Lawrence Adijanto, Ph.D.

Chemical and Biomolecular Engineering University of Pennsylvania, Philadelphia, PA, United States 
Catalysis, Fuel Cells, Energy
"Lawrence Adijanto"
Mean distance: 11.5


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Raymond J. Gorte grad student 2013 Penn
 (Approaches to mitigate metal catalyst deactivation in solid oxide fuel cell (SOFC) fuel electrodes.)
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Oh TS, Yu AS, Adijanto L, et al. (2014) Infiltrated lanthanum strontium chromite anodes for solid oxide fuel cells: Structural and catalytic aspects Journal of Power Sources. 262: 207-212
Adijanto L, Bennett DA, Chen C, et al. (2013) Exceptional thermal stability of Pd@CeO2 core-shell catalyst nanostructures grafted onto an oxide surface. Nano Letters. 13: 2252-7
Adijanto L, Sampath A, Yu AS, et al. (2013) Synthesis and stability of Pd@CeO2 core-shell catalyst films in solid oxide fuel cell anodes Acs Catalysis. 3: 1801-1809
Park JS, Luo J, Adijanto L, et al. (2013) The stability of lanthanum strontium vanadate for solid oxide fuel cells Journal of Power Sources. 222: 123-128
Adijanto L, Padmanabhan VB, Gorte RJ, et al. (2012) Polarization-induced hysteresis in CuCo-doped rare earth vanadates SOFC anodes Journal of the Electrochemical Society. 159: F751-F756
Adijanto L, Balaji Padmanabhan V, Küngas R, et al. (2012) Transition metal-doped rare earth vanadates: A regenerable catalytic material for SOFC anodes Journal of Materials Chemistry. 22: 11396-11402
Adijanto L, Balaji Padmanabhan V, Holmes KJ, et al. (2012) Physical and electrochemical properties of alkaline earth doped, rare earth vanadates Journal of Solid State Chemistry. 190: 12-17
Adijanto L, Küngas R, Bidrawn F, et al. (2011) Stability and performance of infiltrated La0.8Sr 0.2CoxFe1-xO3 electrodes with and without Sm0.2Ce0.8O1.9 interlayers Journal of Power Sources. 196: 5797-5802
Adijanto L, Küngas R, Park J, et al. (2011) SOFC anodes based on infiltration of tungsten bronzes International Journal of Hydrogen Energy. 36: 15722-15730
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