A high dynamic range pulse counting detection system for mass spectrometry (vol 28, pg 209, 2013)

RAPID COMMUNICATIONS IN MASS SPECTROMETRY(2014)

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摘要
RATIONALEA high dynamic range pulse counting system has been developed that demonstrates an ability to operate at up to 2e8 counts per second (cps) on a triple quadrupole mass spectrometer. Previous pulse counting detection systems have typically been limited to about 1e7 cps at the upper end of the systems dynamic range. Modifications to the detection electronics and dead time correction algorithm are described in this paper. METHODSA high gain transimpedance amplifier is employed that allows a multi-channel electron multiplier to be operated at a significantly lower bias potential than in previous pulse counting systems. The system utilises a high-energy conversion dynode, a multi-channel electron multiplier, a high gain transimpedance amplifier, non-paralysing detection electronics and a modified dead time correction algorithm. Modification of the dead time correction algorithm is necessary due to a characteristic of the pulse counting electronics. RESULTSA pulse counting detection system with the capability to count at ion arrival rates of up to 2e8 cps is described. This is shown to provide a linear dynamic range of nearly five orders of magnitude for a sample of aprazolam with concentrations ranging from 0.0006970ng/mL to 3333ng/mL while monitoring the m/z 309.1m/z 205.2 transition. This represents an upward extension of the detector's linear dynamic range of about two orders of magnitude. CONCLUSIONSA new high dynamic range pulse counting system has been developed demonstrating the ability to operate at up to 2e8 cps on a triple quadrupole mass spectrometer. This provides an upward extension of the detector's linear dynamic range by about two orders of magnitude over previous pulse counting systems. Copyright (c) 2013 John Wiley & Sons, Ltd.
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high dynamic range pulse,spectrometry,dynamic range,detection system
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