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Geometrical and morphological optimizations of plasmonic nanoarrays for high-performance SERS detection

机译:几何和形态优化的电浆为高性能ser纳米阵列检测

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摘要

Here we present an in-depth and comprehensive study of the effect of the geometry and morphology of nanoarray (NA) substrates on their surface-enhanced Raman scattering (SERS) performance. The high-quality SERS-active NA substrates of various unit shapes and pitches are assembled through electron beam lithography and fabricated by electron beam physical vapor deposition. Good agreement is found on comparing the Raman scattering results with the integrals of the fourth power of local electric fields from the three-dimensional numerical simulations. A novel type of hybrid NA substrate composed of disordered nanoparticles and a periodic NA is fabricated and characterized. The morphology of NAs has little influence on the SERS performance of hybrid NA substrates and they perform better than both their counterparts pure NA and disordered nanoparticle substrates.
机译:这里我们提出一个深入、全面几何和的影响的研究纳米阵列(NA)基质的形态表面增强拉曼散射(ser)的性能。基质的各种单元形状和球通过电子束光刻和组装电子束物理气臆造出来的沉积。拉曼散射的结果与积分当地电场的四次方三维数值模拟。小说类型的混合NA衬底组成的无序纳米粒子和一个周期NA捏造和特征。NAs对ser性能几乎没有影响娜的混合基质和他们表现得更好比纯粹的NA和同行无序纳米基质。

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