David Gene Morgan, Ph.D.

Chemistry Indiana University, Bloomington, Bloomington, IN, United States 
cryo-electron microscopy
"David Morgan"
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James V. Staros grad student 1978-1985 Vanderbilt
 (Ph.D. 1985)
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Easterday R, Leonard C, Sanchez-Felix O, et al. (2014) Fabrication of magnetically recoverable catalysts based on mixtures of Pd and iron oxide nanoparticles for hydrogenation of alkyne alcohols. Acs Applied Materials & Interfaces. 6: 21652-60
Morgan DG, Boris BS, Kuchkina NV, et al. (2014) Multicore iron oxide mesocrystals stabilized by a poly(phenylenepyridyl) dendron and dendrimer: role of the dendron/dendrimer self-assembly. Langmuir : the Acs Journal of Surfaces and Colloids. 30: 8543-50
Bake T, Murphy M, Morgan DG, et al. (2014) Large, binge-type meals of high fat diet change feeding behaviour and entrain food anticipatory activity in mice. Appetite. 77: 60-71
Bake T, Morgan DG, Mercer JG. (2014) Feeding and metabolic consequences of scheduled consumption of large, binge-type meals of high fat diet in the Sprague-Dawley rat. Physiology & Behavior. 128: 70-9
Zhang LN, Sinclair R, Selman C, et al. (2014) Effects of a specific MCHR1 antagonist (GW803430) on energy budget and glucose metabolism in diet-induced obese mice. Obesity (Silver Spring, Md.). 22: 681-90
Yuzik-Klimova EY, Kuchkina NV, Sorokina SA, et al. (2014) Magnetically recoverable catalysts based on polyphenylenepyridyl dendrons and dendrimers Rsc Advances. 4: 23271-23280
Easterday R, Sanchez-Felix O, Stein BD, et al. (2014) Structural study of Pt-Fe nanoparticles: New insights into pt bimetallic nanoparticle formation with oxidized Fe species Journal of Physical Chemistry C. 118: 24769-24775
Searles K, Das AK, Buell RW, et al. (2013) 2,2'-Pyridylpyrrolide ligand redistribution following reduction. Inorganic Chemistry. 52: 5611-9
Dukes MJ, Jacobs BW, Morgan DG, et al. (2013) Visualizing nanoparticle mobility in liquid at atomic resolution. Chemical Communications (Cambridge, England). 49: 3007-9
Gumina G, Easterday R, Malyutin AG, et al. (2013) γ-Fe₂O₃ nanoparticle surface controls PtFe nanoparticle growth and catalytic properties. Nanoscale. 5: 2921-7
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