氩
硫黄
硫化锌
溅射
材料科学
电致发光
氢
硅
薄膜
异质结
硫化氢
硫化物
光致发光
分析化学(期刊)
锌
化学
光电子学
冶金
纳米技术
图层(电子)
有机化学
色谱法
作者
C. Tsakonas,C.B. Thomas
摘要
Films of zinc sulfide (ZnS) have been grown on silicon (Si) substrates by sputtering in argon and either sulfur-enriched or deficient-gaseous environments. The density of electron traps at the ZnS/Si heterojunction is invariant with gas. However the photoluminescent intensity increases for films grown in argon enriched with hydrogen sulfide (Ar:H2S) compared with those grown in argon. Furthermore the density of sulfur vacancies is reduced by the presence of H2S, particularly compared with films grown in a mixture of argon and hydrogen (Ar:H). In these latter films sulfur vacancies increase the electrical conductivity by approximately three orders of magnitude. It is expected, therefore, that the high field condition essential for hot-electron production in thin film electroluminescent devices is optimized in films with a reduced sulfur vacancy content, i.e., grown in Ar:H2S.
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