Publications
516
Citations
20,105
Est. group size
~10
Recurring co-author estimate
Active years
46
Publishing since 1981
Scott A. McLuckey's research focuses on developing mass spectrometry techniques to study biomolecules such as proteins, protein complexes, and lipids. A central theme is gas-phase ion/ion chemistry, where charged molecules react with each other inside instruments to manipulate charge states, probe structure, or induce controlled fragmentation for analysis. This work supports improved methods for characterizing large, fragile biological molecules and complexes, including in contexts like gene therapy vector analysis (AAV particles).
Publication output has been relatively steady over the last decade, averaging around 8-10 papers per year with some year-to-year fluctuation, including a dip in 2021 followed by consistent output through 2024-2025.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Nanochemistry in the Gas Phase: Coulombic Adducts of Atomically Precise Noble Metal Nanoclusters and Their Concomitant Reactions
The Journal of Physical Chemistry Letters · 2026
- Proton transfer reagent cations for ion–ion charge state manipulation of high mass negatively-charged analytes in an electrodynamic ion trap
The Analyst · 2026
- Ion-Ion Chemistry for the Analysis of Biomolecular Ions via Tandem Mass Spectrometry: A Tutorial Review
Annual Review of Analytical Chemistry · 2026
- Mass Spectrometry of Proteins and Protein Complexes Electrosprayed in the Presence of Common Biological Buffers Using Theta Emitters
Analytical Chemistry · 2025
- Mass Determination of Filled and Empty AAV5 Particles Enabled by Nanoelectrospray Ionization and Proton Transfer Charge Reduction
Analytical Chemistry · 2025
- Improved Mass Analysis of Proteins and Protein Complexes Present in Common Biological Buffers and Physiological Concentrations of NaCl Using Solution Additives Delivered by Theta Emitters
Analytical Chemistry · 2025
- Arrhenius parameters of singly- and doubly-protonated bradykinin measured via dipolar DC kinetics on a quadrupole/time-of-flight platform
International Journal of Mass Spectrometry · 2025
- Enthalpies and Entropies of Activation for <i>sn-</i>1/<i>sn-</i>2 Acyl Chain Loss in Glycerophospholipid Anions via Dipolar DC Kinetics
Journal of the American Society for Mass Spectrometry · 2025
- Demonstration of a nested electrostatic linear ion trap for flexibility in selecting analyzer figures-of-merit
International Journal of Mass Spectrometry · 2025
- Single-frequency ion parking in a digital 3D quadrupole ion trap
International Journal of Mass Spectrometry · 2024
- Gas-Phase Ion/Ion Reactions to Enable Radical-Directed Dissociation of Fatty Acid Ions: Application to Localization of Methyl Branching
Analytical Chemistry · 2024
- Ion parking in native mass spectrometry
The Analyst · 2024
- Digital Ion Trap Isolation and Mass Analysis of Macromolecular Analytes with Multiply Charged Ion Attachment
Journal of the American Society for Mass Spectrometry · 2024
- Structural characterization of fatty acid anions via gas‐phase charge inversion using Mg(tri‐butyl‐terpyridine) <sub>2</sub> <sup>2+</sup> reagent ions
Rapid Communications in Mass Spectrometry · 2024
- Probing Metal Ion Adduction in the ESI Charged Residue Mechanism via Gas-Phase Ion/Ion Chemistry
Journal of the American Society for Mass Spectrometry · 2024
- Analytical Chemistry×26
- Journal of the American Society for Mass Spectrometry×24
- International Journal of Mass Spectrometry×13
- Journal of Mass Spectrometry×6
- The Analyst×4
- David H. Russell
Chemistry · Indiana University
- Árpád Somogyi
Chemistry · The Ohio State University
- Joshua D. Gilbert
Chemistry · The Ohio State University
- Erin Panczyk
Chemistry · The Ohio State University
- Eric T. Dziekonski
Chemistry · Purdue University West Lafayette
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 20, 2026.
Claim or correct this profile