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首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Improved ion extraction from a linear octopole ion trap: SIMION analysis and experimental demonstration
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Improved ion extraction from a linear octopole ion trap: SIMION analysis and experimental demonstration

机译:改进的线性八极杆离子阱离子提取:SIMION分析和实验演示

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Externally generated ions are accumulated in a linear octopole ion trap before injection into our 9.4 T Fourier transform ion cyclotron resonance (FT-ICR) mass analyzer. Such instrumental configuration has previously been shown to provide improved sensitivity, scan rate, and duty cycle relative to accumulated trapping in the ICR cell. However, inefficient ion ejection from the octopole currently limits both detection limit and scan rate. SIMION 7.0 analysis predicts that a dc axial electric field inside the linear octopole ion trap expedites and synchronizes the efficient extraction of the octopole-accumulated ions. Further SIMION analysis optimizes the ion ejection properties of each of three electrode configurations designed to produce a near-linear axial potential gradient. More efficient extraction and transfer of accumulated ions spanning a wide m/z range promises to reduce detection limit and increase front-end sampling rate (e.g., to increase front-end resolution for separation techniques coupled with FT-ICR mass analysis). Addition of the axial field improves experimental signal-to-noise ratio by more than an order of magnitude. (C) 2002 American Society for Mass Spectrometry. [References: 35]
机译:在注入到我们的9.4 T傅立叶变换离子回旋共振(FT-ICR)质量分析仪中之前,外部产生的离子会累积在线性八极杆离子阱中。相对于ICR单元中的累积俘获,先前已经证明这种仪器配置提供了改进的灵敏度,扫描速率和占空比。但是,目前从八极杆发出的离子效率低下,这限制了检测极限和扫描速率。 SIMION 7.0分析预测,线性八极杆离子阱内的直流轴向电场会加速并同步八极杆累积离子的有效提取。进一步的SIMION分析优化了三个电极配置中每一个的离子喷射特性,这些配置旨在产生近乎线性的轴向电势梯度。跨宽m / z范围的累积离子的更有效提取和转移有望降低检测限并提高前端采样率(例如,为结合FT-ICR质量分析的分离技术提高前端分辨率)。轴向场的增加将实验信噪比提高了一个数量级以上。 (C)2002美国质谱学会。 [参考:35]

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