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[PtI2(dppm)] | 64040-32-0

中文名称
——
中文别名
——
英文名称
[PtI2(dppm)]
英文别名
{Pt(dppm)I2};[PtI2(bis(diphenylphosphino)methane)];cis-diiodo[1,1'-methylenebis[1,1-diphenylphosphine-κP]]platinum;Pt(κ2-PPh2CH2PPh2)I2;cis-[PtI2(1,1'-(methylene-1,3-diyl)bis[1,1-diphenylphosphine])];cis-[PtI2(1,3-bis(diphenylphosphino)methane)];diphenylphosphanylmethyl(diphenyl)phosphane;platinum(2+);diiodide
[PtI2(dppm)]化学式
CAS
64040-32-0
化学式
C25H22I2P2Pt
mdl
——
分子量
833.286
InChiKey
PTQZPEUGULEJPU-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

计算性质

  • 辛醇/水分配系数(LogP):
    -0.78
  • 重原子数:
    30
  • 可旋转键数:
    4
  • 环数:
    4.0
  • sp3杂化的碳原子比例:
    0.04
  • 拓扑面积:
    0
  • 氢给体数:
    0
  • 氢受体数:
    2

反应信息

  • 作为反应物:
    描述:
    [PtI2(dppm)]lithium hexamethyldisilazane碘甲烷 作用下, 以 四氢呋喃 为溶剂, 以72%的产率得到
    参考文献:
    名称:
    Deprotonation and C-alkylation of Ph2PCH2PPh2-derivatives of chromium(0), molybdenum(0), tungsten(0), platinum(II) and palladium(II)
    摘要:
    DOI:
    10.1016/s0020-1693(00)81432-2
  • 作为产物:
    描述:
    (bis(diphenylphosphino)methane)(oxalato)platinum(II)碘苯 作用下, 以 not given 为溶剂, 生成 [PtI2(dppm)]
    参考文献:
    名称:
    草酸二膦铂(II)配合物的光化学反应
    摘要:
    在[Pt(C 2 O 4)(dppe)]的CH 3 CN / C 6 H 6或PhCN溶液中于254 nm照射产生2当量。的CO 2,并在PhCl或PhI的存在下产生[PtX 2(dppe)](X = Cl,I)。使用CO或PhCCPh时,产物为[Pt(CO)2(dppe)]或[Pt(PhCPh)(dppe)],但在后者的情况下,延长的光解产率为[PtPh(CCPh)(dppe) ]。在H 2存在下进行光解得到[Pt 2 H 3(dppe)2 ] +和[Pt 3 H 3(dppe)3 ] +的混合物阳离子。如在甲醇存在下光解[Pt(C 2 O 4)(dppe)]时形成[pt(CO 2 Me)2(dppe)] ,这说明在所有情况下都不会简单地消除CO 2。 。还描述了相关配合物[Pt(C 2 O 4)L 2 ](L 2 dppm,dcpe)的光化学反应。
    DOI:
    10.1016/0022-328x(92)83310-e
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文献信息

