Normal-pressure micro-glow discharge desorption mass spectrum ion source and mass spectrometry device composed of ion source
A technique of glow discharge and mass spectrometry, which is applied in the direction of measuring devices, plasma, and analytical materials. It can solve the problems of high-energy sources and the complexity of mass spectrograms, and achieve the effects of easy-to-obtain materials, convenient manufacture, and easy disassembly and assembly.
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Embodiment 1
[0047] The structure of the desorption mass spectrometry ion source based on atmospheric pressure microglow discharge in this embodiment is as follows: Picture 1-1 , attached Figure 1-2 And attached Figure 1-3 As shown, the composition mainly includes a micro-plasma generation chamber processed on the base member 1, and a pair of platinum sheet-shaped electrodes embedded face-to-face on the upper and lower walls of the micro-plasma generation chamber for breakdown of the working gas to generate discharge. 2, and fixed on the inlet end of the micro-plasma generation chamber for connecting the gas path conversion joint 3 of the working gas introduction system, the base part is ceramics with a purity of not less than 96% of aluminum oxide, and the electrode 2 can be connected with The positive and negative poles of the DC stabilized power supply adjusted between 80 and 3000V are connected to form a circuit, and the two platinum electrodes are set at a distance of about 1 mm f...
Embodiment 2
[0049] The atmospheric pressure microglow discharge desorption mass spectrometry device of this embodiment mainly includes a working gas introduction system, the atmospheric pressure microglow discharge desorption mass spectrometry ion source described in Example 1, and a direct current whose voltage can be adjusted in the range of 80 to 3000V. Power supply, mass spectrometer and mass spectrometry data processing system. The normal-pressure microglow discharge desorption mass spectrometry ion source is clamped and fixed on a vertical rotating platform that can rotate within the range of 0-90° in the vertical direction, and the vertical rotating platform is arranged on a 3-dimensional (3D) translation platform. The working gas introduction system is a helium or argon cylinder equipped with a mass flow meter to ensure that the flow rate of helium or argon as a working gas in the micro-plasma generation chamber is controlled within the range of 0.5-2.5 L / min. The normal-pressure ...
Embodiment 3
[0051] The solid and liquid samples were analyzed using the atmospheric pressure microglow discharge desorption mass spectrometry device described in Example 2. Place the solid (or liquid) sample 10 on the carrier 11 between the plasma outlet of the ion source and the plasma gas inlet 8 of the mass spectrometer, so that the plasma gas ejected from the outlet of the ion source is aimed at the sample to be tested , so that the molecules on the surface of the sample are desorbed and ionized under the action of the plasma gas. The carrier of block, paste and liquid samples can be ordinary glass slides, filter paper, ceramic sheets, stainless steel sheets, etc. Liquid samples can also be placed directly in the container, and powder samples need to be fixed on the above-mentioned container with double-sided adhesive tape. Carrier and then detected to prevent the powder sample from entering the mass spectrometer with the airflow and blocking the inlet of the mass spectrometer. The h...
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