Boldin Ivan A, Nikolaev Eugene N
Institute for Energy Problems of Chemical Physics, Russian Academy of Sciences, Moscow, Russia.
Rapid Commun Mass Spectrom. 2009 Oct;23(19):3213-9. doi: 10.1002/rcm.4231.
Peak coalescence, i.e. the merging of two close peaks in a Fourier transform ion cyclotron resonance (FTICR) mass spectrum at a high number of ions, plays an important role in various FTICR experiments. In order to describe the coalescence phenomenon we would like to propose a new theory of motion for ion clouds with close mass-to-charge ratios, driven by a uniform magnetic field and Coulomb interactions between the clouds. We describe the motion of the ion clouds in terms of their averaged drift motion in crossed magnetic and electric fields. The ion clouds are considered to be of constant size and their motion is studied in two dimensions. The theory deals with the first-order approximation of the equations of motion in relation to dm/m, where dm is the mass difference and m is the mass of a single ion. The analysis was done for an arbitrary inter-cloud interaction potential, which makes it possible to analyze finite-size ion clouds of any shape. The final analytical expression for the condition of the onset of coalescence is found for the case of uniformly charged spheres. An algorithm for finding this condition for an arbitrary interaction potential is proposed. The critical number of ions for the peak coalescence to take place is shown to depend quadratically on the magnetic field strength and to be proportional to the cyclotron radius and inversely proportional to the ion masses.
峰值合并,即在高离子数时傅里叶变换离子回旋共振(FTICR)质谱中两个相邻峰的合并,在各种FTICR实验中起着重要作用。为了描述合并现象,我们想提出一种新的离子云运动理论,该离子云具有相近的质荷比,由均匀磁场和云之间的库仑相互作用驱动。我们根据离子云在交叉磁场和电场中的平均漂移运动来描述其运动。离子云被认为具有恒定大小,并且其运动在二维空间中进行研究。该理论处理了运动方程相对于dm/m的一阶近似,其中dm是质量差,m是单个离子的质量。针对任意的云间相互作用势进行了分析,这使得分析任意形状的有限大小离子云成为可能。对于均匀带电球体的情况,找到了合并开始条件的最终解析表达式。提出了一种针对任意相互作用势找到此条件的算法。结果表明,发生峰值合并的临界离子数与磁场强度的平方成正比,与回旋半径成正比,与离子质量成反比。