Tian Zhixin, Tang Zichao
State Key Laboratory of Molecular Reaction Dynamics, Center of Molecular Science, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100080, P.R. China.
Rapid Commun Mass Spectrom. 2005;19(20):2893-904. doi: 10.1002/rcm.2139.
Reactions of silver cluster cations Ag(n)+ with ethylene have been studied using a reflectron time-of-flight mass spectrometer. Chemisorbed Ag(n)(C2H4)(m)+ (n = 1-3, m = 1-6) complexes were observed. For a given value of n, the abundances of Ag(n)(C2H4)(m)+ (n = 1-3, m = 1-6) species first increase and then decrease, with the maximum of the intensity distribution usually at m = 4. This maximum does not change with the ethylene concentration in the mixed gas, the stagnation pressure of the mixed gas, or the size of Ag(n) + (n = 1-3). A complementary extensive theoretical study on the structure and binding of Ag(n)(C2H4)(m)+ (n = 1-4, m = 1-4) is also reported. Preferred binding sites, binding energies, geometries, vibrational frequencies, and ionization potentials are determined using density functional theory.
利用反射式飞行时间质谱仪研究了银团簇阳离子Ag(n)+与乙烯的反应。观察到化学吸附的Ag(n)(C2H4)(m)+(n = 1 - 3,m = 1 - 6)配合物。对于给定的n值,Ag(n)(C2H4)(m)+(n = 1 - 3,m = 1 - 6)物种的丰度先增加后减少,强度分布的最大值通常出现在m = 4处。该最大值不随混合气体中乙烯浓度、混合气体的滞止压力或Ag(n)+(n = 1 - 3)的尺寸而变化。还报道了对Ag(n)(C2H4)(m)+(n = 1 - 4,m = 1 - 4)的结构和键合进行的补充性广泛理论研究。使用密度泛函理论确定了优选的结合位点、结合能、几何结构、振动频率和电离势。