Andras G. Pattantyus-Abraham, Ph.D.

University of British Columbia, Vancouver, Vancouver, BC, Canada 
molecular and polymeric materials with electronic or photonic applications
"Andras Pattantyus-Abraham"
Mean distance: 8.49


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Michael O. Wolf grad student 2004 UBC
 (Conjugated polymers in mesoporous hosts.)
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Barkhouse DA, Debnath R, Kramer IJ, et al. (2011) Depleted bulk heterojunction colloidal quantum dot photovoltaics. Advanced Materials (Deerfield Beach, Fla.). 23: 3134-8
Kramer IJ, Pattantyus-Abraham AG, Barkhouse AR, et al. (2011) Advances in colloidal quantum dot solar cells: The depleted-heterojunction device Thin Solid Films. 519: 7351-7355
Pattantyus-Abraham AG, Kramer IJ, Barkhouse AR, et al. (2010) Depleted-heterojunction colloidal quantum dot solar cells. Acs Nano. 4: 3374-80
Debnath R, Tang J, Barkhouse DA, et al. (2010) Ambient-processed colloidal quantum dot solar cells via individual pre-encapsulation of nanoparticles. Journal of the American Chemical Society. 132: 5952-3
Tang J, Brzozowski L, Barkhouse DA, et al. (2010) Quantum dot photovoltaics in the extreme quantum confinement regime: the surface-chemical origins of exceptional air- and light-stability. Acs Nano. 4: 869-78
Kramer IJ, Debnath R, Pattantyus-Abraham AG, et al. (2010) Depleted-heterojunction colloidal quantum dot solar cells employing low-cost metal contacts Optics Infobase Conference Papers
Tang J, Konstantatos G, Hinds S, et al. (2009) Heavy-metal-free solution-processed nanoparticle-based photodetectors: doping of intrinsic vacancies enables engineering of sensitivity and speed. Acs Nano. 3: 331-8
Barkhouse AR, Clifford JP, Pattantyus-Abraham AG, et al. (2009) Engineering quantum dot surfaces in solution-processed optoelectronics: Chemical optimization of photodetector and photovoltaic device performance Optics Infobase Conference Papers
Koleilat GI, Levina L, Shukla H, et al. (2008) Efficient, stable infrared photovoltaics based on solution-cast colloidal quantum dots. Acs Nano. 2: 833-40
Johnston KW, Pattantyus-Abraham AG, Clifford JP, et al. (2008) Schottky-quantum dot photovoltaics for efficient infrared power conversion Applied Physics Letters. 92
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