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W(O)Cl2(PMePh2)2(propylene) | 102307-87-9

中文名称
——
中文别名
——
英文名称
W(O)Cl2(PMePh2)2(propylene)
英文别名
——
W(O)Cl2(PMePh2)2(propylene)化学式
CAS
102307-87-9
化学式
C29H32Cl2OP2W
mdl
——
分子量
713.276
InChiKey
FJLMFLHNPZHBKD-UHFFFAOYSA-L
BEILSTEIN
——
EINECS
——
  • 物化性质
  • 计算性质
  • ADMET
  • 安全信息
  • SDS
  • 制备方法与用途
  • 上下游信息
  • 反应信息
  • 文献信息
  • 表征谱图
  • 同类化合物
  • 相关功能分类
  • 相关结构分类

反应信息

  • 作为产物:
    描述:
    三聚丙烯 以 not given 为溶剂, 以50-75的产率得到W(O)Cl2(PMePh2)2(propylene)
    参考文献:
    名称:
    Synthesis and characterization of high-valent oxo olefin and oxo carbonyl complexes. Crystal and molecular structure of W(O)Cl2(CH2:CH2)(PMePh2)2
    摘要:
    DOI:
    10.1021/ja00272a081
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文献信息

  • Tungsten complexes with strong π-donor and π-acceptor ligands: W(E)Cl2(L)(PR3)2 (E = O, NR, S, and L = CO, CNR, CH2CHR and OCHMe)
    作者:Fu-Min Su、Jeffrey C. Bryan、Soonhee Jang、James M. Mayer
    DOI:10.1016/s0277-5387(00)86523-7
    日期:1989.1
    of a series of tungsten complexes, W(E)Cl2(L)(PR3)2, containing both a π-donor group (E = oxo, imido, or sulphido) and a π-acceptor ligand (L = CO, CNtBu, CH2CHR, OCHMe) is reported (PR3 = PMe3, PMePh2). The compounds are prepared by substitution of a phosphine ligand in W(E)Cl2(PR3)3 by L and by oxidative addition of heterocumulenes EL, epoxides or episulphides to WCl2(PMePh2)4. All of the compounds
    摘要一系列配合物W(E)Cl2(L)(PR3)2的合成与表征,该配合物既包含π供体基团(E =氧代,亚基或代),又包含π受体配体(L =报告了CO,CNtBu,CH2 = CHR,O = CHMe(PR3 = PMe3,PMePh2)。这些化合物是通过用L取代W(E)Cl2(PR3)3中的膦配体,以及通过向WCl2(PMePh2)4氧化杂杂烯酮EL,环氧化物或环硫化物而制备的。根据光谱数据和氧代羰基(4),氧代乙烯(7)和亚基羰基(25)的光谱数据和X射线晶体结构,所有化合物均具有带有π供体和π受体顺式的八面体结构。 )复合体。乙烯配体的取向垂直于-氧,-氮或-的多键,并且通过NMR是非通量的。这些几何特征是d2属中心的电子结构的直接结果。乙醛的二价配位显示了(IV)-氧代中心的基本π碱度。CO拉伸频率表明供体能力的顺序为:氧代
  • Deoxygenative coupling of ketones and alkenes by tungsten(II) compounds
    作者:Jeffrey C. Bryan、Jeffrey B. Arterburn、Gerald K. Cook、James M. Mayer
    DOI:10.1021/om00060a010
    日期:1992.12
    Tungsten(II) compounds such as WCl2(PMePh2)4 (1) react with acetone and ethylene tro give a good yield of the tungsten(IV)-oxo complexes W(O)(CH2=CH2)Cl2(PMePh2)2 (4) and a moderate amount of 3-methyl-1-butene. Cyclopentanone and ethylene plus 1 yield 4 and vinylcyclopentane; methyl vinyl ketone and ethylene give 4 and 3-methyl- 1,4-pentadiene. The react ion of cyclopentanone and propylene with 1 yields a small amount of 2-cyclopentylpropene. Intramolecular deoxygenative coupling occurs with 6- and 7-en-2-ones to form 1-methyl-2-methylene-substituted cyclopentyl and cyclohexyl ring systems, respectively. The net result of these reactions is transfer of the ketone oxygen atom to tungsten, accompanied with its replacement by a hydrogen and a vinyl group. The suggested mechanism for this deoxygenative coupling (Scheme I) is coordination of both the ketone and ethylene to tungsten, coupling to form a 2-oxametal-lacyclopentane, beta-hydrogen elimination to an allyloxy hydride species, C-0 bond cleavage to an oxo allyl hydride complex, and reductive elimination of alkene. Consistent with the suggestion of an oxametallacycle, hydrolysis of the reaction mixture of 1 and 6-hepten-2-one provides stereospecifically trans-1,2-di-methylcyclopentanol. The enones methyl vinyl ketone and 5-hexen-2-one react with 1 to form stable complexes in which the enone is bound in an eta4 fashion, similar to the proposed mixed alkene ketone intermediates in the coupling reactions. A related tungsten(II) butadiene complex, WCl2(CH2=CHCH=CH2)(PMePhl)2, has also been isolated.
  • Oxidative addition of carbon dioxide, epoxides, and related molecules to WCl2(PMePh2)4 yielding tungsten(IV) oxo, imido, and sulfido complexes. Crystal and molecular structure of W(O)Cl2(CO)(PMePh2)2
    作者:Jeffrey C. Bryan、Steven J. Geib、Arnold L. Rheingold、James M. Mayer
    DOI:10.1021/ja00243a047
    日期:1987.4
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