CHEMICAL-ANALYSIS DEVICE INTEGRATED WITH METALLIC-NANOFINGER DEVICE FOR CHEMICAL SENSING
    8.
    发明申请
    CHEMICAL-ANALYSIS DEVICE INTEGRATED WITH METALLIC-NANOFINGER DEVICE FOR CHEMICAL SENSING 有权
    化学分析装置与化学传感器用金属纳米微粒器件集成

    公开(公告)号:US20150362486A1

    公开(公告)日:2015-12-17

    申请号:US14836795

    申请日:2015-08-26

    CPC classification number: G01N21/6428 G01N21/648 G01N21/658 G01N33/54373

    Abstract: A chemical-analysis device integrated with a metallic-nanofinger device for chemical sensing. The chemical-analysis device includes a metallic-nanofinger device, and a platform. 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 at least one analyte molecule. A morphology of the metallic cap is to generate a shifted plasmonic-resonance peak associated with amplified luminescence from the analyte molecule. A method for using, and a chemical-analysis apparatus including the chemical-analysis device are also provided.

    Abstract translation: 与用于化学感测的金属纳米酮装置集成的化学分析装置。 化学分析装置包括金属纳米装置和平台。 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角键将与至少一个分析物分子自组织成紧密堆积的构型。 金属帽的形态是产生与来自分析物分子的放大发光相关的移位等离子体共振峰。 还提供了一种使用方法和包括该化学分析装置的化学分析装置。

    ELECTRIC FIELD GENERATING APPARATUS FOR PERFORMING SPECTROSCOPY
    9.
    发明申请
    ELECTRIC FIELD GENERATING APPARATUS FOR PERFORMING SPECTROSCOPY 有权
    用于执行光谱的电场产生装置

    公开(公告)号:US20150362368A1

    公开(公告)日:2015-12-17

    申请号:US14835339

    申请日:2015-08-25

    CPC classification number: G01J3/4412 G01J3/0205 G01N21/658 Y10T29/49155

    Abstract: According to an example, an apparatus for performing spectroscopy includes a substrate on which a plurality of surface-enhanced spectroscopy (SES) elements are positioned substantially along a first plane. The apparatus also includes a first electrode positioned adjacent to the plurality of SES elements substantially along the first plane and a second electrode positioned adjacent to the plurality of SES elements substantially along the first plane and on a side of the plurality of SES elements that is opposite the first electrode. The first electrode and the second electrode are to generate an electric field around the plurality of SES elements when voltages are applied through the first electrode and the second electrode.

    Abstract translation: 根据一个实例,用于执行光谱学的装置包括基本上沿着第一平面定位多个表面增强光谱(SES)元件的基板。 该装置还包括基本上沿着第一平面邻近多个SES元件定位的第一电极和基本沿着第一平面定位成与多个SES元件相邻的第二电极,并且在与多个SES元件相对的多个SES元件的一侧 第一个电极。 当通过第一电极和第二电极施加电压时,第一电极和第二电极将在多个SES元件周围产生电场。

    SURFACE ENHANCED FLUORESCENCE SPECTROSCOPY APPARATUS
    10.
    发明申请
    SURFACE ENHANCED FLUORESCENCE SPECTROSCOPY APPARATUS 有权
    表面增强荧光光谱仪

    公开(公告)号:US20150355093A1

    公开(公告)日:2015-12-10

    申请号:US14762415

    申请日:2013-01-30

    Abstract: According to an example, methods for forming three-dimensional (3-D) nano-particle assemblies may include depositing surface-enhanced spectroscopy (SES) elements onto respective tips of nano-fingers, in which the nano-fingers are arranged in sufficiently close proximities to each other to enable the tips of groups of adjacent ones of the nano-fingers to come into sufficiently close proximities to each other to enable the SES elements on the tips to be bonded together when the nano-fingers are partially collapsed. The methods also include causing the nano-fingers to partially collapse toward adjacent ones of the nano-fingers to cause a plurality of SES elements on respective groups of the nano-fingers to be in relatively close proximities to each other and form respective clusters of SES elements, introducing additional particles that are to attach onto the clusters of SES elements, and causing the clusters of SES elements to detach from the nano-fingers.

    Abstract translation: 根据一个实例,用于形成三维(3-D)纳米颗粒组件的方法可以包括将表面增强光谱(SES)元件沉积到纳米手指的各个尖端上,其中纳米手指被布置成足够接近 使彼此相邻的纳米手指组的尖端彼此靠近,使得当纳米手指被部分塌陷时,尖端上的SES元件能够结合在一起。 所述方法还包括使纳米指部分相对于纳米手指部分地折叠,以使纳米手指的相应组上的多个SES元件彼此相对接近并形成相应的SES簇 引入附加到SES元件簇上的附加颗粒,并使SES元件簇与纳米手指分离。

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