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The 'hybrid cell': a new compensated infinity cell for larger radius ion excitation in Fourier transform ion cyclotron resonance mass spectrometry

机译:“混合池”:一种新型补偿无穷大池,用于傅里叶变换离子回旋共振质谱中的较大半径离子激发

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摘要

A new 'hybrid' ion cyclotron resonance OCR) trap is proposed and analyzed by computer simulations. The trap is basically a hybrid of a segmented end cap (Infinity) and capacitively coupled cylindrical cell, with additional electrodes placed at the center of each end cap. The new trap produces an on-axis electric field z-profile similar to that of the Infinity cell or capacitively coupled open cylindrical cell during ion excitation. Simion simulations demonstrate that, during detection, appropriate changes of the potentials applied to the two new sets of electrodes produce a radial electric field z-profile that more closely approaches that for an ideal axial three-dimensional quadrupolar potential at high post-excitation ICR orbital radius, for improved signal-to-noise ratio and resolving power, and minimal m/z-discrimination. Copyright (c) 2008 John Wiley & Sons, Ltd.
机译:提出了一种新的“混合”离子回旋共振OCR)阱,并通过计算机仿真对其进行了分析。捕集阱基本上是分段端盖(Infinity)和电容耦合圆柱单元的混合体,附加电极位于每个端盖的中心。在离子激发过程中,新阱产生的轴向电场z轮廓类似于Infinity池或电容耦合的开孔圆柱形池的电场。 Simion仿真表明,在检测过程中,施加在两组新电极上的电势的适当变化会产生一个径向电场z轮廓,该轮廓更接近于在高激发后ICR轨道上理想的轴向三维四极电位半径,以改善信噪比和分辨能力,并最小化m / z区分。版权所有(c)2008 John Wiley&Sons,Ltd.

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