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Dispersion of nanospheres on large glass substrate by amorphous or polycrystalline silicon deposition for localized surface plasmon resonance

机译:通过非晶或多晶硅沉积将纳米球分散在大型玻璃基板上,以实现局部表面等离子体共振

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摘要

Nanosphere lithography is a cost-effective way to fabricate noble metal nanostructures for plasmonics. However, dispersing nanospheres on a large area of glass substrate is a difficulty encountered when transparent substrate is required in applications such as localized surface plasmon resonance or surface enhanced Raman spectroscopy. Because poly(diallyldimethyl ammonium chloride) (PDDA) on silicon surface introduces a force that can disperse nanospheres on silicon, in this article, we modify the glass surface through amorphous or polycrystalline silicon deposition and thus well disperse polystyrene or silica nanospheres over a glass area of more than 2 cm × 2 cm. Transmission loss of the glass substrate caused by amorphous or polycrystalline silicon deposition is analyzed with good agreement to experimental spectra, and localized surface plasmon resonance signals generated from the gold nanostructures fabricated on these substrates are measured and yield a sensitivity of 317 nm/RIU, which prove the feasibility and effectiveness of our method.
机译:纳米球光刻技术是一种用于制造等离子波的贵金属纳米结构的经济有效的方法。然而,当在诸如局部表面等离振子共振或表面增强拉曼光谱法的应用中需要透明基板时,将纳米球分散在大面积的玻璃基板上是困难的。由于硅表面的聚二烯丙基二甲基氯化铵(PDDA)引入了一种可以将纳米球分散在硅上的力,因此在本文中,我们通过无定形或多晶硅沉积来修饰玻璃表面,从而将聚苯乙烯或二氧化硅纳米球很好地分散在玻璃区域上超过2厘米×2厘米。分析了由非晶态或多晶硅沉积引起的玻璃基板的传输损耗,与实验光谱吻合良好,并且测量了由在这些基板上制造的金纳米结构产生的局部表面等离子体共振信号,并得出了317 nm / RIU的灵敏度。证明了我们方法的可行性和有效性。

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