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Thermally Assisted Infrared Multiphoton Photodissociation in a Quadrupole Ion Trap

机译:四极杆离子阱中的热辅助红外多光子光解离

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Thermally assisted infrared multiphoton photodissociation (TA-IRMPD) provides an effective means to dissociate ions in the quadrupole ion trap mass spectrometer (QITMS) without detrimentally affecting the performance of the instrument. IRMPD can offer advantages over collision-induced dissociation (CID). However, collisions with the QITMS bath gas at the standard pressure and ambient temperature cause IR-irradiated ions to lose energy faster than photons can be absorbed to induce dissociation. The low pressure required for IRMPD (≤10~(-5) Torr) is not that required for optimal performance of the QITMS (10~(-3) Torr), and sensitivity and resolution suffer. TA-IRMPD is performed with the bath gas at an elevated temperature. The higher temperature of the bath gas results in less energy lost in collisions of the IR-excited ions with the bath gas. Thermal assistance allows IRMPD to be used at or near optimal pressures, which results in an ~1 order of magnitude increase in signal intensity. Unlike CID, IRMPD allows small product ions, those less than about one-third the m/z of the parent ion, to be observed. IRMPD should also be more easily paired with fluctuating ion sources, as the corresponding fluctuations in resonant frequencies do not affect IRMPD. Finally, while IR irradiation nonselectively causes dissociation of all ions, TA-IRMPD can be made selective by using axial expansion to move ions away from the path of the laser beam.
机译:热辅助红外多光子光解离(TA-IRMPD)提供了一种在四极杆离子阱质谱仪(QITMS)中解离离子的有效方法,而不会不利地影响仪器的性能。 IRMPD可以提供优于碰撞诱导解离(CID)的优势。但是,在标准压力和环境温度下与QITMS浴气体的碰撞会导致IR辐射的离子失去能量的速度快于光子的吸收速度,从而引起离解。 IRMPD(≤10〜(-5)Torr)所需的低压不是QITMS最佳性能所需的低压(10〜(-3)Torr),并且灵敏度和分辨率会受到影响。 TA-IRMPD是在高温下用浴气进行的。浴气体的较高温度导致在红外激发离子与浴气体碰撞中损失的能量减少。热辅助使IRMPD可以在最佳压力或最佳压力下使用,这会导致信号强度增加约1个数量级。与CID不同,IRMPD允许观察到小的产物离子,这些离子小于母离子的m / z的三分之一。 IRMPD还应该更容易与波动的离子源配对,因为谐振频率的相应波动不会影响IRMPD。最后,尽管红外辐射非选择性地导致所有离子解离,但可以通过使用轴向扩展使离子远离激光束路径来使TA-IRMPD具有选择性。

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