Black David M, Bhattarai Nabraj, Whetten Robert L, Bach Stephan B H
Department of Chemistry, University of Texas at San Antonio , One UTSA Circle, San Antonio, Texas 78249, United States.
J Phys Chem A. 2014 Nov 13;118(45):10679-87. doi: 10.1021/jp508059j. Epub 2014 Oct 31.
Gas-phase reactions of larger gold clusters are poorly known because generation of the intact parent species for mass spectrometric analysis remains quite challenging. Herein we report in-source collision-induced dissociation (CID) results for the monolayer protected clusters (MPCs) Au144(SR)60 and Au130(SR)50, where R- = PhCH2CH2-, in a Bruker micrOTOF time-of-flight mass spectrometer. A sample mixture of the two clusters was introduced into the mass spectrometer by positive mode electrospray ionization. Standard source conditions were used to acquire a reference mass spectrum, exhibiting negligible fragmentation, and then the capillary-skimmer potential difference was increased to induce in-source CID within this low-pressure region (∼4 mbar). Remarkably, distinctive fragmentation patterns are observed for each MPC[3+] parent ion. An assignment of all the major dissociation products (ions and neutrals) is deduced and interpreted by using the distinguishing characteristics in the standard structure-models for the respective MPCs. Also, we propose a ring-forming elimination mechanism to explain R-H neutral loss, as separate from the channels leading to RS-SR or (AuSR)4 neutrals.
较大金团簇的气相反应鲜为人知,因为生成用于质谱分析的完整母体物种仍然极具挑战性。在此,我们报告了在布鲁克微型飞行时间质谱仪中,单层保护簇(MPCs)Au144(SR)60和Au130(SR)50(其中R- = PhCH2CH2-)的源内碰撞诱导解离(CID)结果。通过正模式电喷雾电离将这两种簇的样品混合物引入质谱仪。使用标准源条件获取参考质谱,其碎片化程度可忽略不计,然后增加毛细管-分离器电势差以在该低压区域(约4毫巴)内诱导源内CID。值得注意的是,对于每个MPC[3+]母体离子都观察到了独特的碎片化模式。通过使用各个MPC的标准结构模型中的显著特征,推导并解释了所有主要解离产物(离子和中性物)。此外,我们提出了一种成环消除机制来解释R-H中性物损失,这与导致RS-SR或(AuSR)4中性物的通道不同。