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Surface roughness boosts the SERS performance of imprinted plasmonic architectures

机译:表面粗糙度可提高压印等离子体结构的SERS性能

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摘要

The large-area low-cost rough plasmonic crystal (r-PC) SERS substrates introduced herein outperform smooth counterparts and rough films both in the magnitude of the enhancement factor (EF) and in the number of vibrational peaks displayed in the Raman spectrum. In r-PCs, the photonic modes launched by the lattice excite more intense and abundant localized resonances in the sharp edges and gaps present in the rough metal surface. 2D r-PCs are fabricated by nanoimprinting a nanocrystalline titania paste followed by silver coating, resulting in a highly reproducible rough photonic architecture. The SERS performance of these architectures is tested via the detection of two molecules: benzenethiol and 4-mercaptopyridine. The resulting EF values exceed 10(7) in the case of benzenethiol and 10(10) when 4-mercaptopyridine is used. The simple fabrication strategy and the high performance exhibited by these nanoimprinted substrates make rough plasmonic architectures one of the most promising candidates for inexpensive and efficient mass-produced SERS substrates.
机译:本文介绍的大面积低成本粗糙等离子晶体(r-PC)SERS衬底在增强因子(EF)的大小和拉曼光谱中显示的振动峰数方面都胜过光滑的对应物和粗糙膜。在r-PC中,由晶格发射的光子模式在粗糙的金属表面上存在的尖锐边缘和间隙中激发更强烈和更丰富的局部共振。 2D r-PCs是通过纳米压印纳米晶二氧化钛浆料,然后进行银涂层来制造的,从而产生了高度可再现的粗糙光子结构。通过检测两个分子:苯硫醇和4-巯基吡啶,测试了这些体系结构的SERS性能。对于苯硫醇,所得到的EF值超过10(7),而当使用4-巯基吡啶时,所得到的EF值超过10(10)。这些纳米压印基板表现出的简单制造策略和高性能使粗糙的等离子体结构成为廉价,高效批量生产的SERS基板最有希望的候选者之一。

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