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Adhesion of Colloidal ZnO Particles on ZnS-Type Phosphor Surfaces

✍ Scribed by C. Feldmann; J. Merikhi


Publisher
Elsevier Science
Year
2000
Tongue
English
Weight
216 KB
Volume
223
Category
Article
ISSN
0021-9797

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✦ Synopsis


Chemical and physical aspects of the adhesion of colloidal ZnO particles (d(50)=81 nm) on the surface of ZnS-type phosphors have been studied. Here, the green-emitting phosphor ZnS:Cu,Al,Cu (d(50)=5.0 µm) applied in TV screens was chosen as model compound. The ZnS material was pretreated in various ways (H(2)O, HCl, H(2)O(2)) and reacted thereafter with a suspension containing colloidal ZnO particles. Analytical investigations (SEM, ESCA) have shown that the adhesion of colloidal ZnO particles is strongly affected by the degree of hydrolysis of the ZnS surface. Electroacoustic investigations (ESA) prove that both types of surfaces, hydrolyzed ZnS as well as colloidal ZnO, are positively charged. Even so, adhesion of ZnO particles is encouraged very much under these conditions, indicating that secondary attractive forces (electrostatic interaction, chemical bonding) determine the amount of colloidal ZnO adhered on a ZnS-type phosphor. Copyright 2000 Academic Press.


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Adhesion of Colloidal SiO2 Particles on
✍ J. Merikhi; C. Feldmann 📂 Article 📅 2000 🏛 Elsevier Science 🌐 English ⚖ 215 KB

The interaction between colloidal SiO(2) particles and the surface of ZnS-type phosphors has been studied. The green emitting phosphor ZnS:Cu,Al,Au applied in color television tubes was chosen as a model compound. After the surface of the phosphor particles (d(50)=5.0 µm) was treated in different ma