首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Synthesis, characterization, and gas-phase fragmentation of rhenium-carbonyl complexes bearing imidazol(in) ium-2-dithiocarboxylate ligands
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Synthesis, characterization, and gas-phase fragmentation of rhenium-carbonyl complexes bearing imidazol(in) ium-2-dithiocarboxylate ligands

机译:含咪唑-2-二硫代羧酸盐配体的rh羰基配合物的合成,表征和气相裂解

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摘要

Five complexes with the generic formula [ReBr(CO) 3(kappa(2)-S, S'-S2C center dot NHC)] were obtained by reacting [ReBr (CO)(5)] with a set of representative imidazol(in) ium-2-dithiocarboxylate zwitterions. These ligands are the adducts of N-heterocyclic carbenes (NHCs) and carbon disulfide. The monometallic Re(I) compounds were further coupled with Na[Re(CO)(5)] to afford bimetallic Re(0) species. Depending on the experimental conditions, either octacarbonyl dimers [Re-2(CO)(8)(mu(2)-.kappa(1)-S,kappa(1)-S'-S2C center dot NHC)] or hexacarbonyl clusters [Re-2(CO)(6)(kappa(2)-S, S'-kappa(3)-S, C, S'-S2C center dot NHC)] were isolated. All the products were fully characterized using various analytical techniques. Single crystal XRD analysis helped establish with certainty the various binding modes exhibited by the NHC center dot CS2 ligands. With bite angles ranging from ca. 104 to 130 degrees, these zwitterions displayed a remarkable flexibility, which also permitted significant twists of the thiometallated rings to preserve a staggered arrangement of the carbonyl groups in the bimetallic systems. Monitoring the chemical shift of the CS2- moiety by C-13 NMR spectroscopy was most useful to detect its change of hapticity upon decarbonylation of the octacarbonyl compounds into hexacarbonyl derivatives. IR spectroscopy was another very convenient tool to identify the type of complex formed in a reaction, based on the pattern of its carbonyl vibration bands. Advanced mass spectrometry techniques showed that all the compounds underwent partial or total decarbonylation in the gas phase with no concomitant fragmentation of the bimetallic assemblies into monometallic ions.
机译:通过使[ReBr(CO)(5)]与一组代表性的咪唑(in)反应,制得五种具有通式[ReBr(CO)3(kappa(2)-S,S'-S2C中心点NHC)的配合物] )-2-二硫代羧酸盐两性离子。这些配体是N-杂环卡宾(NHC)和二硫化碳的加合物。单金属Re(I)化合物进一步与Na [Re(CO)(5)]偶联,得到双金属Re(0)物质。根据实验条件,八羰基二聚体[Re-2(CO)(8)(mu(2)-。kappa(1)-S,kappa(1)-S'-S2C中心点NHC)]或六羰基簇分离[Re-2(CO)(6)(kappa(2)-S,S'-kappa(3)-S,C,S'-S2C中心点NHC)]。使用各种分析技术对所有产品进行了全面表征。单晶XRD分析有助于确定NHC中心点CS2配体表现出的各种结合模式。咬合角度范围约为这些两性离子在104至130度之间显示出显着的柔韧性,这也使硫金属化环显着扭曲,以保持双金属体系中羰基的交错排列。通过C-13 NMR光谱监测CS2-部分的化学位移,对于检测八羰基化合物脱羰成六羰基衍生物后触觉的变化最为有用。红外光谱是另一种非常方便的工具,可根据其羰基振动带的模式来确定反应中形成的络合物的类型。先进的质谱技术表明,所有化合物在气相中都经历了部分或全部脱羰作用,而双金属组装体没有随之碎裂成单金属离子。

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