Robert C. Dunbar

Affiliations: 
Chemistry Case Western Reserve University, Cleveland Heights, OH, United States 
Area:
Fourier Transform Mass Spectrometry and Ion Cyclotron Resonance Spectrometry
Website:
http://www.case.edu/artsci/chem/faculty/dunbar/
Google:
"Robert Dunbar"
Bio:

http://searchworks-lb.stanford.edu/view/2230043

Mean distance: 8.73
 
SNBCP

Parents

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John D. Baldeschwieler grad student 1970 Stanford
 (Ion cyclotron resonance studies of ion-molecule interactions)

Children

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Peter B. Armentrout research assistant 1975 Case Western
Victor Ryzhov grad student 1998 Case Western
Alexei Gapeev grad student 2002 Case Western
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Publications

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Dunbar RC, Martens J, Berden G, et al. (2018) Binding of Divalent Metal Ions with Deprotonated Peptides: Do Gas-Phase Anions Parallel the Condensed Phase? The Journal of Physical Chemistry. A
Halim MA, Clavier C, Dagany X, et al. (2018) Infrared laser dissociation of single megadalton polymer ions in a gated electrostatic ion trap: the added value of statistical analysis of individual events. Physical Chemistry Chemical Physics : Pccp
Dunbar RC, Martens J, Berden G, et al. (2018) Transition metal(II) complexes of histidine-containing tripeptides: Structures, and infrared spectroscopy by IRMPD International Journal of Mass Spectrometry. 429: 198-205
Dunbar RC, Martens J, Berden G, et al. (2017) Water Microsolvation Can Switch the Binding Mode of Ni(II) with Small Peptides. The Journal of Physical Chemistry Letters. 2634-2638
Peckelsen K, Martens J, Berden G, et al. (2017) Gas-phase complexes of Ni 2+ and Ca 2+ with deprotonated histidylhistidine (HisHis): A model case for polyhistidyl-metal binding motifs Journal of Molecular Spectroscopy. 332: 38-44
Dunbar RC, Martens J, Berden G, et al. (2016) Complexes of Ni(ii) and Cu(ii) with small peptides: deciding whether to deprotonate. Physical Chemistry Chemical Physics : Pccp. 18: 26923-26932
Dunbar RC, Berden G, Martens JK, et al. (2015) Divalent Metal-Ion Complexes with Dipeptide Ligands Having Phe and His Side-Chain Anchors: Effects of Sequence, Metal Ion, and Anchor. The Journal of Physical Chemistry. A. 119: 9901-9
Dunbar RC. (2015) Spectroscopy of metal-ion complexes with Peptide-related ligands. Topics in Current Chemistry. 364: 183-223
Dunbar RC. (2015) In the beginning was H2+: Mass spectrometry and the molecular spectroscopy of gas-phase ions International Journal of Mass Spectrometry. 377: 159-171
Dunbar RC, Oomens J, Berden G, et al. (2013) Metal ion complexes with HisGly: comparison with PhePhe and PheGly. The Journal of Physical Chemistry. A. 117: 5335-43
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