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1,3 - 双(二环己基膦基)丙烷配位的金簇合物的合成与表征

Synthesis and Characterization of Gold Clusters Ligated with 1,3-Bis(dicyclohexylphosphino)propane.

作者信息

Johnson Grant E, Priest Thomas, Laskin Julia

机构信息

Physical Sciences Division, Pacific Northwest National Laboratory, P.O. Box 999, MSIN K8-88, Richland, WA 99352 (USA).

出版信息

Chempluschem. 2013 Sep;78(9):1033-1039. doi: 10.1002/cplu.201300134. Epub 2013 Jun 28.

Abstract

In this multidisciplinary study the chemical reduction synthesis of novel gold clusters in solution was combined with high-resolution analytical mass spectrometry (MS) to gain insight into the composition of the gold clusters and how their size, ionic charge state, and ligand substitution influences their gas-phase fragmentation pathways. Ultrasmall cationic gold clusters ligated with 1,3-bis(dicyclohexylphosphino)propane (dcpp) were synthesized for the first time and introduced into the gas phase using electrospray ionization (ESI). Mass-selected cluster ions were fragmented by employing collision-induced dissociation (CID) and the product ions were analyzed using MS. The solutions were found to contain the multiply charged cationic gold clusters Au L , Au L , Au L , Au L , and Au L (L=dcpp). The gas-phase fragmentation pathways of these cluster ions were examined systematically by employing CID combined with MS. In addition, CID experiments were performed on related gold clusters of the same size and ionic charge state but capped with 1,3-bis(diphenylphosphino)propane (dppp) ligands containing phenyl functional groups at the two phosphine centers instead of cyclohexane rings. It is shown that this relatively small change in the molecular substitution of the two phosphine centers in diphosphine ligands (C H versus C H ) exerts a pronounced influence on the size of the species that are preferentially formed in solution during reduction synthesis as well as the gas-phase fragmentation channels of otherwise identical gold cluster ions. The mass spectrometry results indicate that in addition to the length of the alkyl chain between the two phosphine centers, the substituents at the phosphine centers also play a crucial role in determining the composition, size, and stability of diphosphine-ligated gold clusters synthesized in solution.

摘要

在这项多学科研究中,将溶液中新型金簇的化学还原合成与高分辨率分析质谱(MS)相结合,以深入了解金簇的组成,以及它们的尺寸、离子电荷状态和配体取代如何影响其气相碎裂途径。首次合成了与1,3 - 双(二环己基膦基)丙烷(dcpp)配位的超小阳离子金簇,并使用电喷雾电离(ESI)将其引入气相。通过碰撞诱导解离(CID)使质量选择的簇离子碎裂,并使用质谱分析产物离子。发现溶液中含有多电荷阳离子金簇Au L 、Au L 、Au L 、Au L 和Au L (L = dcpp)。通过将CID与MS相结合,系统地研究了这些簇离子的气相碎裂途径。此外,对相同尺寸和离子电荷状态但在两个膦中心带有含苯基官能团的1,3 - 双(二苯基膦基)丙烷(dppp)配体而非环己烷环的相关金簇进行了CID实验。结果表明,二膦配体中两个膦中心的分子取代的这种相对较小变化(C H 对C H )对还原合成过程中溶液中优先形成的物种的尺寸以及其他方面相同的金簇离子的气相碎裂通道产生了显著影响。质谱结果表明,除了两个膦中心之间烷基链的长度外,膦中心的取代基在确定溶液中合成的二膦配位金簇的组成、尺寸和稳定性方面也起着关键作用。

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