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Calibration of ion effective temperatures achieved by resonant activation in a quadrupole ion trap

机译:通过四极杆离子阱中的共振激活实现的离子有效温度的校准

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The present paper describes a calibration of the ion effective temperatures as a function of the resonant activation amplitude in a quadrupole ion trap mass spectrometer. MS/MS experiments are performed on leucine enkephalin (M + H)(+), bradykinin (M + H)(+), (M + 2H)(2+), and (M + 3H)(3+), and ubiquitin (M + 11H)(11+). For each amplitude, the effective temperature is calculated as the temperature that would give the same dissociation rate constant as the one observed and is calculated using published Arrhenius parameters. The effective temperature is found to be linearly dependent on the activation amplitude on the range investigated. The dependence of the slope and of the intercept of the T-eff = f (amplitude) functions on the parent ion m/z is examined and an equation is derived to calibrate the ion effective temperature between 365 and 600 K Below 365 K, a deviation from linearity is expected. Above 600 1 the validity of the equation will depend on whether the rapid energy exchange limit is still reached. Calculating backward, the Arrhenius parameters from the measured dissociation rates using this calibration show excellent agreement with the published values. The calibration can therefore be used to determine Arrhenius activation parameters from dissociation kinetics under resonant activation in quadrupole ion trap mass spectrometers. [References: 54]
机译:本文介绍了在四极杆离子阱质谱仪中,离子有效温度的校准与共振激活幅度的函数关系。对亮氨酸脑啡肽(M + H)(+),缓激肽(M + H)(+),(M + 2H)(2+)和(M + 3H)(3+)进行MS / MS实验泛素(M + 11H)(11+)。对于每个振幅,将有效温度计算为将给出与观察到的解离速率常数相同的解离速率常数的温度,并使用已发布的Arrhenius参数进行计算。发现有效温度与所研究范围内的活化幅度线性相关。检查了斜率和T-eff = f(振幅)函数的截距对母离子m / z的依赖性,并推导出了一个方程式,用于在365 K至600 K之间校准离子有效温度,低于365 K,线性偏差是可以预期的。高于600 1时,方程的有效性将取决于是否仍然达到快速的能量交换极限。向后计算,使用此校准方法从测得的解离速率得出的阿累尼乌斯参数与已公布的值非常吻合。因此,该校准可用于根据四极杆离子阱质谱仪中共振激活下的解离动力学确定Arrhenius激活参数。 [参考:54]

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