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PMID: 26222812 Published · ppublish English

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

ACS nano ·Vol. 9 ·No. 8 ·2015-12-22

Kim Sungwoo, Marshall Ashley R, Kroupa Daniel M, Miller Elisa M, Luther Joseph M, Jeong Sohee, Beard Matthew C

Abstract

We developed a single step, cation-exchange reaction that produces air-stable PbSe quantum dots (QDs) from ZnSe QDs and PbX2 (X = Cl, Br, or I) precursors. The resulting PbSe QDs are terminated with halide anions and contain residual Zn cations. We characterized the PbSe QDs using UV-vis-NIR absorption, photoluminescence quantum yield spectroscopy, X-ray diffraction, X-ray photoelectron spectroscopy, and transmission electron microscopy. Solar cells fabricated from these PbSe QDs obtained an overall best power conversion efficiency of 6.47% at one sun illumination. The solar cell performance without encapsulation remains unchanged for over 50 days in ambient conditions; and after 50 days, the National Renewable Energy Laboratory certification team certified the device at 5.9%.

Keywords
PbSe QDs cation exchange halide passivation quantum dots solar cells
Article Info
Journal
ACS nano
Abbr.
ACS Nano
Published
2015-12-22
Indexed
2015-08-26
Updated
2015-08-26
Language
English
Country/Region
United States
NLM ID
101313589
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