Ion Mobility Spectrometry
Ионно-импульсная спектрометрия
1993-11-30
SCID: 54.1/pbr5tncx
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atmospheric pressure ion processeschemical ionizationion mobility spectrometryion motion theoryresponse characteristics
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Abstract (AI)
Chronicles the development of ion mobility spectrometry (IMS) from its inception two decades ago to current applications and plans for the future. Fundamental aspects of atmospheric pressure ion processes and their chemical ionization effect on the response characteristics of IMS are analyzed. The theory and physics governing the motion of ions dri
Key Findings
1
Fundamental aspects of atmospheric pressure ion processes significantly influence IMS response characteristics via chemical ionization effects.
2
Ion mobility spectrometry (IMS) has developed over two decades from inception to diverse current applications and future planning.
3
Theory and physics governing ion motion are central to understanding IMS behavior (implied focus on drift and transport phenomena).
Research Object
Ion mobility spectrometry (IMS) instrumentation and atmospheric-pressure ion processes in IMS
Research Subject
Fundamental theory, physics, and chemical ionization effects governing ion motion and the response characteristics of IMS, including development, applications, and future directions
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