Physical Chemistry, VINČA Institute of Nuclear Sciences, University of Belgrade, P. O. Box 522, 11001 Belgrade, Serbia.
J Mass Spectrom. 2012 May;47(5):627-31. doi: 10.1002/jms.3001.
Clusters of the type Li(n)X (X = halides) can be considered as potential building blocks of cluster-assembly materials. In this work, Li(n)Br (n = 2-7) clusters were obtained by a thermal ionization source of modified design and selected by a magnetic sector mass spectrometer. Positive ions of the Li(n)Br (n = 4-7) cluster were detected for the first time. The order of ion intensities was Li(2)Br(+) > Li(4)Br(+) > Li(5)Br(+) > Li(6)Br(+) > Li(3)Br(+). The ionization energies (IEs) were measured and found to be 3.95 ± 0.20 eV for Li(2)Br, 3.92 ± 0.20 eV for Li(3)Br, 3.93 ± 0.20 eV for Li(4)Br, 4.08 ± 0.20 eV for Li(5)Br, 4.14 ± 0.20 eV for Li(6)Br and 4.19 ± 0.20 eV for Li(7)Br. All of these clusters have a much lower ionization potential than that of the lithium atom, so they belong to the superalkali class. The IEs of Li(n)Br (n = 2-4) are slightly lower than those in the corresponding small Li(n) or Li(n)H clusters, whereas the IEs of Li(n)Br are very similar to those of Li(n) or Li(n)H for n = 5 and 6. The thermal ionization source of modified design is an important means for simultaneously obtaining and measuring the IEs of Li(n)Br (n = 2-7) clusters (because their ions are hermodynamically stable with respect to the loss of lithium atoms in the gas phase) and increasingly contributes toward the development of clusters for practical applications.
类型 Li(n)X(X = 卤化物)的簇可以被认为是簇组装材料的潜在构建块。在这项工作中,通过改进设计的热电离源获得 Li(n)Br(n = 2-7)簇,并通过磁扇形质量分析仪进行选择。首次检测到 Li(n)Br(n = 4-7)簇的正离子。离子强度的顺序为 Li(2)Br(+) > Li(4)Br(+) > Li(5)Br(+) > Li(6)Br(+) > Li(3)Br(+)。测量了电离能(IE),发现 Li(2)Br 的 IE 为 3.95 ± 0.20 eV,Li(3)Br 的 IE 为 3.92 ± 0.20 eV,Li(4)Br 的 IE 为 3.93 ± 0.20 eV,Li(5)Br 的 IE 为 4.08 ± 0.20 eV,Li(6)Br 的 IE 为 4.14 ± 0.20 eV,Li(7)Br 的 IE 为 4.19 ± 0.20 eV。所有这些簇的电离势都远低于锂原子的电离势,因此它们属于超碱类。Li(n)Br(n = 2-4)的 IE 略低于相应的小 Li(n)或 Li(n)H 簇的 IE,而对于 n = 5 和 6,Li(n)Br 的 IE 与 Li(n)或 Li(n)H 的 IE 非常相似。改进设计的热电离源是同时获得和测量 Li(n)Br(n = 2-7)簇的 IE(因为它们的离子在气相中失去锂原子时是热力学稳定的)的重要手段,并越来越有助于开发用于实际应用的簇。