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Barrier properties of polymer encapsulation materials for implantable microsystems

机译:用于植入微系统的聚合物包封材料的阻隔性能

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Biocompatible polymers utilized for flexible encapsulations of implantable microsystems provide many advantages compared to widely used rigid titanium or ceramic packages. However, polymers alter their properties due to interactions with their environment. As a result the protective function of these materials especially for long-term implants is not reliable. Therefore, we investigated barrier properties against water vapor of silicone and Parylene C membranes. And we combined these polymers to a multi-layer membrane to enhance the protective function of such an encapsulation system. Applying a bonding agent between two polymer layers increases the strength of the sample as well as the barrier properties significantly.
机译:与广泛使用的刚性钛或陶瓷包装相比,用于柔性微型封装的生物相容性聚合物提供了许多优点。然而,聚合物因与其环境的相互作用而改变它们的性质。结果,这些材料的保护功能特别适用于长期植入物是不可靠的。因此,我们研究了硅氧烷和二甲苯C膜的水蒸气的阻隔性能。并且我们将这些聚合物组合到多层膜中以增强这种封装系统的保护功能。在两个聚合物层之间施加粘合剂增加样品的强度以及显着的阻挡性能。

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