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支化银纳米线和纳米网的制备及光谱研究。

Fabrication and spectroscopic investigation of branched silver nanowires and nanomeshworks.

机构信息

School of Electronic Science and Engineering, Southeast University, Nanjing 210096, People's Republic of China.

出版信息

Nanoscale Res Lett. 2012 Oct 27;7(1):596. doi: 10.1186/1556-276X-7-596.

Abstract

Wide wavelength ranges of light localization and scattering characteristics can be attributed to shape-dependent longitude surface plasmon resonance in complicated nanostructures. We have studied this phenomenon by spectroscopic measurement and a three-dimensional numerical simulation, for the first time, on the high-density branched silver nanowires and nanomeshworks at room temperature. These nanostructures were fabricated with simple light-induced colloidal method. In the range from the visible to the near-infrared wavelengths, light has been found effectively trapped in those trapping sites which were randomly distributed at the corners, the branches, and the junctions of the nanostructures in those nanostructures in three dimensions. The broadened bandwidth electromagnetic field enhancement property makes these branched nanostructures useful in optical processing and photovoltaic applications.

摘要

复杂纳米结构中依赖于形状的长程表面等离子体共振导致了宽波长范围的光局域和散射特性。我们首次通过光谱测量和三维数值模拟研究了室温下高密度分支状银纳米线和纳米网的这一现象。这些纳米结构是通过简单的光诱导胶体方法制备的。在从可见光到近红外波长的范围内,光已被发现有效地被捕获在那些随机分布在三维纳米结构的角、分支和连接处的捕获位置。扩展的带宽电磁场增强特性使得这些分支状纳米结构在光处理和光伏应用中非常有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4728/3577568/e64d9121b026/1556-276X-7-596-1.jpg

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