AI Article Synopsis

  • The CRAFTI technique for measuring collision cross sections (CCS) faces challenges due to the need for accurate pressure measurements in the mass spectrometer and the requirement that ions must be similar in mass to the neutral particles.
  • The newly developed "multi-CRAFTI" method allows researchers to excite multiple ions simultaneously, enabling relative measurements of CCS without needing to know the exact pressure and facilitating absolute CCS measurements using internal standards.
  • Experimental results show that multi-CRAFTI produces CCS values in agreement with traditional methods, although it tends to yield smaller CCS due to higher collision energies; the study indicates that computational models may overestimate interactions among the ions, particularly at higher masses.

Article Abstract

Determination of collision cross sections (CCS) using the cross-sectional areas by the Fourier transform ion cyclotron resonance (CRAFTI) technique is limited by the requirement that accurate pressures in the trapping cell of the mass spectrometer must be known. Experiments must also be performed in the energetic hard-sphere regime such that ions decohere after single collisions with neutrals; this limits application to ions that are not much more massive than the neutrals. To mitigate these problems, we have resonantly excited two (or more) ions of different / to the same center-of-mass kinetic energy in a single experiment, subjecting them to identical neutral pressures. We term this approach "multi-CRAFTI". This facilitates measurement of relative CCS without requiring knowledge of the pressure and enables determination of absolute CCS using internal standards. Experiments with tetraalkylammonium ions yield CCS in reasonable agreement with the one-ion-at-a-time CRAFTI approach and with ion mobility spectrometry (IMS) when differences in collision energetics are taken into account (multi-CRAFTI generally yields smaller CCS than does IMS due to the higher collision energies employed in multi-CRAFTI). Comparison of multi-CRAFTI and IMS results with CCS calculated from structures computed at the M06-2X/6-31+G* level of theory using projection approximation or trajectory method values, respectively, indicates that the computed structures have CCS increasingly smaller than the experimental CCS as / increases, implying the computational model overestimates interactions between the alkyl arms. For ions that undergo similar collisional decoherence processes, relative CCS reach constant values at lower collision energies than do absolute CCS values, suggesting a means of increasing the accessible upper / limit by employing multi-CRAFTI.

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http://dx.doi.org/10.1021/jasms.1c00297DOI Listing

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