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Gases and volatile liquid samples are allowed to leak into the ion source from a reservoir (as shown). This is called an EI (electron-impact) source. Here molecules of the sample (black dots) are bombarded by electrons (light blue lines) issuing from a heated filament. The heart of the spectrometer is the ion source. A mass spectrometer operating in this fashion is outlined in the following diagram. The ions are then detected electronically and the resulting information is stored and analyzed in a computer. In one common procedure, ionization is effected by a high energy beam of electrons, and ion separation is achieved by accelerating and focusing the ions in a beam, which is then bent by an external magnetic field. Each of the three tasks listed above may be accomplished in different ways.
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The pressure under which ions may be handled is roughly 10 -5 to 10 -8 torr (less than a billionth of an atmosphere). Atmospheric pressure is around 760 torr (mm of mercury). The Detectorīecause ions are very reactive and short-lived, their formation and manipulation must be conducted in a vacuum. The separated ions are then measured, and the results displayed on a chart. The ions are sorted and separated according to their mass and charge. A small sample is ionized, usually to cations by loss of an electron. The three essential functions of a mass spectrometer, and the associated components, are:ġ. In order to measure the characteristics of individual molecules, a mass spectrometer converts them to ions so that they can be moved about and manipulated by external electric and magnetic fields.
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