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Practical Aspects of Trapped Ion Mass Spectrometry, Volume IV - Theory and Instrumentation (Paperback)
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Practical Aspects of Trapped Ion Mass Spectrometry, Volume IV - Theory and Instrumentation (Paperback)
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Reflecting the substantial increase in popularity of quadrupole ion
traps and Fourier transform ion cyclotron resonance (FT-ICR) mass
spectrometers, Practical Aspects of Trapped Ion Mass Spectrometry,
Volume IV: Theory and Instrumentation explores the historical
origins of the latest advances in this expanding field. It covers
new methods for trapping ions, such as the Orbitrap (TM), the
digital ion trap (DIT), the rectilinear ion trap (RIT), and the
toroidal ion trap; the development and application of the
quadrupole ion trap (QIT) and the quadrupole linear ion trap (LIT);
and the introduction of high-field asymmetric waveform ion mobility
spectrometry (FAIMS). After a combined appreciation and historical
survey of mass spectrometry and a discussion of how improved
capabilities for microfabrication have led to interest in arrays of
ion traps, the book examines the theory and practice of the
Orbitrap mass analyzer, the rectangular waveform-driven DIT mass
spectrometer, FAIMS, and ion traps with circular geometries. It
next discusses ion accumulation for increasing sensitivity in
FT-ICR spectrometry, a radio frequency-only-mode event for Penning
traps in FT MS, and an FT operating mode applied to a 3D-QIT. The
text then presents three behavioral aspects of quadrupole rod sets,
before illustrating the development of the 3D-QIT in recent years.
The final chapters explore photodissociation in ion traps and the
chemical and photochemical studies of metal dication complexes in a
3D-QIT. In this volume that spans twenty-one chapters, a stellar
panel of leading experts and up-and-coming researchers presents a
cohesive, global, and up-to-date view of the practical aspects of
using trapped ion devices. A companion to Volume V: Applications of
Ion Trapping Devices, the book authoritatively covers the theory
involved as well as the instrumentation currently used in this
dynamic field.
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