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Surface-enhanced Raman scattering substrates of flat and wrinkly titanium nitride thin films by sputter deposition

机译:通过溅射沉积的表面增强拉曼散射基板和棕色氮化钛薄膜薄膜

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摘要

Titanium nitride (TiN) thin films were prepared by RF magnetron sputtering on a bare Si surface and a silicone oil-covered Si surface as surface-enhanced Raman scattering (SERS) substrates. The TiN film deposited on the bare Si surface had a flat surface with densely packed grains measuring 18 nm in diameter, whereas the TiN film deposited on the oil surface had a wrinkly pattern made of grains measuring 19 nm in diameter. To analyze the SERS effect, Rhodamine 6G (R6G) was used as a Raman probe molecule at various concentrations ranging from 10(-4) to 10(-8) M. The analytical enhancement factor (AEF) values at 10(-6) M R6G were respectively 6.2 x 10(3) and 1.3 x 10(4) for the flat TiN film and wrinkly TiN film. The SERS effect could be attributed to the enhancement of the local electromagnetic field at the top of the nano-sized grains. The wrinkly TiN film had a higher AEF than the flat TiN film, possibly due to the increased area of the Raman active spots. The wrinkly TiN film exhibited high level of SERS activity and achieved an R6G detection limit of 10(-8) M.
机译:通过RF磁控管溅射在裸SI表面上和硅油覆盖的Si表面作为表面增强拉曼散射(SERS)基板来制备氮化钛(锡)薄膜。沉积在裸SI表面上的锡膜具有平坦的表面,其直径为18nm的密集填充晶粒,而沉积在油表面上的锡膜具有由测量的19nm的颗粒制成的碎片图案。为了分析SERS效应,罗丹明6G(R6G)用作各种浓度的拉曼探针分子,其各种浓度为10(4)至10(-8)M. 10(-6)的分析增强因子(AEF)值对于平锡膜和碎锡膜,M r6g分别为6.2×10(3)和1.3×10(4)。 SERS效应可归因于纳米尺寸晶粒顶部的局部电磁场的增强。皱纹锡膜的氧化纤维比扁平锡膜更高,可能是由于拉曼有源点的增加的面积。碎片锡膜表现出高水平的SERS活动,并实现了R6G检测限为10(-8)米。

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