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    • 77. 发明申请
    • SELF-COLLECTING SERS SUBSTRATE
    • 自拍收藏
    • US20120281212A1
    • 2012-11-08
    • US13384954
    • 2010-01-29
    • David FattalZhiyong Li
    • David FattalZhiyong Li
    • G01N21/01G01N21/65
    • 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 analystes 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),其建立在所述第一表面上并且与所述多个开口可操作地相关联,使得分析物(18)暴露于所述光引起所述分析物在所述纳米天线附近的优先聚集。 提供了用于使金属纳米天线(14)吸引分析物18)和使用基板(10)进行表面增强拉曼光谱的系统(50)和用于增加表面增强拉曼光谱信号的方法的系统(50) 。
    • 80. 发明授权
    • Method of positioning catalyst nanoparticle and nanowire-based device employing same
    • 使用其的催化剂纳米颗粒和基于纳米线的装置的定位方法
    • US08268720B2
    • 2012-09-18
    • US11742310
    • 2007-04-30
    • Theodore I. KaminsZhiyong LiDuncan R. Stewart
    • Theodore I. KaminsZhiyong LiDuncan R. Stewart
    • H01L21/4763
    • H01L29/0665B81B2201/0271B81C1/00142B82Y10/00B82Y30/00H01L23/53276H01L29/0673H01L29/0676H01L2221/1094H01L2924/0002H01L2924/00
    • A method of positioning a catalyst nanoparticle that facilitates nanowire growth for nanowire-based device fabrication employs a structure having a vertical sidewall formed on a substrate. The methods include forming the structure, forming a targeted region in a surface of either the structure or the substrate, and forming a catalyst nanoparticle in the targeted region using one of a variety of techniques. The techniques control the position of the catalyst nanoparticle for subsequent nanowire growth. A resonant sensor system includes a nanowire-based resonant sensor and means for accessing the nanowire. The sensor includes an electrode and a nanowire resonator. The electrode is electrically isolated from the substrate. One or more of the substrate is electrically conductive, the nanowire resonator is electrically conductive, and the sensor further comprises another electrode. The nanowire resonator responds to an environmental change by displaying a change in oscillatory behavior.
    • 定位促进用于纳米线的器件制造的纳米线生长的催化剂纳米颗粒的方法采用具有形成在衬底上的垂直侧壁的结构。 所述方法包括形成结构,在结构或基底的表面中形成目标区域,并使用各种技术之一在目标区域中形成催化剂纳米颗粒。 该技术控制催化剂纳米颗粒在随后的纳米线生长中的位置。 谐振传感器系统包括基于纳米线的谐振传感器和用于访问纳米线的装置。 传感器包括电极和纳米线谐振器。 电极与衬底电隔离。 衬底中的一个或多个是导电的,纳米线谐振器是导电的,并且传感器还包括另一个电极。 纳米线谐振器通过显示振荡行为的变化来响应环境变化。