  • Tin(II) Halide Insertion or Halogen Exchange in the Reactions of Dihaloplatinum(II) Complexes with Tin(II) Halide
    作者:Badri Z. Momeni、Hoori Kazmi、Atefeh Najafi
    DOI:10.1002/hlca.201100045
    日期:2011.9
    in equilibrium with the starting complex cis‐[PtBr2(dppm)]. Moreover, the reaction of cis‐[PtCl2(dppb)] with a mixture SnCl2/SnI2 in a 2 : 1 mol ratio resulted in the formation of cis‐[PtI2(dppb)] as a consequence of the selective halogenexchange reaction. 31P‐NMR Data for all complexes are reported, and a correlation between the chemical shifts and the coupling constants was established for mono‐
    SnCl 2与配合物顺式-[PtCl 2(P 2)](P 2 = dppf(1,1'-双(二苯基膦基二茂铁),dppp(1,3-双(二苯基膦基丙烷= 1,1 ′-(丙烷-1,3-二基)双[1,1-二苯基膦]),dppb(1,4-双(二苯基膦基丁烷= 1,1'-(丁烷-1,4-二苯基)双[1 ,1-二苯基膦])和dpppe(1,5-双(二苯基膦基戊烷= 1,1'-(戊烷-1,5-二基)双[1,1-二苯基膦]))导致SnCl的插入2进入PtCl键,得到顺式[[PtCl(SnCl 3)(P 2)]配合物。但是,配合物顺式[PtCl 2(P2)](P 2 = dppf,dppm(双(二苯基膦基甲烷= 1,1'-亚甲基双[1,1-二苯基膦]),dppe(1,2-双(二苯基膦基乙烷= 1,1'-(乙烷1,2-二基)双[1,1-二苯基膦]),dppp,dppb和dpppe; P = Ph 3
  • Reactivity of [Pt(CH<sub>2</sub>X)<sub>2</sub>(Ph<sub>2</sub>PCH<sub>2</sub>PPh<sub>2</sub>-PP′)](X = Cl, Br, or I): four- to five-membered ring expansions. Crystal structure of [bis(diphenylphosphino)-methane-PP′]bis(chloromethyl)platinum(<scp>II</scp>)
    作者:Nathaniel W. Alcock、Paul G. Pringle、Paola Bergamini、Silvana Sostero、Orazio Traverso
    DOI:10.1039/dt9900001553
    日期:——
    CH2N2 to the chelates [PtX2(dppm-PP′)](X = Cl, Br, or I; dppm = Ph2PCH2PPh2) gives the complexes [Pt(CH2X)2(dppm-PP′)](2a)–(2c) which have been fully characterised. The X-ray crystal structure of [Pt(CH2Cl)2(dppm-PP′)](2a) has been determined in confirmation of its chemical identity (orthorhombic, space group Pbca, R= 0.053 for 2 499 observed reflections [I/σ(I) 2.0]. Addition of HCl to complex (2a)
    将CH 2 N 2添加到螯合物[ PtX 2(dppm- PP ')](X = Cl,Br或I; dppm = Ph 2 PCH 2 PPh 2)得到配合物[Pt(CH 2 X)2( dppm- PP ')](2a)–(2c)已被充分表征。已确定[Pt(CH 2 Cl)2(dppm- PP ')](2a)的X射线晶体结构以确认其化学同一性(正交晶系,空间群Pbca,对于2499次观察到的反射,R = 0.053 [我/σ(我)2.0]。向配合物(2a)中加入HCl,得到[PtCl(CH 2 Cl)(dppm- PP ')](3)。用膦或吡啶处理(2a)导致扩环反应,得到[PtL(CH 2 Cl)(CH 2 PPh 2 CH 2 PPh 2)] Cl [L =吡啶(4a),PPh 3(4b) ,或PPh 2 H(4c)]。dppm(2a)给出双螯合物[Pt(CH 2 PPh 2 CH 2 PPh2)
  • Bismuth–Halide Oxidative Addition and Bismuth–Carbon Reductive Elimination in Platinum Complexes Containing Chelating Diphosphine Ligands
    作者:S. Masoud Nabavizadeh、Fatemeh Niroomand Hosseini、Negar Nejabat、Zahra Parsa
    DOI:10.1021/ic4018745
    日期:2013.12.2
    (1a, P–P = dppm; 1b, P–P = dppe), occurs easily to yield a mixture of platinum(II) complexes [PtMeX(P–P)], 2, and [PtX2(P–P)], 3, and the binuclear complex [Pt2Me2(μ-X)(μ-dppm)2]X, 4. On the basis of 31P NMR and UV–vis spectroscopy, a mechanism is proposed in which the rate determining step is conversion of the yellowish Pt(II)-BiX3 adduct BiI3·[PtMe2(dppm)], A, into the Pt(IV)–Bi(III) intermediate
