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Air-Stable and Efficient PbSe Quantum-Dot Solar Cells Based upon ZnSe to PbSe Cation-Exchanged Quantum Dots

Journal: 
ACS Nano
Volume: 
9
Pages: 
8157-8164
Year Published: 
June, 2015
DOI: 
10.1021/acsnano.5b02326
Solely Supported by the EFRC: 
Not Solely supported by the EFRC
Non-Peer-Reviewed: 
No
Author: 
Kim, Sungwoo
Marshall, Ashley R.
Kroupa, Daniel M.
Miller, Elisa M.
Luther, Joseph M.
Jeong, Sohee
Beard, Matthew C.
Acknowledgements: 
S.K. was supported at NREL by the Global Frontier R&D program by the Center for Multiscale Energy Systems (2011-0031566) and the Global R&D program (1415134409) funded by KIAT. The Center for Advanced Solar Photophysics, an Energy Frontier Research Center funded by the Department of Energy, Office of Science, Office of Basic Energy Sciences supported device fabrication. The solar photochemistry program within the Office of Science, Office of Basic Energy Sciences supported synthesis and QD characterization. XPS work was funded by a NREL director’s postdoctoral fellowship. DOE funding to NREL was provided through contract DE-AC36-08G028308.

EFRC: Center for Advanced Solar Photophysics