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    • 52. 发明申请
    • METALLIC-NANOFINGER DEVICE FOR CHEMICAL SENSING
    • 用于化学传感的金属 - 纳米芬设备
    • WO2012054024A1
    • 2012-04-26
    • PCT/US2010/053304
    • 2010-10-20
    • HEWLETT-PACKARD DEVELOPMENT COMPANY, L.P.LI, ZhiyongWILLIAMS, R. Stanley
    • LI, ZhiyongWILLIAMS, R. Stanley
    • B82B1/00G01N33/483G01N21/27
    • G01N21/658G01N21/648
    • A metallic-nanofinger device (101) for chemical sensing. The device (101) includes a substrate (110), and a plurality (120) of nanofingers. A nanofinger (120-1) includes a flexible column (120-1A), and a metallic cap (120-1B) coupled to an apex (120-1C) of the flexible column (120-1A). At least the nanofinger (120-1) and a second nanofinger (120-2) are to self-arrange into a close-packed configuration with at least one analyte molecule (220-1) disposed between at least the metallic cap (120-1B) and a second metallic cap (120-2B) of respective nanofinger (120-1) and second nanofinger (120-2). A morphology of the metallic cap (120-1B) is to generate a shifted plasmonic-resonance peak (622) associated with amplified luminescence from the analyte molecule (220-1). A coating (120-1D) encapsulating the metallic cap (120-1B) to respond upon exposure to a liquid (212), and a chemical-sensing chip (701) including the metallic-nanofinger device (101) are also provided.
    • 一种用于化学感测的金属纳米装置(101)。 装置(101)包括基板(110)和多个(120)的纳米装置。 纳米针(120-1)包括柔性柱(120-1A)和耦合到柔性柱(120-1A)的顶点(120-1C)的金属盖(120-1B)。 至少纳米针(120-1)和第二纳米针(120-2)将自动排列成紧密构型,其中至少一个分析物分子(220-1)设置在至少金属盖(120- 1B)和相应的纳米针(120-1)和第二纳米片(120-2)的第二金属盖(120-2B)。 金属帽(120-1B)的形态是产生与来自分析物分子(220-1)的放大的发光相关的移位的等离子体共振峰(622)。 还提供了封装金属盖(120-1B)以在暴露于液体(212)时响应的涂层(120-1D),以及包括金属纳米酮装置(101)的化学感测芯片(701)。
    • 55. 发明申请
    • SELF-COLLECTING SERS SUBSTRATE
    • 自拍收藏
    • WO2011093879A1
    • 2011-08-04
    • PCT/US2010/022579
    • 2010-01-29
    • HEWLETT-PACKARD DEVELOPMENT COMPANY, L.P.FATTAL, DavidLI, Zhiyong
    • FATTAL, DavidLI, Zhiyong
    • G01J3/44G01N21/65
    • G01N21/658B82Y20/00G01N21/554G01N21/7743
    • A self-collecting substrate (10) for surface enhanced Raman spectroscopy having a first surface (10a) and a second surface (10b) opposed thereto, comprising: a waveguiding layer (10') supported on a support layer (10"), with the waveguiding layer associated with the first surface and the support layer associated with the second surface; and a plurality of metal nano-antennae (14) established on the first surface and operatively associated with the plurality of openings such that exposure of analyte (18) to the light causes preferential aggregation of the analytes in the vicinity of the nano-antennae. A system (50) for at least one of attracting the analytes 18) to the metal nano-antennae (14) and performing surface enhanced Raman spectroscopy using the substrate (10) and a method for increasing a signal for surface enhanced Raman spectroscopy are provided.
    • 一种用于表面增强拉曼光谱的自动采集衬底(10),具有与其相对的第一表面(10a)和第二表面(10b),包括:支撑在支撑层(10“)上的波导层(10'), 与第一表面相关联的波导层和与第二表面相关联的支撑层;以及多个金属纳米天线(14),其建立在第一表面上并与多个开口可操作地相关联,使得分析物(18) 对于光引起分析物在纳米天线附近的优先聚集,用于将金属纳米天线(14)吸引到分析物18)中的至少一种的系统(50),并使用 提供了基板(10)和增加表面增强拉曼光谱信号的方法。