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Method to Perform Beam-Type Collision-Activated Dissociation in the Pre-Existing Ion Injection Pathway of a Mass Spectrometer

机译:在质谱仪预先存在的离子注入途径中进行束型碰撞激活解离的方法

摘要

Described herein are methods and systems related to the use of the pre-existing ion injection pathway of a mass spectrometer to perform beam-type collision-activated dissociation, as well as other dissociation methods. The methods can be practiced using a wide range of mass spectrometer configurations and allows MSn experiments to be performed on very basic mass spectrometers, even those without secondary mass analyzers and/or collision cells. Following injection and selection of a particular ion type or population, that population can be fragmented via beam-type collision-activated dissociation (CAD), as well as other dissociation methods, using the pre-existing ion injection pathway or inlet of a mass spectrometer. For CAD applications, this is achieved by transmitting the ions back along the ion injection pathway with a high degree of kinetic energy. As the ions pass into the higher pressure regions located in or near the atmospheric pressure inlet, the ions are fragmented and then trapped. Following fragmentation and trapping, the ions can either be re-injected into the primary ion selection device or sent on to a secondary mass analyzer.
机译:本文描述了与使用质谱仪的预先存在的离子注入路径来执行束型碰撞激活解离有关的方法和系统,以及其他解离方法。该方法可使用多种质谱仪配置进行实践,并允许在非常基本的质谱仪上进行MS n 实验,即使没有二级质谱仪和/或碰撞池的质谱仪也是如此。在注入并选择了特定的离子类型或离子群后,可以使用预先存在的离子注入路径或质谱仪的入口,通过束型碰撞激活解离(CAD)以及其他解离方法,将该离子群破碎。对于CAD应用,这是通过以高动能将离子沿着离子注入路径传回来实现的。当离子进入位于大气压入口处或附近的高压区域时,离子会碎裂然后被捕获。裂解和捕获后,可以将离子重新注入一级离子选择设备中或发送到二级质量分析器中。

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