Andrew S. Lemoff, Ph.D.

Affiliations: 
2005 University of California, Berkeley, Berkeley, CA 
Area:
mass spectrometry
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"Andrew Lemoff"
Mean distance: 9.91
 
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Evan R. Williams grad student 2005 UC Berkeley
 (Amino acid structure in the gas phase: The effects of solvent, metal ion complexation, and proton affinity.)
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Publications

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Lemoff AS, Bush MF, O'Brien JT, et al. (2006) Structures of lithiated lysine and structural analogues in the gas phase: effects of water and proton affinity on zwitterionic stability. The Journal of Physical Chemistry. A. 110: 8433-42
Lemoff AS, Wu CC, Bush MF, et al. (2006) Binding energies of water to doubly hydrated cationized glutamine and structural analogues in the gas phase. The Journal of Physical Chemistry. A. 110: 3662-9
Lemoff AS, Bush MF, Williams ER. (2005) Structures of cationized proline analogues: evidence for the zwitterionic form. The Journal of Physical Chemistry. A. 109: 1903-10
Lemoff AS, Bush MF, Wu CC, et al. (2005) Structures and hydration enthalpies of cationized glutamine and structural analogues in the gas phase. Journal of the American Chemical Society. 127: 10276-86
Lemoff AS, Williams ER. (2004) Binding energies of water to lithiated valine: formation of solution-phase structure in vacuo. Journal of the American Society For Mass Spectrometry. 15: 1014-24
Lemoff AS, Bush MF, Williams ER. (2003) Binding energies of water to sodiated valine and structural isomers in the gas phase: the effect of proton affinity on zwitterion stability. Journal of the American Chemical Society. 125: 13576-84
Jockusch RA, Lemoff AS, Williams ER. (2001) Effect of metal ion and water coordination on the structure of a gas-phase amino acid. Journal of the American Chemical Society. 123: 12255-65
Jockusch RA, Lemoff AS, Williams ER. (2001) Hydration of valine-cation complexes in the gas phase: On the number of water molecules necessary to form a zwitterion Journal of Physical Chemistry A. 105: 10929-10942
Strittmatter EF, Lemoff AS, Williams ER. (2000) Structure of cationized glycine, gly.m (m = be, mg, ca, sr, ba), in the gas phase: intrinsic effect of cation size on zwitterion stability. The Journal of Physical Chemistry. A. 104: 9793-6
Strittmatter EF, Lemoff AS, Williams ER. (2000) Structure of cationized glycine, gly·M2+ (M = Be, Mg, Ca, Sr, Ba), in the gas phase: Intrinsic effect of cation size on zwitterion stability Journal of Physical Chemistry A. 104: 9793-9796
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