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Synthesis, Structure, and Electrochemistry of the Ni–Au Carbonyl Cluster [Ni12Au(CO)24]3– and Its Relation to [Ni32Au6(CO)44]6–

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Figshare2016-02-20 更新2026-04-29 收录
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https://figshare.com/articles/dataset/Synthesis_Structure_and_Electrochemistry_of_the_Ni_Au_Carbonyl_Cluster_Ni_sub_12_sub_Au_CO_sub_24_sub_sup_3_sup_and_Its_Relation_to_Ni_sub_32_sub_Au_sub_6_sub_CO_sub_44_sub_sup_6_sup_/2472490
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A detailed study of the reaction between [Ni6(CO)12]2– and [AuCl4]− afforded the isolation of the new Ni–Au cluster [Ni12Au­(CO)24]3– as well as identifying an improved synthesis for the previously reported [Ni32Au6(CO)44]6–. The new [Ni12Au­(CO)24]3– cluster is composed by two [Ni6(CO)12]2– moieties coordinated to a central Au­(I) ion, as determined by X-ray diffraction. It is noteworthy that the two [Ni6(CO)12]2– fragments display different geometries, i.e., trigonal antiprismatic (distorted octahedral) and distorted trigonal prismatic (monocapped square pyramidal). The chemical reactivity of these clusters and their electrochemical behavior have been studied. [Ni12Au­(CO)24]3– is irreversibly transformed, upon electrochemical reduction, into Au(0) and [Ni6(CO)12]2–, followed by the reversible reduction of the latter homometallic cluster. Conversely, [Ni32Au6(CO)44]6– displays five reductions, with apparent features of reversibility, confirming the ability of larger metal carbonyl clusters to reversibly accept and release electrons.
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2016-02-20
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