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The ion current can be as high as tens of nano-amps, one of the highest level reported for an integrated source in a micro mass spectrometer.
Based on the analysis of micro mass transfer mechanism of VOC molecules in building materials, this paper developed a theoretical prediction system for the characteristic parameters of the VOC emission from adsorbent blended building materials, by which the new VOC emission characteristics of the low-emission building materials can be predicted.
Electrospray ionisation mass spectrometry (ESI/MS) was performed on a Waters Micromass Q-Tof micro mass spectrometer with an upfront Waters CapLC inlet (Waters Corp., Milford, MA).
The protein samples were analyzed using a Waters ESI Q-TOF Micro mass spectrometer.
Mass spectrometry was conducted on a Waters Q-TOF micro mass spectrometer (Waters, Manchester, U.K). coupled to a CapLC device.
Peptide mass spectra were recorded using either a Waters 1525 µ HPLC or UPLC Aquity autosamplers equipped with LCT Premier XE or Q-Tof micro mass sensitive detectors, respectively.
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Obtained results are helpful to the design of SWCNT-based resonator as micro-mass sensor.
The potential of single-walled carbon nanotube (SWCNT) as a micro-mass sensor is explored.
Based on the nonlocal Timoshenko theory of beams, the transverse vibration of the SWCNT-based micro-mass sensor is analyzed.
The obtained results show that with increasing the attached micro-mass, the natural frequency decreases, but frequency shift increases.
A simply supported SLGS carrying a nanoparticle at any position is modeled as a rectangular nanoplate with a concentrated micro-mass.
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