首页> 外文期刊>Journal of the Chemical Society, Dalton Transactions. Inorganic Chemistry >Cationic methylpalladium(II) complexes containing bidentate N-O ligands as catalysts for the copolymerisation of CO and ethylene. Identification and isolation of intermediates from the stepwise insertion reactions, and subsequent detailed mechanistic
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Cationic methylpalladium(II) complexes containing bidentate N-O ligands as catalysts for the copolymerisation of CO and ethylene. Identification and isolation of intermediates from the stepwise insertion reactions, and subsequent detailed mechanistic

机译:含有二齿N-O配体的阳离子甲基钯(II)配合物,作为CO和乙烯共聚的催化剂。从逐步插入反应中鉴定和分离中间体,以及随后的详细机理

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A series of cationic methylpalladium(II) complexes containing bidentate N-O ligands, of the general formula [PdMe(N-O)L]BF4 (N-O = methyl picolinate, methyl 6-methylpicolinate, N,N-diisopropylpicolinamide, 6-methyl-N,N-diisopropylpicolinamide; L = PPh3 or PCy3) have been prepared and characterised. The solid-state structure of [PdMe(N-O)(PPh3)]BF4 (N-O = N,N-diisopropylpicolinamide), in comparison with that for the complex with N-O = methyl picolinate, indicates a significant lengthening of the Pd-P bond [Delta(Pd-P) = 0.018(3) Angstrom] possibly due to the presence of the more strongly co-ordinating N-O ligand. Complexes with L = PPh, were found to be active for the copolymerisation of CO and ethylene to give polyketone. The complexes [PdMe(N-O)(PPh3)]BF4 (N-O = methyl 6-methylpicolinate or diisopropylpicolinamide) have the highest catalytic activities (80 g polymer per g Pd per hour and 58 g polymer per g Pd per hour respectively, at 20 degrees C). Examples of the complexes form simple acyl complexes when treated with CO at room temperature and pressure and the spectroscopic data of the resulting acetyl complexes are reported. The stepwise migratory insertion of CO and ethylene into the complex [PdMe(N-O)(PPh3)]BF4 (N-O = methyl picolinate) has been carefully monitored and the individual insertion products have been characterised. Insertion of ethylene into the Pd-acyl bond of [Pd(COMe)(N-O)(PPh3)]BF4 (N-O = methyl picolinate) affords one of the first examples of an isolable product from insertion of an unstrained alkene into a Pd-acyl bond. A detailed mechanism for the co-reaction of CO and ethylene catalysed by complexes containing chelate ligands with distinct donor groups is discussed and an explanation of the observed reaction behaviour provided. The proposed mechanism represents one of the most comprehensive interpretations of this important reaction. [References: 39]
机译:一系列含有双齿NO配体的阳离子甲基钯(II)配合物,通式为[PdMe(NO)L] BF4(NO =吡啶甲酸甲酯,6-甲基吡啶甲酸甲酯,N,N-二异丙基吡啶甲酸酰胺,6-甲基-N,N -二异丙基吡啶甲酸酰胺; L = PPh 3或PCy 3)已经制备并表征。 [PdMe(NO)(PPh3)] BF4的固态结构(NO = N,N-二异丙基吡啶甲酸酰胺)与NO =吡啶甲酸甲酯配合物的固态结构相比,表明Pd-P键显着延长[ Delta(Pd-P)= 0.018(3)埃],可能是由于存在更强配位的NO配体。发现具有L = PPh的配合物对于CO和乙烯的共聚以产生聚酮具有活性。络合物[PdMe(NO)(PPh3)] BF4(NO = 6-甲基吡啶甲酸甲酯或二异丙基吡啶甲酸酰胺)具有最高的催化活性(在20度下,每克Pd每小时80克聚合物,每小时每克Pd 58克聚合物) C)。当在室温和压力下用CO处理时,络合物的实例形成简单的酰基络合物,并报道了所得乙酰基络合物的光谱数据。仔细监测了将CO和乙烯逐步迁移到复合物[PdMe(N-O)(PPh3)] BF4(N-O =吡啶甲酸甲酯)中的情况,并对各个插入产物进行了表征。将乙烯插入[Pd(COMe)(NO)(PPh3)] BF4(NO =吡啶甲酸甲酯)的Pd-酰基键中提供了可分离产物的第一个实例,该实例是将未应变的烯烃插入Pd-酰基键。讨论了由包含具有不同供体基团的螯合配体的配合物催化的CO和乙烯共反应的详细机理,并提供了观察到的反应行为的解释。提出的机制代表了这一重要反应的最全面的解释之一。 [参考:39]

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