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    • 2. 发明授权
    • High throughput reproducible cantilever functionalization
    • 高通量可重复悬臂功能化
    • US08635711B1
    • 2014-01-21
    • US13613627
    • 2012-09-13
    • Barbara R. EvansIda Lee
    • Barbara R. EvansIda Lee
    • G01Q70/02
    • G01Q60/42B82Y35/00G01Q70/02G01Q70/06G01Q70/18
    • A method for functionalizing cantilevers is provided that includes providing a holder having a plurality of channels each having a width for accepting a cantilever probe and a plurality of probes. A plurality of cantilever probes are fastened to the plurality of channels of the holder by the spring clips. The wells of a well plate are filled with a functionalization solution, wherein adjacent wells in the well plate are separated by a dimension that is substantially equal to a dimension separating adjacent channels of the plurality of channels. Each cantilever probe that is fastened within the plurality of channels of the holder is applied to the functionalization solution that is contained in the wells of the well plate.
    • 提供了一种用于功能化悬臂的方法,其包括提供具有多个通道的保持器,每个通道具有用于接收悬臂探头和多个探针的宽度。 多个悬臂探针通过弹簧夹固定在保持器的多个通道上。 孔板的孔填充有官能化溶液,其中孔板中的相邻孔被分开大致等于分离多个通道的相邻通道的尺寸的尺寸。 固定在保持器的多个通道内的每个悬臂探头被施加到容纳在孔板的孔中的官能化溶液。
    • 3. 发明授权
    • Method of orienting molecular electronic components
    • 定向分子电子元件的方法
    • US06231983B1
    • 2001-05-15
    • US09181047
    • 1998-10-27
    • Ida LeeJames W. LeeElias Greenbaum
    • Ida LeeJames W. LeeElias Greenbaum
    • B32B1504
    • H01L51/0595B82Y10/00Y10S428/91Y10T428/31504Y10T428/31678
    • Molecular devices using functional Photosystem I reaction centers are prepared on flat derivatized substrate surfaces. The nature and extent of orientation are controlled by chemical modification of the surface derivative. The surface of the substrate is chemically modified such that the Photosystem I reaction centers may be immobilized in a desired orientation. Preferably, a sulfur-organic compound is used to chemically modify the surface of the substrate. Depending on the type of chemical modification, the orientation of the reaction centers may be parallel to the surface, perpendicular to the surface in the “up” position, or perpendicular to the surface in the “down” position. The different orientations provide different electrical characteristics to the device.
    • 使用功能性光系统I反应中心的分子装置在平坦衍生的基底表面上制备。 取向的性质和程度由表面衍生物的化学改性控制。 衬底的表面被化学修饰,使得光系统I反应中心可以以期望的取向固定。 优选地,使用硫 - 有机化合物来化学改性基材的表面。 取决于化学改性的类型,反应中心的取向可以平行于垂直于“向上”位置的表面或垂直于“向下”位置的表面的表面。 不同的方向为装置提供不同的电气特性。