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选定金团簇的紫外光解离:Au(pMBA)和Au(pMBA)的超高效解链与配体剥离

Ultraviolet Photodissociation of Selected Gold Clusters: Ultraefficient Unstapling and Ligand Stripping of Au(pMBA) and Au(pMBA).

作者信息

Black David M, Crittenden Christopher M, Brodbelt Jennifer S, Whetten Robert L

机构信息

Department of Physics and Astronomy, The University of Texas at San Antonio , San Antonio, Texas 78249, United States.

Department of Chemistry, The University of Texas at Austin , Austin, Texas 78712, United States.

出版信息

J Phys Chem Lett. 2017 Mar 16;8(6):1283-1289. doi: 10.1021/acs.jpclett.7b00442. Epub 2017 Mar 6.

Abstract

We report the first results of ultraviolet photodissociation (UVPD) mass spectrometry of trapped monolayer-protected cluster (MPC) ions generated by electrospray ionization. Gold clusters Au(pMBA) and Au(pMBA) (pMBA = para-mercaptobenzoic acid) were analyzed in both the positive and negative modes. Whereas activation methods including collisional- and electron-based methods produced relatively few fragment ions, even a single ultraviolet pulse (at λ = 193 nm) caused extensive fragmentation of the positively charged clusters. Upon photoactivation using a low number of laser pulses, the staple motifs of both clusters were cleaved and stripped of the protecting ligand portions without removal of any contained gold atoms. This striking process involved Au-S and C-S bond cleavages via a pathway made possible by 6.4 eV photon absorption. Monomer evaporation (neutral gold atom loss) occurred upon exposure to multiple pulses, resulting in a size series of bare gold-cluster ions. All tandem mass spectrometric methods produced the singly charged ring tetramer ion, [Au(pMBA) + Na], for each cluster.

摘要

我们报告了通过电喷雾电离产生的捕获单层保护簇(MPC)离子的紫外光解离(UVPD)质谱分析的首批结果。对金簇Au(pMBA)和Au(pMBA)(pMBA = 对巯基苯甲酸)在正离子和负离子模式下进行了分析。包括基于碰撞和电子的活化方法在内的活化方法产生的碎片离子相对较少,而即使单个紫外脉冲(波长λ = 193 nm)也会导致带正电的簇发生广泛的碎片化。在使用少量激光脉冲进行光活化时,两个簇的主链基序均被裂解,保护配体部分被剥离,而所含的任何金原子均未被去除。这一显著过程涉及通过6.4 eV光子吸收实现的途径进行的Au-S和C-S键裂解。暴露于多个脉冲时会发生单体蒸发(中性金原子损失),从而产生一系列大小不同的裸金簇离子。每种簇的所有串联质谱方法均产生单电荷的环状四聚体离子[Au(pMBA)+Na]。

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