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用于应变传感器应用的由磷化铟微纳结构杂交而成的分级气凝胶三维柔性网络。

Hierarchical Aerographite 3D flexible networks hybridized by InP micro/nanostructures for strain sensor applications.

作者信息

Plesco Irina, Strobel Julian, Schütt Fabian, Himcinschi Cameliu, Ben Sedrine Nabiha, Monteiro Teresa, Correia Maria Rosário, Gorceac Leonid, Cinic Boris, Ursaki Veaceslav, Marx Janik, Fiedler Bodo, Mishra Yogendra Kumar, Kienle Lorenz, Adelung Rainer, Tiginyanu Ion

机构信息

National Center for Materials Study and Testing, Technical University of Moldova, Stefan cel Mare av. 168, MD-2004, Chisinau, Republic of Moldova.

Institute for Materials Science, Kiel University, Kaiserstr. 2, D-24143, Kiel, Germany.

出版信息

Sci Rep. 2018 Sep 17;8(1):13880. doi: 10.1038/s41598-018-32005-0.

Abstract

In the present work, we report on development of three-dimensional flexible architectures consisting of an extremely porous three-dimensional Aerographite (AG) backbone decorated by InP micro/nanocrystallites grown by a single step hydride vapor phase epitaxy process. The systematic investigation of the hybrid materials by scanning electron microscopy demonstrates a rather uniform spatial distribution of InP crystallites without agglomeration on the surface of Aerographite microtubular structures. X-ray diffraction, transmission electron microscopy and Raman scattering analysis demonstrate that InP crystallites grown on bare Aerographite are of zincblende structure, while a preliminary functionalization of the Aerographite backbone with Au nanodots promotes the formation of crystalline InO nanowires as well as gold-indium oxide core-shell nanostructures. The electromechanical properties of the hybrid AG-InP composite material are shown to be better than those of previously reported bare AG and AG-GaN networks. Robustness, elastic behavior and excellent translation of the mechanical deformation to variations in electrical conductivity highlight the prospects of AG-InP applications in tactile/strain sensors and other device structures related to flexible electronics.

摘要

在本工作中,我们报道了由极多孔三维气凝胶石墨(AG)骨架构成的三维柔性结构的开发,该骨架由通过一步氢化物气相外延工艺生长的InP微/纳米微晶修饰。通过扫描电子显微镜对混合材料进行的系统研究表明,InP微晶在气凝胶石墨微管结构表面具有相当均匀的空间分布,且无团聚现象。X射线衍射、透射电子显微镜和拉曼散射分析表明,生长在裸露气凝胶石墨上的InP微晶具有闪锌矿结构,而用金纳米点对气凝胶石墨骨架进行初步功能化则促进了结晶InO纳米线以及金-氧化铟核壳纳米结构的形成。结果表明,混合AG-InP复合材料的机电性能优于先前报道的裸露AG和AG-GaN网络。其坚固性、弹性行为以及机械变形到电导率变化的出色转换突出了AG-InP在触觉/应变传感器以及与柔性电子相关的其他器件结构中的应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b70e/6141564/20cf41aee073/41598_2018_32005_Fig1_HTML.jpg

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