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Structure and stability of small lithium-chloride LinClm(0,1+) (n >= m, n=1-6, m=1-3) clusters

机译:小氯化锂LINCLM(0,1+)(n> = m,n = 1-6,m = 1-3)簇的结构和稳定性

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In the present study, we report the results of a detailed theoretical investigation along with the experimental observations of chlorine-doped small lithium clusters. The cluster ions of the type LinClm+ (n >= m, n = 1-6, m = 1-3) were obtained by the evaporation of LiCl from a Knudsen cell as a chemical reactor in the temperature range between 1800 and 2700 K. Heterogeneous clusters with more than one Cl atom are produced and detected for the first time, and the experimental conditions for formation and stability are examined. The structural characteristics and stabilities of neutral and positively charged LinClm species are analyzed by using quantum chemistry methods. Doping lithium clusters with chlorine increases their stability, although there is a typical closed-shell-open-shell alternation in stability. Calculated dissociation energies are the best indicator of cluster stability of experimentally detected clusters. Heterogeneous lithium-chloride clusters can be viewed as species consisting of m negative Cl- ions and a positively charged Li-n((1+,2+)) "cage''; upon ionization, an electron departs from the lithium cage. An important reason for the higher stability of closed-shell clusters is the delocalization of electrons over the lithium cage, which is more energetically favored than localization of electrons between two lithium atoms. According to their ionization energies, the titled clusters can be classified as "superalkalis''.
机译:在本研究中,我们报告了详细的理论调查结果以及氯掺杂小锂簇的实验观察结果。通过将LiCl从Chaudsen电池蒸发为1800和2700k的温度范围内的化学反应器,获得LiNClM +(N> = M,N = 1-6,m = 1-3)的簇离子获得。第一次产生和检测具有多于一个CL原子的异质簇,检查形成和稳定性的实验条件。通过使用量子化学方法分析中性和带正电荷的LINCLM物种的结构特征和稳定性。掺杂含氯的锂簇增加了它们的稳定性,尽管存在稳定性典型的封闭 - 壳开壳交替。计算的解离能是实验检测簇的集群稳定性的最佳指标。异构锂氯化物簇可以被看作是由m个负Cl-离子的种类和带正电荷的锂 - 正((1 +,2 +))“笼‘’;电离时,从锂笼的电子的出发的封闭壳簇稳定性稳定性的重要原因是锂笼上的电子的临近化,其比两个锂原子之间的电子定位更加积极青睐。根据它们的电离能量,标题的簇可以被归类为“超级展位” ''。

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