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Novel Aster-like ZnO Nanowire Clusters for Nanocomposites

机译:用于纳米复合材料的新型Aster状ZnO纳米线簇

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摘要

ZnO nanostructures have attracted a great deal of interest because of their biocompatibility and outstanding optical and piezoelectric properties. Their uses are widely varying, including incorporation in sensors, solar cells, and nanogenerators. Biological systems are yet another area of application of ZnO nanowires. Apart from their electrical and optical properties, ZnO nanostructures can be used for the mechanical reinforcement of existing biomimetic scaffolds such as collagen and/or other biodegradable polymers (poly(lactic acid), polyglycolide, poly(alkyene succinate)s or polyhydroxylalkanoates). In this work, we have demonstrated a cheap and comparatively facile hydrothermal growth method for the bulk production of ZnO nanostructures exhibiting an aster-like geometry. The novel nanostructures of ZnO can be used as reinforced material to biopolymers. The aster shape has presented an increased surface area, providing a means for enhancing the stabilization of the gels andor polymers. With controllable growth of ZnO nanostructures this method allows the geometry which could be tuned for maximal coupling between the two phases of composite and increased mechanical strength.
机译:ZnO纳米结构因其生物相容性以及出色的光学和压电特性而引起了人们的极大兴趣。它们的用途千差万别,包括并入传感器,太阳能电池和纳米发电机中。生物系统是ZnO纳米线的另一个应用领域。 ZnO纳米结构除了具有电学和光学特性外,还可以用于机械加固现有的仿生支架,例如胶原蛋白和/或其他可生物降解的聚合物(聚乳酸,聚乙交酯,聚(琥珀酸链烯基琥珀酸酯)或聚羟基链烷酸酯)。在这项工作中,我们证明了一种廉价且相对容易的水热生长方法,可用于批量生产表现出类似紫苑形状的ZnO纳米结构。 ZnO的新型纳米结构可以用作生物聚合物的增强材料。翠菊形状呈现出增加的表面积,提供了用于增强凝胶和/或聚合物的稳定性的手段。随着ZnO纳米结构的可控生长,该方法允许对几何形状进行调整,以实现复合材料两相之间的最大耦合并提高机械强度。

著录项

  • 来源
  • 会议地点 Boston MA(US);Boston MA(US);Boston MA(US);Boston MA(US)
  • 作者单位

    Department of Electrical Engineering, University of South Florida, Tampa, FL, United States.,Department of Mechanical Engineering, University of South Florida, Tampa, FL, United States.,Nanotechnology Research and Education Center, University of South Florida, Tampa, FL,United States;

    Department of Mechanical Engineering, University of South Florida, Tampa, FL, United States.,Nanotechnology Research and Education Center, University of South Florida, Tampa, FL,United States;

    Department of Mechanical Engineering, University of South Florida, Tampa, FL, United States.,Nanotechnology Research and Education Center, University of South Florida, Tampa, FL,United States;

    Department of Physics, University of South Florida, Tampa, FL, United States;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料一般性问题;
  • 关键词

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