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Perforated nanocap array: Facile fabrication process and efficient surface enhanced Raman scattering with fluorescence suppression 下载免费PDF全文
Recently, individual reduced-symmetry metal nanostructures and their plasmonic properties have been studied extensively. However, little attention has been paid to the approach to fabricating ordered reduced-symmetry metal nanostructure arrays. In this paper, a novel perforated silver nanocap array with high surface-enhanced Raman scattering (SERS) activity and fluorescence suppression is reported. The array is fabricated by electron beam evaporating Ag onto the perforated barrier layer side of a hard anodization (HA) anodic aluminum oxide (AAO) template. The morphology and optical property of the perforated silver nanocap array are characterized by an atomic force microscope (AFM), a scanning electron microscope (SEM), and absorption spectra. The results of SERS measurements reveal that the perforated silver nanocap array offers high SERS activity and fluorescence suppression compared with an imperforated silver nanocap array. 相似文献
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喹啉混合物斑贴膜片,主药成分为喹啉那多和氯碘喹啉。该斑贴膜片主要用于Ⅳ型变态反应的检测[1],使用者将斑贴膜片贴于皮肤上,若出现红肿、瘙痒等症状则表明使用者对这些药物存在过敏。建立快速、有效的测定喹啉那多和氯碘喹啉混合物含 相似文献
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在溶剂热反应条件下(180℃),利用还原剂金属钾对卤代苯(溴苯和二溴苯)中的C—Br键进行选择性裂解,而含氢的碳六元环仍稳定且之间可以发生聚合成键,成功合成了2种不同的氢化石墨纳米结构,获得的产物分别呈黄褐色和黑色.拉曼和红外光谱分析结果表明,黑色产物为尺寸约2 nm的氢化石墨纳米片,而黄褐色样品为尺寸更小的氢化碳纳米结构;X射线衍射分析结果表明,2种产物都具有菱方结构但结晶性较低.对合成的氢化石墨纳米结构的荧光性质分析发现,样品具有尺寸相关的荧光现象,同等激发条件下,尺寸较小的黄褐色样品的发光强度约为黑色样品的15倍. 相似文献
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