Houska Jan, Peña-Méndez Eladia Maria, Kolár Jakub, Frumar Miloslav, Wágner Tomás, Havel Josef
Department of Chemistry, Faculty of Science, Masaryk University, Kotlárská 2, 611 37 Brno, Czech Republic.
Rapid Commun Mass Spectrom. 2009 Jun;23(11):1715-8. doi: 10.1002/rcm.4048.
Thin films of AgSbS(2) are important for phase-change memory applications. This solid is deposited by various techniques, such as metal organic chemical vapour deposition or laser ablation deposition, and the structure of AgSbS(2)(s), as either amorphous or crystalline, is already well characterized. The pulsed laser ablation deposition (PLD) of solid AgSbS(2) is also used as a manufacturing process. However, the processes in plasma have not been well studied. We have studied the laser ablation of synthesized AgSbS(2)(s) using a nitrogen laser of 337 nm and the clusters formed in the laser plume were identified. The ablation leads to the formation of various single charged ternary Ag(p)Sb(q)S(r) clusters. Negatively charged AgSbS(4) (-), AgSb(2)S(3) (-), AgSb(2)S(4) (-), AgSb(2)S(5) (-) and positively charged ternary AgSbS(+), AgSb(2)S(+), AgSb(2)S(2) (+), AgSb(2)S(3) (+) clusters were identified. The formation of several singly charged Ag(+), Ag(2) (-), Ag(3) (-), Sb(3) (+), Sb(3) (-), S(8) (+) ions and binary Ag(p)S(r) clusters such as AgSb(2) (-), Ag(3)S(-), SbS(r) (-) (r = 1-5), Sb(2)S(-), Sb(2)S(2) (-), Sb(3)S(r) (-) (r = 1-4) and AgS(2) (+), SbS(+), SbS(2) (+), Sb(2)S(+), Sb(2)S(2) (+), Sb(3)S(r) (+) (r = 1-4), AgSb(2) (+) was also observed. The stoichiometry of the clusters was determined via isotopic envelope analysis and computer modeling. The relation of the composition of the clusters to the crystal structure of AgSbS(2) is discussed.
AgSbS₂薄膜对于相变存储器应用很重要。这种固体通过各种技术沉积,如金属有机化学气相沉积或激光烧蚀沉积,并且AgSbS₂(s)的结构,无论是非晶态还是晶态,都已经得到了很好的表征。固体AgSbS₂的脉冲激光烧蚀沉积(PLD)也用作制造工艺。然而,等离子体中的过程尚未得到充分研究。我们使用337 nm的氮激光研究了合成的AgSbS₂(s)的激光烧蚀,并识别了激光羽流中形成的团簇。烧蚀导致形成各种单电荷三元Ag(p)Sb(q)S(r)团簇。识别出了带负电荷的AgSbS₄⁻、AgSb₂S₃⁻、AgSb₂S₄⁻、AgSb₂S₅⁻和带正电荷的三元AgSbS⁺、AgSb₂S⁺、AgSb₂S₂⁺、AgSb₂S₃⁺团簇。还观察到了几个单电荷的Ag⁺、Ag₂⁻、Ag₃⁻、Sb₃⁺、Sb₃⁻、S₈⁺离子以及二元Ag(p)S(r)团簇,如AgSb₂⁻、Ag₃S⁻、SbS(r)⁻(r = 1 - 5)、Sb₂S⁻、Sb₂S₂⁻、Sb₃S(r)⁻(r = 1 - 4)和AgS₂⁺、SbS⁺、SbS₂⁺、Sb₂S⁺、Sb₂S₂⁺、Sb₃S(r)⁺(r = 1 - 4)、AgSb₂⁺。通过同位素包络分析和计算机建模确定了团簇的化学计量。讨论了团簇组成与AgSbS₂晶体结构的关系。