    BiX 3(X = Cl,Br,I)与[PtMe 2(P–P)](1a,P–P = dppm; 1b,P–P = dppe)的反应容易发生,从而生成的混合物(II)络合物[PtMeX(P–P)],2和[PtX 2(P–P)],3和双核络合物[Pt 2 Me 2(μ-X)(μ-dppm)2 ] X ,4。基于31 P NMR和紫外可见光谱,提出了一种机制,其中速率确定步骤是微黄色的Pt(II)-BiX 3加合物BiI 3 ·[PtMe 2(dppm)],A,进入Pt(IV)–Bi(III)中间体[PtMe 2(BiX 2)X(P–P)],IM1。密度泛函理论(DFT)研究表明,中间体IM1可能在丙酮溶液中形成,该丙酮溶液在形成配合物2和3之前要经过Bi-C还原消除过程。中间体IM1的结构在理论上使用DFT计算确定。在稀丙酮溶液中,通过紫外-可见光谱监测,氧化加成过程遵循一级动力学。对于较重的卤化物,总体反应较慢。
  • Bis[bis(diphenylphosphino)methane]platinum(II) salts: evidence for the formation of a five-co-ordinate bis[bis(diphenylphosphino)methane]-halogenoplatinum(II) cation
    作者:Martin C. Grossel、Roger P. Moulding、Kenneth R. Seddon、Fiona J. Walker
    DOI:10.1039/dt9870000705
    日期:——
    The salts [Pt(dppm)2]X2(X = Cl, Br, I, PF6 or BPh4; dppm = Ph2PCH2PPh2) have been studied in solution by 1H, 31P, and 195Pt n.m.r. spectroscopy and by conductivity measurements. The halide salts are believed to form the five-co-ordinate cation [Pt(dppm)2X]+ in solution.
    盐[Pt(dppm)2 ] X 2(X = Cl,Br,I,PF 6或BPh 4; dppm = Ph 2 PCH 2 PPh 2)已在溶液中以1 H,31 P和195 Pt进行了研究。核磁共振光谱和电导率测量。据信卤化物盐在溶液中形成五配位阳离子[Pt(dppm)2 X] +。
  • Diastereoselective carbene insertions into platinum-halogen bonds. Crystal structure of [PtCl(R-CHClCO2Et)(R,R-diop)]
    作者:Paola Bergamini、Emiliana Costa、Silvana Sostero、A. Guy Orpen、Paul G. Pringle
    DOI:10.1021/om00059a062
    日期:1992.11
    Ethyl diazoacetate reacts with [PtX2L2] [X = Cl, Br, 1; L2 = 1,5-cyclooctadiene (cod), 2 PPh3, Ph2P-(CH2)nPPh2, n = 1 (dppm), 2 (dppe), 3 (dppp), 4 (dppb)] to give the corresponding [PtX(CHXCO2Et)L2] as a racemic mixture in high yields. The cod ligands in [PtX(CHXCO2Et)(cod)] are readily displaced by PPh3 or diphosphines. When optically active complexes [PtX2L*] (X = Cl, I; L* = R,R-diop, S,S-chiraphos, S,S-skewphos) were treated with ethyl diazoacetate, the products (PtX(CHXCO2Et)L*] were mixtures of diastereoisomers in different proportions. The major diastereoisomer of [PtCl(CHClCO2Et)(R,R-diop)] was readily separated by fractional crystallization, and its crystal structure revealed that the configuration at the alpha-carbon was R. This compound is configurationally stable for at least 14 d in CDCl3 solution as shown by P-31 NMR spectroscopy. Treatment of pure [PtCl(CHClCO2Et)(R,R-diop)] with S,S-skewphos led to exchange of diphosphines and thereby the assignment of the S configuration at the alpha-carbon of the major product of the reaction of [PtCl2(S,S-skewphos)] with ethyl diazoacetate. With the aim of optimizing the diastereoselectivity of the insertion reaction, the chiral diazo ester N2CHCO2R (R = R,R-menthyl) was used as the reagent but it was found that the diastereoselectivities were similar to those with N2CHCO2Et. The highest diastereoselectivities (up to 7:1) were obtained with N2CHCOPh.
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