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Rapid thermal nanoimprinting on silk protein substrates for controlled degradation of transient devices

机译:在丝蛋白基质上进行快速热纳米压印,以控制瞬态器件的降解

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摘要

This paper reports a facile patterning technique for silk protein based transient electronic materials by rapid thermal nanoimprinting. The solubility of silk films strongly depends on the crystalline conformation of the silk proteins, which can be well tuned by thermal treatment. Compared with the previous methods, this approach mainly focuses on the combination of nonuniform thermal distribution and high precision nanopatterns formation, offering the ability to finely configure the degradation behavior of various functional protein nanostructure. It opens up numerous opportunities for manufacturing high-performance transient devices with programmable degradation rate.
机译:本文报道了一种通过快速热纳米压印对基于丝蛋白的瞬态电子材料进行简便的构图技术。丝膜的溶解度在很大程度上取决于丝蛋白的晶体构象,可以通过热处理对其进行很好的调节。与以前的方法相比,此方法主要集中在非均匀热分布和高精度纳米图案形成的结合上,提供了精细配置各种功能蛋白质纳米结构的降解行为的能力。它为制造具有可编程降级速率的高性能瞬态器件提供了许多机会。

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