Ion dissociation method based on quadrupole rod-ion trap tandem mass spectrometer
An ion trap and quadrupole technology, applied in the field of mass spectrometry, can solve problems such as application limitations, achieve the effects of reduced storage capacity, time saving, and improved analysis speed
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Embodiment 1
[0042]1ppm reserpine was injected into the mass spectrometer at a flow rate of 5uL / min, and was ionized using an electrospray ionization source (ESI), and the ion capture time was about 10ms. The value of q was chosen as 0.3. A certain radio-frequency (radio-frequency, RF) alternating electric field and direct current (DC) electric field are applied to the quadrupole, so that the target ions can be screened out. The target ions then enter the ion trap where they are stored. Finally, the target ions are ejected by applying an excitation electric field, and the detection of the target ions is completed by the detection equipment. The detection of the target ions is as follows: Figure 5 shown.
[0043] 1ppm reserpine was injected into the mass spectrometer at a flow rate of 5uL / min, and was ionized using an electrospray ionization source (ESI), and the ion capture time was about 10ms. The value of q was chosen as 0.3. A certain radio-frequency (radio-frequency, RF) alternati...
Embodiment 2
[0048] Two peptides with the same mass number but different structures were prepared in the laboratory, namely VVFFGG and GVFGVF, both of which have a mass-to-charge ratio of 625, and the mass-to-charge ratio of the characteristic fragment ion of the target ion VVFFGG is 460.4. 10 ml of the 20 μmol / L solutions were taken and mixed to obtain 20 ml of mixed solutions with respective concentrations of 10 μmol / L.
[0049] It was ionized using an electrospray ionization source (ESI), the ion capture time was about 500ms, the q value was selected as 0.3, and the injection speed was 5uL / min. A certain radio-frequency (radio-frequency, RF) alternating electric field and direct current (DC) electric field are applied to the quadrupole, so that the target ions can be screened out. The target ions then enter the ion trap where they are stored. Finally, the target ions are ejected by applying an excitation electric field, and the detection of the target ions is completed by the detection...
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