首页> 外文期刊>Journal of Organometallic Chemistry >Metal core rearrangements in hetero-bimetallic nona-osmium carbonyl clusters; the crystal and molecular structures of [Os-9(CO)(24){Au(PCy3)}(2)] and [Os-9(CO)(23)(Au2DPPE)]
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Metal core rearrangements in hetero-bimetallic nona-osmium carbonyl clusters; the crystal and molecular structures of [Os-9(CO)(24){Au(PCy3)}(2)] and [Os-9(CO)(23)(Au2DPPE)]

机译:异双金属九碳羰基cluster簇中的金属核重排; [Os-9(CO)(24){Au(PCy3)}(2)]和[Os-9(CO)(23)(Au2DPPE)]的晶体和分子结构

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The reaction of the nona-osmium cluster dianion [(Ph3P)(2)N](2)[Os-9(CO)(24)] with the electrophilic gold reagents "AuPR3+" and "Au2L2+" (where R = Ph (2a, 3a), Cy (2b, 3b) and L = bis-(diphenylphosphino)methane (DPPM) (la) or 1,2-bis-(diphenyl)ethane (DPPE) (lb)) has been studied. The monogold fragment reacts to give both the mono-and di-substituted products [(Ph3P)(2)N][Os-9(CO)(24){Au(PR3)}] and [Os-9(CO)(24){Au(PR3)}(2)]. The structure of the latter cluster (R = Cy (2b)) has been determined by a single crystal X-ray diffraction analysis and a major rearrangement of the metal core geometry was found to have occurred on coordination of the gold fragments. In contrast, reaction with the digold reagent "Au2L2+" results in the isolation of only one product of formulation [Os-9(CO)(23)(Au2L)], where coordination of the heteroatom moiety has been accompanied with the loss of a carbonyl ligand. From a single crystal X-ray diffraction analysis (L = DPPE (lb)) this compound was shown to have retained its original cluster geometry, with the gold atoms coordinated in close proximity to each other. (C) 1998 Elsevier Science S.A. [References: 26]
机译:壬a簇二价阴离子[(Ph3P)(2)N](2)[Os-9(CO)(24)]与亲电金试剂“ AuPR3 +”和“ Au2L2 +”(其中R = Ph(已经研究了2a,3a),Cy(2b,3b)和L =双-(二苯基膦基)甲烷(DPPM)(1a)或1,2-双-(二苯基)乙烷(DPPE)(1b))。单金片段反应生成单取代和双取代的产物[(Ph3P)(2)N] [Os-9(CO)(24){Au(PR3)}]和[Os-9(CO)( 24){Au(PR3)}(2)]。后一簇的结构(R = Cy(2b))已通过单晶X射线衍射分析确定,并且发现金核的配位发生了金属核几何结构的重大重排。相反,与二化试剂“ Au2L2 +”的反应导致仅分离出一种制剂[Os-9(CO)(23)(Au2L)],其中杂原子部分的配位伴随着α的损失。羰基配体。通过单晶X射线衍射分析(L = DPPE(lb)),该化合物保留了其原始团簇几何形状,金原子彼此之间非常紧密地配位。 (C)1998 Elsevier Science S.A. [参考:26]

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