Ion Mobility Mass Spectrometry (IM-MS) for Structural Biology: Insights Gained by Measuring Mass, Charge, and Collision Cross Section
Descrição
Sizing up DNA nanostructure assembly with native mass spectrometry and ion mobility
Frontiers Reaction Monitoring and Structural Characterisation of Coordination Driven Self-Assembled Systems by Ion Mobility-Mass Spectrometry
Cyclic Ion Mobility Resolves Biologically Relevant, Isomeric Endogenous Metabolites
New High Resolution Ion Mobility Mass Spectrometer Capable of Measurements of Collision Cross Sections from 150 to 520 K
Frontiers Perspective on the potential of tandem-ion mobility/mass spectrometry methods for structural proteomics applications
Electrospray ionization (ESI) mechanisms. (a) Charge residue model
Conformational Ordering of Biomolecules in the Gas Phase: Nitrogen Collision Cross Sections Measured on a Prototype High Resolution Drift Tube Ion Mobility-Mass Spectrometer
Ion mobility–mass spectrometry of supramolecular complexes and assemblies
Advances in ion mobility spectrometry–mass spectrometry reveal key insights into amyloid assembly - ScienceDirect
Determining the gas-phase structures of α-helical peptides from shape, microsolvation, and intramolecular distance data
Schematic diagrams illustrating four emerging IM strategies: (A)
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