Departments of Chemistry and Materials Science, Johns Hopkins University, Baltimore, Maryland 21218, USA.
J Chem Phys. 2011 Jun 14;134(22):224307. doi: 10.1063/1.3597604.
Mass spectrometry and photoelectron spectroscopy together with first principles theoretical calculations have been used to study the electronic and geometric properties of the following sodium-tin, cluster anion/neutral cluster combinations, (Na(n)Sn(4))(-)/(Na(n)Sn(4)), n = 0-4 and (NaSn(m))(-)/(NaSn(m)), m = 4-7. These synergistic studies found that specific Zintl anions, which are known to occur in condensed Zintl phases, also exist as stable moieties within free clusters. In particular, the cluster anion, (Na(3)Sn(4))(-) is very stable and is characterized as (Na(+))(3)(Sn(4))(-4); its moiety, (Sn(4))(-4) is a classic example of a Zintl anion. In addition, the cluster anion, (NaSn(5))(-) was the most abundant species to be observed in our mass spectrum, and it is characterized as Na(+)(Sn(5))(2-). Its moiety, (Sn(5))(2-) is also known to be present as a Zintl anion in condensed phases.
质谱和光电子能谱与第一性原理理论计算相结合,用于研究以下钠锡簇阴离子/中性簇组合的电子和几何性质:(Na(n)Sn(4))(-)/(Na(n)Sn(4)),n = 0-4 和 (NaSn(m))(-)/(NaSn(m)),m = 4-7。这些协同研究发现,已知在凝聚 Zintl 相中存在的特定 Zintl 阴离子也作为游离簇中的稳定部分存在。特别是,簇阴离子 (Na(3)Sn(4))(-) 非常稳定,其特征为 (Na(+))(3)(Sn(4))(-4);其部分 (Sn(4))(-4) 是 Zintl 阴离子的典型例子。此外,在我们的质谱中观察到最丰富的簇阴离子 (NaSn(5))(-),其特征为 Na(+)(Sn(5))(2-)。其部分 (Sn(5))(2-) 也已知在凝聚相中作为 Zintl 阴离子存在。