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FABRICATION AND CHARACTERIZATION OF SiOx/PARYLENE AND SlNx/PARYLENE THIN FILM ENCAPSULATION LAYERS

机译:SiOx / Parylene和SLNX / Parylene薄膜封装层的制备和表征

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Successful commercialization of flexible organic electronic devices is largely dependent on proper encapsulation that protects them from permeation of oxygen and water vapor. At present, low permeation encapsulation materials generally consist of multilayer films of organic/inorganic materials which can be deposited by plasma enhanced chemical vapor deposition (PECVD), atomic layer deposition (ALD), and vapor phase deposition. For this study, we report the effective water vapor transmission rates (WVTR) for multilayer thin films consisting of low temperature PECVD deposited SiNx and SiOx combined with a parylene organic layer. The effective WVTR was measured as a function of the number of bilayer pairs using Ca corrosion tests. The effective WVTR at 20 °C and 50% relative humidity [RH] for three bilayer pairs of SiOx /parylene ranged between 4.4-8.0 ×10~(-4) g/m~2/day while SiNx/parylene had a transmission rate 1.3×10~(-4) g/m~2/day. In general, additional layers were found to decrease the permeation rates to as low as 3.9×10~(-5) g/m~2/day, while the SiN_x/parylene coatings performed the best overall. permeation rate measurement; ca corrosion test; thin film encapsulation; organic devices
机译:柔性有机电子设备的成功商业化主要取决于适当的封装,可保护它们免受氧气和水蒸气的渗透。目前,低渗透封装材料通常由多层膜组成的有机/无机材料,其可以通过等离子体增强的化学气相沉积(PECVD),原子层沉积(ALD)和气相沉积来沉积。对于本研究,我们报告了由低温PECVD沉积SINX和SiOx组合的多层薄膜的有效水蒸气传动速率(WVTR)与二甲苯有机层组合。用Ca腐蚀试验作为双层对的数量测量有效的WVTR。在SINX / Parylene的32-8.0×10〜(-4)/白菜的三种双层对的三种双层同对的30℃和50%相对湿度[RH]的有效WVTR为3.4-8.0×10〜(4)〜2 /天。SINX / Parylene具有传输速率1.3×10〜(-4)g / m〜2 /天。通常,发现额外的层将渗透速率降低至低至3.9×10〜(-5)克/ m〜2 /天,而SIN_X / Parylene涂层的总体上是最佳的。渗透率测量; CA腐蚀试验;薄膜封装;有机设备

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