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A review on ZnS phosphor degradation

机译:ZNS磷光体降解综述

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Standard ZnS cathodoluminescent phosphors normally lose brightness upon bombardment with electron beams. The main reason for the degradation is the formation of a non-luminescent "dead layer" on the surface due to the electron stimulated surface chemical reaction (ESSCR) mechanism. The decrease in luminance was found to be a result of the growth of the "dead layer". Calculations showed that the thickness of the oxide layer that formed during electron bombardment, cannot completely explain the magnitude of the decline of the CL intensity. Iso-electronic point defects due to the presence of oxygen that diffuse into the ZnS matrix at the interface further contribute to the degradation. When the ZnS phosphor powder was exposed to the electron beam in a water-rich O_2 ambient, a chemically-limited ZnO layer was formed on the surface. A layer of ZnSO_4 was formed on the surface during the electron beam degradation of the ZnS phosphor powder in a dry O_2 ambient.
机译:标准ZNS阴极发光磷光体通常在轰击电子束时失去亮度。降解的主要原因是由于电子刺激的表面化学反应(ESSCR)机制而形成表面上的非发光“死层”。发现亮度的降低是“死层”的生长的结果。计算表明,在电子轰击期间形成的氧化物层的厚度不能完全解释CL强度下降的幅度。 ISO-电子点由于存在于界面处漫射到ZnS矩阵中的氧气而导致的缺陷进一步有助于降解。当ZnS磷光体粉末暴露于富含水的O_2环境中时,在表面上形成化学限制的ZnO层。在干燥O_2环境中的ZnS磷光体粉末的电子束劣化期间在表面上形成一层ZnSO_4。

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