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首页> 外文期刊>Journal of the Chemical Society, Dalton Transactions. Inorganic Chemistry >Nucleophilic behaviour of the neutral complexes [M(CP)-(S2CNMe2)] [M = Pd, Pt ; CP = CH2C6H4P(C6H4Me-o)(2)-kappa-C,P] towards Ag(I) and Au(I) compounds. Synthesis (M = Pd, Pt) and molecular structures (M = Pt) of polynuclear complexes containing M-Ag
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Nucleophilic behaviour of the neutral complexes [M(CP)-(S2CNMe2)] [M = Pd, Pt ; CP = CH2C6H4P(C6H4Me-o)(2)-kappa-C,P] towards Ag(I) and Au(I) compounds. Synthesis (M = Pd, Pt) and molecular structures (M = Pt) of polynuclear complexes containing M-Ag

机译:中性配合物[M(CP)-(S2CNMe2)]的亲核行为[M = Pd,Pt;对Ag(I)和Au(I)化合物而言,CP = CH2C6H4P(C6H4Me-o)(2)-kappa-C,P]。含M-Ag的多核配合物的合成(M = Pd,Pt)和分子结构(M = Pt)

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The reactions between [M{CH2C6H4P(C6H4Me-o)(2)}(S2CNMe2)] (M = Pt A, Pd B) and [M'(OClO3)(PPh3)] (M' = Ag, Au) in 1:1 ratio yielded [M{CH2C6H4P(C6H4Me-o)(2)}(S2CNMe2)M'(PPh3)M'(PPh3)]ClO4 (M' = Ag, M = Pt 1, Pd 2; M' = Au, M = Pt 3, Pd 4). The molecular structure of 1 indicates that the Ag and Pt atoms are bridged by one S atom of the S2CNMe2 ligand and show a weak interaction between them [Pt-Ag 2.875 (1) Angstrom]. Complexes A and B also react with AgClO4 in 1:1 molar ratio to give [M-2{CH2C6H4P(C6H4Me-o)(2)}(2)(S2CNMe2)(2)Ag{Ag(OClO3)}]ClO4 (M = Pt 5, Pd 6). The X-ray study of 5 revealed that this compound crystallized as a mixture of [Pt-2{CH2C6H4P(C6H4Me-o)(2)}(2)-(S2CNMe2)(2)Ag{Ag(OClO3)}]ClO4 and [Pt-2{CH2C6H4P(C6H4Me-o)(2)}(2)(S2CNMe2)(2){Ag(OH2)}{Ag(OClO3)}]ClO4 in 1 : 1 molar ratio. In the two different cations only one Ag atom is bonded to Pt, with the Pt-Ag lengths being 2.671 (3) Angstrom for [Pt-2{CH2C6H4P(C6H4Me-o)(2)}(2)(S2CNMe2)(2)Ag{Ag(OClO3)}](+) and 2.752(3) Angstrom for [Pt-2{CH2C6H4P(C6H4Me-o)(2)}(2)(S2CNMe2)(2){Ag(OH2)} {Ag(OClO3)}](+), both in the range found in other compounds with Pt-Ag bonds. Compounds 5 and 6 react with PPh3 in 1:2 molar ratio to give compounds 1 and 2 respectively. [References: 35]
机译:[M {CH2C6H4P(C6H4Me-o)(2)}(S2CNMe2)](M = Pt A,Pd B)和[M'(OClO3)(PPh3)](M'= Ag,Au)之间的反应1以1:1的比例生成[M {CH2C6H4P(C6H4Me-o)(2)}(S2CNMe2)M'(PPh3)M'(PPh3)] ClO4(M'= Ag,M = Pt 1,Pd 2; M'= Au ,M = Pt 3,Pd 4)。 1的分子结构表明,Ag和Pt原子被S2CNMe2配体的一个S原子桥接,并显示出它们之间的弱相互作用[Pt-Ag 2.875(1)埃]。配合物A和B也以1:1的摩尔比与AgClO4反应,得到[M-2 {CH2C6H4P(C6H4Me-o)(2)}(2)(S2CNMe2)(2)Ag {Ag(OClO3)}] ClO4( M = Pt 5,Pd 6)。对5的X射线研究表明,该化合物结晶为[Pt-2 {CH2C6H4P(C6H4Me-o)(2)}(2)-(S2CNMe2)(2)Ag {Ag(OC(O3O3)}] ClO4的混合物和[Pt-2 {CH2C6H4P(C6H4Me-0)(2)}(2)(S2CNMe2)(2){Ag(OH2)} {Ag(OClO3)}] ClO4的摩尔比为1:1。在两个不同的阳离子中,只有一个Ag原子与Pt结合,对于[Pt-2 {CH2C6H4P(C6H4Me-o)(2)}(2)(S2CNMe2)(2),Pt-Ag长度为2.671(3)埃)Ag {Ag(OClO3)}](+)和2.752(3)埃对于[Pt-2 {CH2C6H4P(C6H4Me-o)(2)}(2)(S2CNMe2)(2){Ag(OH2)} { Ag(OClO3)}](+),均在其他具有Pt-Ag键的化合物中发现。化合物5和6与PPh3以1:2的摩尔比反应,分别得到化合物1和2。 [参考:35]

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