Ouyang Zheng, Wu Guangxiang, Song Yishu, Li Hongyan, Plass Wolfgang R, Cooks R Graham
Department of Chemistry, Purdue University, West Lafayette, Indiana 47907-2084, USA.
Anal Chem. 2004 Aug 15;76(16):4595-605. doi: 10.1021/ac049420n.
A mass analyzer based on a rectilinear geometry ion trap (RIT) has been built, and its performance has been characterized. Design concepts for this type of ion trap are delineated with emphasis on the effects of electrode geometry on the calculated electric field. The Mathieu stability region was mapped experimentally. The instrument can be operated using mass-selective instability scans in both the boundary and resonance ejection versions. Comparisons of performance between different versions of the device having different dimensions allowed selection of an optimized geometry with an appropriate distribution of higher-order electric fields. Comparisons made under the same conditions between the performance of a conventional cylindrical ion trap and a RIT of 4 times greater volume show an improvement of 40 times in the signal-to-noise ratio resulting from the higher ion trapping capacity of the RIT. The demonstrated capabilities of the RIT include tandem mass spectrometry, a mass resolution in excess of 1000, and a mass/charge range of 650 Th, all in a simple structure that is only 3.5 cm(3) in internal volume.
基于直线型几何离子阱(RIT)的质量分析仪已被制造出来,并对其性能进行了表征。阐述了这种类型离子阱的设计概念,重点强调了电极几何形状对计算电场的影响。通过实验绘制了马蒂厄稳定区域。该仪器可以在边界和共振喷射版本中使用质量选择性不稳定扫描进行操作。对具有不同尺寸的不同版本设备的性能进行比较,从而选择具有适当高阶电场分布的优化几何形状。在相同条件下,将传统圆柱形离子阱与体积大四倍的RIT的性能进行比较,结果表明,由于RIT具有更高的离子捕获能力,信噪比提高了40倍。RIT展示出的能力包括串联质谱分析、超过1000的质量分辨率以及650 Th的质荷比范围,且其结构简单,内部体积仅为3.5 cm³。