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Fully rubbery integrated electronics from high effective mobility intrinsically stretchable semiconductors

机译:从高效移动本质上拉伸半导体的完全橡胶集成电子产品

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An intrinsically stretchable rubbery semiconductor with high mobility is critical to the realization of high-performance stretchable electronics and integrated devices for many applications where large mechanical deformation or stretching is involved. Here, we report fully rubbery integrated electronics from a rubbery semiconductor with a high effective mobility, obtained by introducing metallic carbon nanotubes into a rubbery semiconductor composite. This enhancement in effective carrier mobility is enabled by providing fast paths and, therefore, a shortened carrier transport distance. Transistors and their arrays fully based on intrinsically stretchable electronic materials were developed, and they retained electrical performances without substantial loss when subjected to 50% stretching. Fully rubbery integrated electronics and logic gates were developed, and they also functioned reliably upon mechanical stretching. A rubbery active matrix based elastic tactile sensing skin to map physical touch was demonstrated to illustrate one of the applications.
机译:具有高迁移率的本质可伸展的橡胶半导体对于实现高性能可拉伸电子产品和集成装置,对于涉及大机械变形或拉伸的许多应用来说是至关重要的。在这里,我们通过将金属碳纳米管引入橡胶状半导体复合材料中的高有效迁移率来报告从橡胶状半导体的完全橡胶的集成电子器件。通过提供快速路径,并且因此缩短的载波运输距离,能够实现有效载波移动性的这种增强。完全基于本质上拉伸电子材料的晶体管及其阵列,并且当受到50%拉伸时,它们保持电气性能而不会大量损失。开发完全橡胶集成电子和逻辑门,并且在机械拉伸时它们也可靠地运行。为了说明一种用于映射物理触摸的橡胶有源基质的基于弹性触觉感应皮肤以说明其中一个应用。

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