Juan Fernandez de la Mora

Affiliations: 
Mecahnical Engineering Yale University, New Haven, CT 
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"Juan de la Mora"
Bio:

https://www.proquest.com/openview/6333e5e9c52e9c5817ac7798ec5e6556/1

Parents

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Daniel E. Rosner grad student 1980 Yale
 (Deterministic and Diffusive Mass Transfer Mechanisms in the Capture of Vapors and Particles)
Sheldon K. Friedlander post-doc UCLA (Chemistry Tree)

Children

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Manuel Gamero-Castano grad student 1999 Yale
Sven Ude grad student 2004 Yale
Sergio Castro Reina grad student 2009 Yale
Carlos Larriba-Andaluz grad student 2010 Yale
Chris Hogan post-doc 2008-2009 Yale
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Publications

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Fernández-García J, de la Mora JF. (2014) Electrical mobilities of multiply charged ionic-liquid nanodrops in air and carbon dioxide over a wide temperature range: influence of ion-induced dipole interactions. Physical Chemistry Chemical Physics : Pccp. 16: 20500-13
Fernández-García J, De La Mora JF. (2014) Electrical mobilities of multiply charged ionic-liquid nanodrops in air and carbon dioxide over a wide temperature range: Influence of ion-induced dipole interactions Physical Chemistry Chemical Physics. 16: 20500-20513
Garoz D, De La Mora JF. (2013) Charge emissions from electrosprays in vacuum: Mixtures of formamide with methylammonium formate Journal of Applied Physics. 113
De La Mora JF. (2012) Why do GroEL ions exhibit two gas phase conformers? Journal of the American Society For Mass Spectrometry. 23: 2115-2121
de la Mora JF, Borrajo-Pelaez R, Zurita-Gotor M. (2012) Capillary and Coulombic effects on the gas phase structure of electrosprayed concanavalin A ions and its clusters C(n)(+z) (n = 1-6). The Journal of Physical Chemistry. B. 116: 9882-98
Larriba C, de la Mora JF. (2012) The gas phase structure of coulombically stretched polyethylene glycol ions. The Journal of Physical Chemistry. B. 116: 593-8
Hogan CJ, de la Mora JF. (2011) Ion mobility measurements of nondenatured 12-150 kDa proteins and protein multimers by tandem differential mobility analysis-mass spectrometry (DMA-MS). Journal of the American Society For Mass Spectrometry. 22: 158-72
Larriba C, Hogan CJ, Attoui M, et al. (2011) The mobility-volume relationship below 3.0 nm examined by tandem mobility-mass measurement Aerosol Science and Technology. 45: 453-467
Hogan CJ, Ogorzalek Loo RR, Loo JA, et al. (2010) Ion mobility-mass spectrometry of phosphorylase B ions generated with supercharging reagents but in charge-reducing buffer. Physical Chemistry Chemical Physics : Pccp. 12: 13476-83
Ku BK, De La Mora JF. (2009) Relation between electrical mobility, mass, and size for nanodrops 1-6.5 nm in diameter in air Aerosol Science and Technology. 43: 241-249
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