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Three-dimensional Aerographite-GaN hybrid networks: Single step fabrication of porous and mechanically flexible materials for multifunctional applications

机译:三维Aerographite-GaN杂化网络:用于多功能应用的多孔和机械柔性材料的一步制造

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摘要

Three dimensional (3D) elastic hybrid networks built from interconnected nano- and microstructure building units, in the form of semiconducting-carbonaceous materials, are potential candidates for advanced technological applications. However, fabrication of these 3D hybrid networks by simple and versatile methods is a challenging task due to the involvement of complex and multiple synthesis processes. In this paper, we demonstrate the growth of Aerographite-GaN 3D hybrid networks using ultralight and extremely porous carbon based Aerographite material as templates by a single step hydride vapor phase epitaxy process. The GaN nano- and microstructures grow on the surface of Aerographite tubes and follow the network architecture of the Aerographite template without agglomeration. The synthesized 3D networks are integrated with the properties from both, i.e., nanoscale GaN structures and Aerographite in the form of flexible and semiconducting composites which could be exploited as next generation materials for electronic, photonic, and sensors applications.
机译:由互连的纳米结构和微观结构构建单元构建的三维(3D)弹性混合网络(以半导体碳质材料的形式)是高级技术应用的潜在候选者。然而,由于涉及复杂和多个合成过程,因此通过简单且通用的方法来制造这些3D混合网络是一项艰巨的任务。在本文中,我们通过一步氢化物气相外延工艺,证明了以超轻和极多孔碳基Aerographite材料为模板的Aerographite-GaN 3D混合网络的增长。 GaN纳米结构和微结构在Aerographite管的表面上生长,并且遵循Aerographite模板的网络结构而不会发生团聚。合成的3D网络以柔性和半导电复合材料的形式集成了纳米级GaN结构和Aerographite的特性,可以用作电子,光子和传感器应用的下一代材料。

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