPh}2](15)。当在氘代氯仿中使用二苯基膦基乙烷时,还原反应可在几分钟内完成。当铂(II)配合物反式-[PtCl2(RCN)2]与2当量的脒反应时,会形成亚氨基脒基配合物[PtCl(RCN){NH=C(R)NC(Ph)=NHPh}](8 - 11)和[PhC(=NH)NHPh]·HCl(7)。在延长反应时间的情况下,反式-[PtCl2(RCN)2]与4当量的脒反应,或者用2当量更多的脒处理[PtCl(RCN){NH=C(R)NC(Ph)=NHPh}](8 - 11),会生成带有两个螯合环的配合物[Pt{NH=C(R)NC(Ph)=NHPh}2](12 - 15)。用脒处理顺式-[PtCl2(RCN)2](R = Me、Et),得到[PtCl2{NH=C(R)NHC(Ph)=NHPh}](16和17)的产率约为50 - 60%。所有铂化合物均通过元素分析、快原子轰击质谱、红外光谱、1H、13C{1H}和195Pt核磁共振光谱进行表征,其中四种(4、6、8和15)还通过X射线晶体学进行了表征。铂键合的腈与脒的偶联是由金属介导的,因为在比观察到的反应条件更剧烈的情况下,RCN和PhC(=NH)NHPh在没有金属中心时不发生反应。本工作中报道的腈 - 脒偶联构成了合成亚氨基脒配合物的一条途径,其中一些具有发光性质。