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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Synthesis of palladium(II) complexes containing a new alpha-D-xylofuranose-modified diphosphine and their application as catalyst precursors in the co- and terpolymerization of CO-ethene and propene
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Synthesis of palladium(II) complexes containing a new alpha-D-xylofuranose-modified diphosphine and their application as catalyst precursors in the co- and terpolymerization of CO-ethene and propene

机译:含有新的α-D-木呋喃糖改性的二膦的钯(II)配合物的合成及其在CO-乙烯和丙烯共聚和三元聚合中作为催化剂前体的应用

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The diphosphine 3,5-dideoxy-1,2-O-isopropylidene-3,5-bis(di(2-methoxyphenyl)phosphanyl)-alpha-D-xylofuranose (o-MeO-xylophos), which differs from the known 3,5-dideoxy-1,2-O-isopropylidene-3,5-bis(diphenyl phosphanyl)-alpha-D-xylofuranose (xylophos) by the presence of 2-methoxy substituents on the P-aryl rings, has been synthesized and characterized. These two ligands have been employed to stabilize the Pd-11 complexes [PdCl2(o-MeO-xylophos)] (1a), [PdCl2(xylophos)] (2a), [PdClMe(o-MeO-xylophos)] (1b), [PdClMe(xylophos)] (2b), [Pd(OTs)(H2O)(o-MeO-xylophos)](OTs) (1c) and [Pd(OTs)(H2O)(xylophos)](OTs) (2c). All complexes have been characterized by multinuclear-NMR spectroscopy. The solid-state structure of la has been determined by a single crystal X-ray analysis. The Pd-aqua complexes 1c and 2c have been employed to catalyse the CO-ethene and CO-propene copolymerization as well as the CO-ethene-propene terpolymerization reaction in MeOH. The catalytic activity and the molecular weight of the polyketones have been compared to those of the products obtained with analogous catalysts, [Pd(H2O)2(o-MeO-dppp)](OTs)(2) (3c) and [Pd(H2O)(OTs)(dppp)](OTs) (4c), bearing the classical 1,3-bis(diphenylphoshino)propane ligand (dppp). Under comparable catalytic conditions, all catalysts produce structurally similar polymeric materials, with le yielding the largest propene incorporation as well as the highest productivity of low-molecular-weight terpolymers.
机译:二膦3,5-二脱氧-1,2-O-异亚丙基-3,5-双(二(2-甲氧基苯基)膦基)-α-D-木呋喃糖(o-MeO-木糖)与已知的3通过在P-芳基环上存在2-甲氧基取代基,合成了5-5-二脱氧-1,2-O-异亚丙基-3,5-双(二苯基膦基)-α-D-木呋喃糖(xylophos),并表征。这两个配体已用于稳定Pd-11复合物[PdCl2(o-MeO-xylophos)](1a),[PdCl2(xylophos)](2a),[PdClMe(o-MeO-xylophos)](1b) ,[PdClMe(xylophos)](2b),[Pd(OTs)(H2O)(o-MeO-xylophos)](OTs)(1c)和[Pd(OTs)(H2O)(xylophos)](OTs)( 2c)。所有配合物均已通过多核NMR光谱进行了表征。通过单晶X射线分析确定了1a的固态结构。 Pd-水配合物1c和2c已被用于催化在MeOH中的CO-乙烯和CO-丙烯共聚以及CO-乙烯-丙烯三元聚合反应。已将聚酮的催化活性和分子量与使用类似催化剂[Pd(H2O)2(o-MeO-dppp)](OTs)(2)(3c)和[Pd( H2O)(OTs)(dppp)](OTs)(4c),带有经典的1,3-双(二苯基膦基)丙烷配体(dppp)。在可比的催化条件下,所有催化剂都生产出结构相似的聚合物材料,其中丙烯的掺入量最大,而低分子量三元共聚物的产率最高。

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