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Micromachined Bradbury-Nielsen Gates

机译:微加工的布拉德伯里·尼尔森·盖茨

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摘要

Bradbury-Nielsen gates (BNGs) are a standard way for gating or steering beams of charged particles in ion mobility spectrometry and time-of-fiight mass spectrometry. They consist of a pair of interleaved electrodes that when at the same potential allow ions to pass through the electrodes undeflected and, when a voltage is applied, cause the ions to be deflected from their propagation axis. Previous efforts to construct such devices have relied on mechanical assembly by winding wires across an aperture. We describe a micromachining method for making monolithic BNGs using deep reactive ion etching of silicon-on-insulator wafers. This method enables the creation of electrodes with spacings ranging from 25 to 100 mu m with a thickness of 20 mu m, covering a 5 mm by 5 mm active area. We characterize the performance of these micromachined BNGs by ion imaging in a pseudorandom time-of-flight mass spectrometer.
机译:Bradbury-Nielsen门(BNG)是在离子迁移谱和飞行时间质谱中选通或控制带电粒子束的标准方法。它们由一对交错的电极组成,当电极处于相同电势时,它们允许离子不偏转地通过电极,并且当施加电压时,会使离子从其传播轴偏转。构造这种装置的先前努力依赖于通过在孔上缠绕导线来进行机械组装。我们描述了一种使用绝缘体上硅晶片的深反应离子刻蚀制造整体式BNG的微加工方法。这种方法可以创建间距为25到100微米,厚度为20微米的电极,覆盖5毫米乘5毫米的有效面积。我们通过伪随机飞行时间质谱仪中的离子成像来表征这些微加工BNG的性能。

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