Aaron G. Midgett, Ph.D.

Affiliations: 
2011 Chemistry University of Colorado, Boulder, Boulder, CO, United States 
Area:
Physical Chemistry, Nanotechnology, Alternative Energy
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"Aaron Midgett"

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David M. Jonas grad student 2011 CU Boulder
 (Ultrafast Optical Studies of Multiple Exciton Generation in Lead Chalcogenide Quantum Dots.)
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Publications

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Midgett AG, Luther JM, Stewart JT, et al. (2013) Size and composition dependent multiple exciton generation efficiency in PbS, PbSe, and PbS(x)Se(1-x) alloyed quantum dots. Nano Letters. 13: 3078-85
Stewart JT, Padilha LA, Qazilbash MM, et al. (2012) Comparison of carrier multiplication yields in PbS and PbSe nanocrystals: the role of competing energy-loss processes. Nano Letters. 12: 622-8
Trinh MT, Polak L, Schins JM, et al. (2011) Anomalous independence of multiple exciton generation on different group IV-VI quantum dot architectures. Nano Letters. 11: 1623-9
Nozik AJ, Beard MC, Luther JM, et al. (2011) Third generation solar cells for PV and solar fuels based on quantum dots and quantum dot arrays Acs National Meeting Book of Abstracts
Beard MC, Midgett AG, Hanna MC, et al. (2010) Comparing multiple exciton generation in quantum dots to impact ionization in bulk semiconductors: implications for enhancement of solar energy conversion. Nano Letters. 10: 3019-27
Beard MC, Luther JM, Midgett AG, et al. (2010) Third generation photovoltaics: Multiple exciton generation in colloidal quantum dots, quantum dot arrays, and quantum dot solar cells Conference Record of the Ieee Photovoltaic Specialists Conference. 370-375
Semonin OE, Johnson JC, Luther JM, et al. (2010) Absolute photoluminescence quantum yields of IR-26 Dye, PbS, and PbSe quantum dots Journal of Physical Chemistry Letters. 1: 2445-2450
Midgett AG, Hillhouse HW, Hughes BK, et al. (2010) Flowing versus Static Conditions for Measuring Multiple Exciton Generation in PbSe Quantum Dots The Journal of Physical Chemistry C. 114: 17486-17500
Beard MC, Midgett AG, Law M, et al. (2009) Variations in the quantum efficiency of multiple exciton generation for a series of chemically treated PbSe nanocrystal films. Nano Letters. 9: 836-45
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