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Synthesis of Trimethylplatinum(IV) Complexes with N,N- and N,O-Heterocyclic Carbene Ligands and Their Reductive C-C Elimination Reactions

机译:N,N-和N,O-杂环碳原子配体的三甲基铂(IV)配合物的合成及其还原性C-C消除反应

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摘要

Reactions of the platinum(IV) complexes [PtMe_3(OCMe_2)_3](BF_4) (1(BF_4)), [(PtMe_3l)_4 (2), and [PtMe_3l(py)_2] (3) with the N,N-heterocyclic carbene 1,3-dimethylimidazol-2-ylidene (N,N-bc, 4) resulted in a rapid reductive elimination of ethane, yielding platinum(ll) complexes [PtMe(N,N-hc)_3]~+ (7), trans-[PtMel(N,N-hc)_2] (8), and cis-[PtMe(py)(N,N-hc)_2]~+ (10), respectively. Subsequent substitution of the iodo ligand in 8 by pyridine resulted in the formation of frans-[PtMe(py)(N,N-hc)_2](CF_3COO) (9(CF_3COO)). 9 and 10 are stereoisomers. In contrast to this, the analogous reaction of [PtMe_3(OCMe_2)_3](BF_4) (1(BF_4)) with the N,O-heterocyclic carbene 3-methyloxazol-2-ylidene (N,O-hc, 5) was found to yield the tris(car-bene)trimethylplatinum(IV) compound [PtMe_3(N,O-hc)_3](BF_4) (12(BF_4)), which is thermally stable up to 218℃ in the solid state. Furthermore, reactions of [{PtMe_3(acac)}_2] (15) with the N,X-heterocyclic carbenes (X = N, O, S; N,S-hc = 3-methylthiazol-2-ylidene, 6) resulted in the formation of monocarbenetrimethylplati-num(IV) complexes [PtMe_3(acac)(N,X-hc)] (X = N, 16; X = O, 17; X = S, 18), which were found to be stable against reductive C-C elimination at ambient temperature. Reactions of 16 and 17 with 2,2'-bipyridine (bpy) in the presence of stoichiometric amounts of H(BF_4) yielded cationic monocarbeneplatinum(iV) complexes, which were isolated as tetrafluoroborate salts [PtMe_3(bpy)(N,X-hc)](BF_4) (X = N, 19(BF_4); X = O, 20(BF_4)). The compounds have been fully characterized analytically and NMR spectroscopically, and for the bis(carbene)platinum(II) compound 9(CF_3COO) as well as the monocarbeneplatinum(IV) compounds 16 and 20(BF_4) by single-crystal X-ray diffraction analyses. DFT calculations of mono-, bis-, and tris(carbene)trimethylplatinum(IV) complexes and their propensity to reductive eliminate ethane were performed. In accordance with the experimental findings, a much higher stability of the tris(N,O-hc)-compared with the tris(N,N-hc)trimethylplatinum(IV) complexes against reductive ethane elimination was found, which could be ascribed mainly to a higher steric demand of the N,N-hc ligand.
机译:铂(IV)配合物[PtMe_3(OCMe_2)_3](BF_4)(1(BF_4)),[(PtMe_3l)_4(2)和[PtMe_3l(py)_2](3)与N,N的反应-杂环卡宾1,3-二甲基咪唑-2-亚烷基(N,N-bc,4)导致乙烷的快速还原消除,生成铂(II)络合物[PtMe(N,N-hc)_3]〜+( 7),反式-[PtMel(N,N-hc)_2](8)和顺式-[PtMe(py)(N,N-hc)_2] +(10)。随后用吡啶取代8中的碘配体导致形成frans- [PtMe(py)(N,N-hc)_2](CF_3COO)(9(CF_3COO))。 9和10是立体异构体。与此相反,[PtMe_3(OCMe_2)_3](BF_4)(1(BF_4))与N,O-杂环卡宾3-甲基恶唑-2-亚烷基(N,O-hc,5)的类似反应为发现可制得三(羰基)三甲基铂(IV)化合物[PtMe_3(N,O-hc)_3](BF_4)(12(BF_4)),固态时热稳定性高达218℃。此外,[{PtMe_3(acac)} _ 2](15)与N,X-杂环卡宾(X = N,O,S; N,S-hc = 3-甲基噻唑-2-亚烷基,6)的反应产生在单碳烯三甲基铂(IV)配合物[PtMe_3(acac)(N,X-hc)]的形成中(X = N,16; X = O,17; X = S,18)被发现是稳定的防止在环境温度下消除还原性CC。在化学计量的H(BF_4)存在下,16和17与2,2'-联吡啶(bpy)的反应产生阳离子单碳烯铂(iV)络合物,将其分离为四氟硼酸盐[PtMe_3(bpy)(N,X- hc)](BF_4)(X = N,19(BF_4); X = O,20(BF_4))。该化合物已通过分析和NMR光谱进行了全面表征,并且通过单晶X射线衍射对双(卡宾)铂(II)化合物9(CF_3COO)以及单卡铂(IV)化合物16和20(BF_4)进行了表征分析。进行了单,双和三(卡宾)三甲基铂(IV)配合物的DFT计算以及它们还原还原乙烷的倾向。根据实验结果,发现三(N,O-hc)配合物与三(N,N-hc)三甲基铂(IV)配合物在还原性乙烷消除方面具有更高的稳定性,这主要归因于对N,N-hc配体的空间需求更高。

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  • 来源
    《Journal of the American Chemical Society》 |2009年第25期|8861-8874|共14页
  • 作者单位

    Institut fuer Chemie-Anorganische Chemie, Martin-Luther-Universitaet, Kurt-Mothes-Strasse 2, D-06120 Halle, Germany;

    Institut fuer Chemie-Anorganische Chemie, Martin-Luther-Universitaet, Kurt-Mothes-Strasse 2, D-06120 Halle, Germany;

    Institut fuer Chemie-Anorganische Chemie, Martin-Luther-Universitaet, Kurt-Mothes-Strasse 2, D-06120 Halle, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 03:17:01

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