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    • 1. 发明授权
    • System and methods for controlling properties of nanojunction devices
    • 用于控制纳米结器件性能的系统和方法
    • US08196218B2
    • 2012-06-05
    • US12414069
    • 2009-03-30
    • Bingqian XuFan Chen
    • Bingqian XuFan Chen
    • G01Q60/40
    • G01Q60/30G01Q60/40
    • An exemplary, highly integrated, SPM-based system for measuring the conductivity and/or force of substance under programmable engaging/stretching processes is described. A sample bias is applied across two electrodes. A substance to be measured is sandwiched between them. A first electrode is first brought relative to a second electrode (engaging) in programmable pathways that can be described as stretching distance versus time curves. The process of engaging the electrodes continues until a certain current reached, a certain force reached and whichever case happens first. The electrodes are then separated (stretching) in programmable pathways that can be described as stretching distance versus time curves. A periodic modulation can be applied to the engaging/stretching process to realize different stretch pathways. The sample bias across the electrodes is kept constant or swept in a programmable shape over time, described as a voltage-versus time curve. The conductivity, engaging/stretching distance, and/or force are measured simultaneously.
    • 描述了用于在可编程接合/拉伸过程下测量物质的导电性和/或力的示例性,高度集成的基于SPM的系统。 样品偏置被施加在两个电极上。 被测物质夹在它们之间。 首先将第一电极相对于可描述为拉伸距离与时间曲线的可编程路径中的第二电极(接合)相接触。 接合电极的过程继续进行直到达到一定电流,达到一定的力并且首先发生任何情况。 然后在可编程路径中分离(拉伸)电极,可以描述为拉伸距离对时间曲线。 周期调制可以应用于接合/拉伸过程以实现不同的拉伸路径。 跨越电极的样品偏置保持恒定或随时间扫描为可编程形状,被描述为电压对时间曲线。 同时测量电导率,接合/拉伸距离和/或力。
    • 2. 发明申请
    • SYSTEM AND METHODS FOR CONTROLLING PROPERTIES OF NANOJUNCTION DEVICES
    • 用于控制纳米器件性质的系统和方法
    • US20090249522A1
    • 2009-10-01
    • US12414069
    • 2009-03-30
    • Bingqian XuFan Chen
    • Bingqian XuFan Chen
    • G12B21/08
    • G01Q60/30G01Q60/40
    • An exemplary, highly integrated, SPM-based system for measuring the conductivity and/or force of substance under programmable engaging/stretching processes is described. A sample bias is applied across two electrodes. A substance to be measured is sandwiched between them. A first electrode is first brought relative to a second electrode (engaging) in programmable pathways that can be described as stretching distance versus time curves. The process of engaging the electrodes continues until a certain current reached, a certain force reached and whichever case happens first. The electrodes are then separated (stretching) in programmable pathways that can be described as stretching distance versus time curves. A periodic modulation can be applied to the engaging/stretching process to realize different stretch pathways. The sample bias across the electrodes is kept constant or swept in a programmable shape over time, described as a voltage-versus time curve. The conductivity, engaging/stretching distance, and/or force are measured simultaneously.
    • 描述了用于在可编程接合/拉伸过程下测量物质的导电性和/或力的示例性,高度集成的基于SPM的系统。 样品偏置被施加在两个电极上。 被测物质夹在它们之间。 首先将第一电极相对于可描述为拉伸距离对时间曲线的可编程路径中的第二电极(接合)。 接合电极的过程继续进行直到达到一定电流,达到一定的力并且首先发生任何情况。 然后在可编程路径中分离(拉伸)电极,可以描述为拉伸距离对时间曲线。 周期调制可以应用于接合/拉伸过程以实现不同的拉伸路径。 跨越电极的样品偏置保持恒定或随时间扫描为可编程形状,被描述为电压对时间曲线。 同时测量电导率,接合/拉伸距离和/或力。