2015
DOI: 10.1002/rcm.7119
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Schlieren visualization of fluid dynamics effects in direct analysis in real time mass spectrometry

Abstract: The real-time Schlieren visualizations introduced in this work provide new insight on the fluid dynamics within the DART-MS sample gap while also helping to identify those experimental parameters requiring optimization for improved transmission.

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Cited by 15 publications
(8 citation statements)
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“…Mass spectra were simplified and provided supplemental information to conventional DART methods. Schlieren photography was employed in order to view the flow of helium gas at the atmospheric pressure interface of a DART ion source by Curtis and colleagues . Effects of various DART parameters and sample probe configurations on disturbances or disruptions of gas flow were studied.…”
Section: Discharge-based Ambient Ionizationmentioning
confidence: 99%
“…Mass spectra were simplified and provided supplemental information to conventional DART methods. Schlieren photography was employed in order to view the flow of helium gas at the atmospheric pressure interface of a DART ion source by Curtis and colleagues . Effects of various DART parameters and sample probe configurations on disturbances or disruptions of gas flow were studied.…”
Section: Discharge-based Ambient Ionizationmentioning
confidence: 99%
“…The sudden disappearance of ion signal in the mass spectrum suggests the importance of a gas ow in facilitating the transport of analyte ions to the mass spectrometerthe instrument's vacuum system alone might not be sufficient for this purpose. Recent ADI-MS experiments in our group 20 and by others 21 has explored these transport phenomena in greater depth, but more work is needed to fully decouple the forces of the gas ow and the vacuum of the instrument. In contrast, when the helium ow is restored, it takes a nite time for a solid sample to be heated and for atmospheric constituents (those that have diffused into the cell in the absence of gas ow) to be expelled from the FAPA cell and for normal ionization and gas-ow conditions to be reestablished.…”
Section: Determination Of Optimal Sampling Periodmentioning
confidence: 99%
“…Briefly, a coated blade was removed from the microcentrifuge tube, mounted to a linear rail attached to the VAPUR interface, and then slid into position between the DART plasma exit and the mass spectrometer atmospheric pressure inlet. The flat nature of the CBS substrate ensured that the fluid dynamics were favorable for effective ion injection [ 38 ]. After desorption of VOCs from the blade by DART for 60 s, the blade was retracted and a new blade was mounted on the rail for conducting the next analysis.…”
Section: Methodsmentioning
confidence: 99%