James I. Basham, Ph.D.

Affiliations: 
2011 Pennsylvania State University, State College, PA, United States 
Area:
Electronics and Electrical Engineering, Alternative Energy
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"James Basham"

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James K. Breakall grad student 2011 Penn State
 (Broadening spectral response in solid-state dye-sensitized solar cells via Forster Resonance Energy Transfer.)
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Publications

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Bittle EG, Basham JI, Jackson TN, et al. (2016) Mobility overestimation due to gated contacts in organic field-effect transistors. Nature Communications. 7: 10908
Jang HJ, Pookpanratana SJ, Brigeman AN, et al. (2014) Interface engineering to control magnetic field effects of organic-based devices by using a molecular self-assembled monolayer. Acs Nano. 8: 7192-201
Basham JI, Jackson TN, Gundlach DJ. (2014) Predicting the J–V Curve in Organic Photovoltaics Using Impedance Spectroscopy Advanced Energy Materials. 4: 1400499
Elliott LCC, Basham JI, Pernstich KP, et al. (2014) Probing charge recombination dynamics in organic photovoltaic devices under open-circuit conditions Advanced Energy Materials
Bandara J, Shankar K, Basham J, et al. (2011) Integration of TiO2 nanotube arrays into solid-state dye-sensitized solar cells Epj Applied Physics. 53
Fei ST, Lee SHA, Pursel SM, et al. (2011) Electrolyte infiltration in phosphazene-based dye-sensitized solar cells Journal of Power Sources. 196: 5223-5230
Mor GK, Basham J, Paulose M, et al. (2010) High-efficiency Förster resonance energy transfer in solid-state dye sensitized solar cells. Nano Letters. 10: 2387-94
Basham JI, Mor GK, Grimes CA. (2010) Förster resonance energy transfer in dye-sensitized solar cells. Acs Nano. 4: 1253-8
Feng X, Latempa TJ, Basham JI, et al. (2010) Ta3N5 nanotube arrays for visible light water photoelectrolysis. Nano Letters. 10: 948-52
Anna Lee SH, Jackson AMS, Hess A, et al. (2010) Influence of different iodide salts on the performance of dye-sensitized solar cells containing phosphazene-based nonvolatile electrolytes Journal of Physical Chemistry C. 114: 15234-15242
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