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Application of a Gradient-Threaded Discrete Twisted Dipole Ion Guide (GTDIG) for High-Efficiency Ion Propulsion and
Zhihao He1, Xingliang He1, Fulong Deng1
1Research Center of Analytical Instrumentation, School of Mechanical Engineering, Sichuan University, Chengdu 610065, People's Republic of China.
None:
In mass spectrometry (MS), the radio frequency (RF)-only multipole ion guide commonly used in a medium pressure range (0.1-10 Pa) is susceptible to a collision-damping-induced loss of instrumentation sensitivity, resulting in operation within a limited m/z bandwidth. In this study, a novel direct current (DC)-free gradient-threaded discrete twisted dipole ion guide (GTDIG) is proposed for high-efficiency ion propulsion and an expanded m/z bandwidth in a medium vacuum (0.1-10 Pa). An overview of the GTDIG working principles is provided with systematic optimization of the critical parameters. The GTDIG has been applied by using a series of printed circuit boards, utilizing an innovative discrete helical electrode design. The performance of the GTDIG prototype is evaluated using multiphysical numerical modeling and tested using a custom-built nanoelectrospray ionization (ESI)-MS platform, including a direct comparison with a quadrupole ion guide. The results indicate that the RF-only GTDIG offers a significantly larger m/z window while effectively maintaining an axial field, demonstrating that this concept can be utilized in the development of instruments with an enhanced performance.
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