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Ag/Se二元团簇的形成以及Ag与Se团簇反应的研究
引用本文:邢小鹏,赵翔,张霞,高振. Ag/Se二元团簇的形成以及Ag与Se团簇反应的研究[J]. 高等学校化学学报, 2002, 23(3): 428-431
作者姓名:邢小鹏  赵翔  张霞  高振
作者单位:中国科学院化学研究所, 分子科学中心, 分子反应动力学实验室, 北京 100080
基金项目:国家自然科学基金 (批准号 :2 9773 0 5 4)资助
摘    要:用飞行时间质谱仪研究了激光直接溅射Ag/Se混合样品产生的二元团簇以及团簇正离子的光解行为;并用串级溅射反应装置研究了Ag和Se正负离子产物.在直接溅射产生的Ag/Se二元团簇中,正离子主要系列是:[(Ag2Se)nAg+],[(Ag2Se)nAg3+];负离子主要系列是:[(Ag2Se)nAgSe-],[(Ag2Se)nAgSe2-],[(Ag2Se)nSe-].团簇正离子的光解结果表明,同样条件下Ag/Se二元团簇正离子光解比率比Ag/S大.在Ag和Se样品串级溅射实验中,主要得到AgSen+(n=4~9)和AgSenSe-(n=4~7)系列的产物,在AgSen+系列中,n=4,6时丰度较大.这表明串级溅射反应和直接溅射二元混合样品两种过程中成簇机理是不同的.

关 键 词:激光溅射  飞行时间质谱  团簇反应  银硒原子团簇  
文章编号:0251-0790(2002)03-0428-04
收稿时间:2000-03-08

Mass Spectrometric Study of Ag/Se Cluster Ions and Reaction of Ag and Se Clusters
XING Xiao-Peng,ZHAO Xiang,ZHANG Xia,GAO Zhen . Mass Spectrometric Study of Ag/Se Cluster Ions and Reaction of Ag and Se Clusters[J]. Chemical Research In Chinese Universities, 2002, 23(3): 428-431
Authors:XING Xiao-Peng  ZHAO Xiang  ZHANG Xia  GAO Zhen 
Affiliation:State Key Laboratory of Molecular Reaction Dynamics, Center of Molecular Science, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100080, China
Abstract:The time|of|flight mass spectrometry was used to study Ag/Se cluster ions produced by laser ablation of solid samples, and a Laser Double Ablation Reactor was used to study the reaction of Ag and Se clusters. In Ag/Se binary cluster ions produced by laser ablation, [(Ag-2Se)-%n%Ag++], [(Ag-2Se)-%n%Ag++-3] are main compositions of positive cluster ions, while [(Ag-2Se)-%n%AgSe+-], [(Ag-2Se)-%n%AgSe+--2], [(Ag-2Se)-%n%Se+-] are main compositions of negative cluster ions. The photolysis rates of positive cluster ions is higher than those of Ag/S clusters. During the laser double ablation experiment, the AgSe++-%n(n%=4_9), AgSe+--%n(n%={4_7}) were detected. In the series AgSe++-%n%, the ions AgSe++-4, AgSe++-6 are comparatively abundant. It seems that the clustering mechanisms in the two processes are different.
Keywords:Laser ablation  Time|of|flight mass spectrometer  Clusters reaction  Ag/Se atom clusters
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