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    • 3. 发明授权
    • Electrostatic nanolithography probe actuation device and method
    • 静电纳米光刻探头致动装置及方法
    • US07247895B2
    • 2007-07-24
    • US11377629
    • 2006-03-16
    • Chang LiuDavid Andrew Bullen
    • Chang LiuDavid Andrew Bullen
    • H01L27/148H01L29/768
    • G01Q70/06G01Q70/16G01Q80/00G03F7/0002
    • Method and apparatus for selectively actuating a cantilevered probe for applying a compound to a substrate in nanolithography. A probe having a probe electrode and a substrate having a counter electrode are provided. Voltage applied to the probe electrode and/or counter electrode provides electrostatic attraction between them, moving a probe tip into sufficient proximity to the substrate to apply the patterning compound. Alternatively, a flexible cantilevered probe anchored to a holder includes a layer of conductive material forming a probe electrode. A counter electrode on the holder faces the probe electrode. The holder and probe are positioned so that a probe tip applies the compound to the substrate. The probe is disposed between the substrate and the counter electrode. An electrostatic attractive force generated between the probe electrode and the counter electrode flexes the probe and lifts the tip away from the substrate to suspend writing.
    • 用于在纳米光刻中选择性地致动用于将化合物施加到基底的悬臂探针的方法和装置。 提供具有探针电极和具有对电极的基板的探针。 施加到探针电极和/或对电极的电压在它们之间提供静电吸引,将探针尖端移动到足够接近衬底以施加图案化化合物。 或者,固定到保持器的柔性悬臂式探针包括形成探针电极的导电材料层。 保持器上的对电极面向探针电极。 定位器和探针被定位成使得探针尖端将化合物施加到基底上。 探针设置在基板和对置电极之间。 在探针电极和对置电极之间产生的静电吸引力使探针弯曲并将尖端远离衬底提升以暂停写入。
    • 6. 发明授权
    • Pipette configurations and arrays thereof for measuring cellular electrical properties
    • 移液器配置及其阵列用于测量蜂窝电气性能
    • US07182915B2
    • 2007-02-27
    • US10305801
    • 2002-11-27
    • Andrew BullenCharles David Weaver
    • Andrew BullenCharles David Weaver
    • B01L3/02G01N1/14
    • G01N33/48728B01L3/021B01L2200/0668B01L2200/12B01L2300/0645G01N33/5005
    • The present application is directed to pipette configurations, arrays of the same and methods for using such pipettes and arrays to accomplish electrical measurements, including whole cell and on cell measurements. In one aspect of the present invention, a pipette includes a hollow tubular section having a distal portion and a tip portion. A bubble is formed at the tip and includes an interior chamber in communication with the hollow tubular section at an end adjacent to the bubble portion. The bubble may have a diameter greater than the diameter of an adjacent portion of the hollow tubular section. An aperture is formed between the internal chamber and an exterior surface of the bubble to accommodate seal formation. In a second aspect of the present invention, a method for forming a glass pipette of the present invention is provided which includes the following steps: (1) heating a glass tube, (2) pulling the glass tube to form a blunt tip, (3) heating the blunt tip, and (4) applying back pressure from the tube to form a bubble including an aperture from the blunt tip.
    • 本申请涉及移液器配置,相同的阵列以及使用这种移液管和阵列来完成电测量的方法,包括全细胞和细胞测量。 在本发明的一个方面,移液管包括具有远侧部分和末端部分的中空管状部分。 气泡形成在尖端处,并且包括在与气泡部分相邻的端部处与中空管状部分连通的内部室。 气泡的直径可以大于中空管状部分的相邻部分的直径。 在内部腔和气泡的外表面之间形成一个孔,以适应密封形成。 在本发明的第二方面中,提供了一种本发明的玻璃移液管的形成方法,包括以下步骤:(1)加热玻璃管,(2)拉动玻璃管以形成钝头( 3)加热钝头,(4)从管中施加背压以形成包括钝头的孔的气泡。