首页> 外文期刊>Journal of the Chemical Society, Dalton Transactions. Inorganic Chemistry >Synthesis and characterization of palladium(II) complexes with the alpha-stabilized phosphoylide ligand Ph3P = C(H)CONMe2
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Synthesis and characterization of palladium(II) complexes with the alpha-stabilized phosphoylide ligand Ph3P = C(H)CONMe2

机译:具有α稳定的磷化物配体Ph3P = C(H)CONMe2的钯(II)配合物的合成和表征

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The reactivity of the ylide Ph3P=C(H)CONMe2 towards different palladium(II) complexes has been explored. Reaction with the cationic solvated complexes [Pd(dmba)(NCMe)(2)]A, [Pd(R-dmphea)(NCMe)(2)]A and [Pd(dmba)(py)(thf)]A (dmba = C6H4CH2NMe2-2; R-dmphea = R-C6H4CHMeNMe2-2; py = pyridine; A = ClO4-) resulted in the formation of [Pd(dmba)(OH2){CH(CONMe2)(PPh3)}]A 1, [Pd(R-dmphea)(OH2){CH(CONMe2)(PPh3)}]A 2, and [Pd(dmba)(py){CH(CONMe2)(PPh3)}]A 3 respectively, in which the ylide is co-ordinated through its carbon atom, and trans to the NMe2 group. The nucleophilic character of the ylidic carbon atom promotes cleavage of the halide bridging systems of the dinuclear precursors [{Pd(mu-Br)(eta(3)-C3H5)}(2)], [{Pd(mu-Cl)(C-P)}(2)], [{Pd(mu-Cl)(C6F5)(tht)}(2)], [{Pd(mu-Cl)(dmba)}(2)], [{Pd(mu-Cl)(R-dmphea)}(2)], [{Pd(mu-Cl)[C6H2(OMe)(2)-4,5-CH=NCH2Ph-2]}(2)] and [{Pd(mu-Cl)Cl(PPh3)}(2)] (C-P = o-(di-o-tolylphosphino)benzyl; tht = tetrahydrothiophene), giving neutral mononuclear derivatives in which the ylide is selectively C-co-ordinated [PdBr(eta(3)-C3H5)-{CH(CONMe2)(PPh3)}] 4, [PdCl(C-P){CH(CONMe2)(PPh3)}] 5, [PdCl(C6F5)(tht){CH(CONMe2)(PPh3)}] 6, [PdCl(dmba){CH(CONMe2)(PPh3)}] 7, [PdCl(R-dmphea){CH(CONMe2)(PPh3)}] 8, [PdCl{C6H2(OMe)(2)-4,5-CH=NCH2Ph-2}{CH(CONMe2)(PPh3)}] 9 and [PdCl2(PPh3){CH(CONMe2)(PPh3)}] 10. Complexes with the ylide co-ordinated through the heteroatom (oxygen or nitrogen) were not found. This selective C-co-ordination is discussed in terms of electronic and steric factors. [References: 37]
机译:已探讨了叶立德Ph3P = C(H)CONMe2对不同钯(II)配合物的反应性。与阳离子溶剂化物[Pd(dmba)(NCMe)(2)] A,[Pd(R-dmphea)(NCMe)(2)] A和[Pd(dmba)(py)(thf)] A的反应dmba = C6H4CH2NMe2-2; R-dmphea = R-C6H4CHMeNMe2-2; py =吡啶; A = ClO4-)导致形成[Pd(dmba)(OH2){CH(CONMe2)(PPh3)}] A 1 ,[Pd(R-dmphea)(OH2){CH(CONMe2)(PPh3)}] A 2和[Pd(dmba)(py){CH(CONMe2)(PPh3)}] A 3,其中ylide通过其碳原子配位,并反过来为NMe2基团。碘碳原子的亲核特性促进双核前体[{Pd(mu-Br)(eta(3)-C3H5)}(2),[{Pd(mu-Cl)( CP)}(2)],[{Pd(mu-Cl)(C6F5)(tht)}(2)],[{Pd(mu-Cl)(dmba)}(2)],[{Pd(mu -Cl)(R-dmphea)}(2)],[{Pd(mu-Cl)[C6H2(OMe)(2)-4,5-CH = NCH2Ph-2]}(2)]和[{Pd (mu-Cl)Cl(PPh3)}(2)](CP =邻-(二-邻甲苯基膦基)苄基; tht =四氢噻吩),得到中性单核衍生物,其中叶立德选择性地C配位[PdBr (eta(3)-C3H5)-{CH(CONMe2)(PPh3)}] 4,[PdCl(CP){CH(CONMe2)(PPh3)}] 5,[PdCl(C6F5)(tht){CH(CONMe2 )(PPh3)}] 6,[PdCl(dmba){CH(CONMe2)(PPh3)}] 7,[PdCl(R-dmphea){CH(CONMe2)(PPh3)}] 8,[PdCl {C6H2(OMe) )(2)-4,5-CH = NCH2Ph-2} {CH(CONMe2)(PPh3)}] 9和[PdCl2(PPh3){CH(CONMe2)(PPh3)}] 10.与叶立德共轭的配合物找不到通过杂原子排列的(氧或氮)。根据电子和空间因素讨论了这种选择性的C配位。 [参考:37]

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