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    • 1. 发明授权
    • Luminescent chemical sensor integrated with at least one molecular trap
    • 与至少一个分子陷阱集成的发光化学传感器
    • US08404491B2
    • 2013-03-26
    • US12916299
    • 2010-10-29
    • Zhiyong LiMichael Josef StukeShih-Yuan WangHuei Pei Kuo
    • Zhiyong LiMichael Josef StukeShih-Yuan WangHuei Pei Kuo
    • G01N21/76
    • G01N33/5438B82Y15/00G01N21/648G01N21/658Y10T436/25
    • A luminescent chemical sensor integrated with at least one molecular trap. The luminescent chemical sensor includes at least one molecular trap and at least one metallic-nanofinger device integrated with at least one molecular trap. The molecular trap includes a plurality of electrodes that trap at least one analyte molecule. The metallic-nanofinger device includes a substrate, and a plurality of nanofingers coupled with the substrate. A nanofinger of the plurality includes a flexible column, and a metallic cap coupled to an apex of the flexible column. At least the nanofinger and a second nanofinger of the plurality of nanofingers are to self-arrange into a close-packed configuration with the analyte molecule. A method for using, and a chemical-analysis apparatus including the luminescent chemical sensor are also provided.
    • 与至少一个分子阱集成的发光化学传感器。 发光化学传感器包括至少一个分子阱和至少一个与至少一个分子陷阱集成的金属纳米酮装置。 分子阱包括捕获至少一种分析物分子的多个电极。 金属纳米装置包括衬底和与衬底耦合的多个纳米器件。 多个纳米针板包括柔性柱和联接到柔性柱的顶点的金属帽。 至少纳米角蛋白和多个纳米针的第二纳米梳理器将自分配成与分析物分子紧密堆积的构型。 还提供了使用方法和包括发光化学传感器的化学分析装置。
    • 7. 发明授权
    • Electrically driven devices for surface enhanced raman spectroscopy
    • 用于表面增强拉曼光谱的电驱动装置
    • US08559003B2
    • 2013-10-15
    • US13384456
    • 2009-09-17
    • Huei Pei KuoShih-Yuan WangMin HuZhiyong LiAlexandre M. Bratkovski
    • Huei Pei KuoShih-Yuan WangMin HuZhiyong LiAlexandre M. Bratkovski
    • G01J3/44
    • G01N21/658B82Y15/00B82Y30/00
    • An electrically driven device for surface enhanced Raman spectroscopy includes a first electrode, a substrate positioned proximate to the first electrode, a plurality of cone shaped protrusions formed integrally with or on a substrate surface, a Raman signal-enhancing material coated on each protrusion, and a second electrode positioned relative to the first electrode at a predetermined distance. Each of the protrusions has a tip with a radius of curvature ranging from about 0.1 nm to about 100 nm. The second electrode is positioned relative to the first electrode such that the electrodes together produce an electric field when a voltage bias is applied therebetween. The electric field has a field distribution that creates a stronger field gradient at a region proximate to the tips than at other portions of the substrate.
    • 用于表面增强拉曼光谱的电驱动装置包括第一电极,靠近第一电极定位的基板,与基底表面一体地形成的多个锥形突起,涂覆在每个突起上的拉曼信号增强材料,以及 相对于第一电极以预定距离定位的第二电极。 每个突起具有具有约0.1nm至约100nm范围的曲率半径的尖端。 第二电极相对于第一电极定位,使得当在其之间施加电压偏置时,电极一起产生电场。 电场具有场分布,其在靠近尖端的区域处产生比在衬底的其它部分更强的场梯度。