Enhanced mobility in PbS quantum dot films via PbSe quantum dot mixing for optoelectronic applications
Hu Long
1
,
Hu Long
1, 2, 3, 4, 5
,
Shujuan Huang
6
,
Robert Robert O. Patterson
6, 7, 8, 9, 10
,
Jonathan E. Halpert
1, 2, 3, 4, 5
2
DEPARTMENT OF CHEMISTRY
4
Kowloon
|
5
Hong Kong
|
7
Australian Centre for Advanced Photovoltaics
8
School of Photovoltaic and Renewable Energy Engineering, University of New South Wales
|
9
Sydney 2052
10
AUSTRALIA
|
Publication type: Journal Article
Publication date: 2019-03-21
scimago Q1
wos Q1
SJR: 1.220
CiteScore: 9.3
Impact factor: 5.1
ISSN: 20507526, 20507534
Materials Chemistry
General Chemistry
Abstract
PbS quantum dots (QDs) have been used extensively in optoelectronic devices such as solar cells, photodetectors and phototransistors. However, the mobility of charges in PbS QD solid films still limits their performance in many optoelectronic applications. To improve the PbS QD optoelectronic device performance, a small amount of PbSe QDs was mixed into PbS QDs to form a mixed quantum dot solution for fabrication of solar cells and photodetectors. Improvement in charge mobility arises from the higher mobility in PbSe QDs than in PbS, due to their larger exciton radius. The power conversion efficiency of the mixed QD solar cells (mixed PbS and PbSe) improved to 9.4%, compared to 8.8% for a pure PbS QD solar cell and 7.8% for a pure PbSe QD solar cell. Photodetectors were used to investigate the responsivity of pure PbS and the mixed QD photodetector, showing that the responsivity of the mixed QD photodetector was improved to 1.50 from 1.20 μA W−1. Finally, field effect transistors were used to determine the carrier mobility of PbS, PbSe and their mixtures, demonstrating that the PbSe carrier mobility, at 0.03 cm2 V−1 s−1, was 8-fold higher than that of pure PbS, at 0.004 cm2 V−1 s−1. The mixed film mobility at 0.006 cm2 V−1 s−1 for 5% PbSe:PbS devices was also higher than that of pure PbS by ∼50%. Overall, the improved device performance is attributed to the improved mobility of mixed QD films due to the presence of PbSe. This leads to the formation of a larger electronic coupling between neighbouring nanocrystals, facilitating charge transport.
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Total citations:
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Citations from 2024:
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(19.57%)
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Long H. et al. Enhanced mobility in PbS quantum dot films via PbSe quantum dot mixing for optoelectronic applications // Journal of Materials Chemistry C. 2019. Vol. 7. No. 15. pp. 4497-4502.
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Long H., Hu Long, Huang S., Robert O. Patterson R., Halpert J. E. Enhanced mobility in PbS quantum dot films via PbSe quantum dot mixing for optoelectronic applications // Journal of Materials Chemistry C. 2019. Vol. 7. No. 15. pp. 4497-4502.
Cite this
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TY - JOUR
DO - 10.1039/c8tc06495d
UR - https://xlink.rsc.org/?DOI=C8TC06495D
TI - Enhanced mobility in PbS quantum dot films via PbSe quantum dot mixing for optoelectronic applications
T2 - Journal of Materials Chemistry C
AU - Long, Hu
AU - Hu Long
AU - Huang, Shujuan
AU - Robert O. Patterson, Robert
AU - Halpert, Jonathan E.
PY - 2019
DA - 2019/03/21
PB - Royal Society of Chemistry (RSC)
SP - 4497-4502
IS - 15
VL - 7
SN - 2050-7526
SN - 2050-7534
ER -
Cite this
BibTex (up to 50 authors)
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@article{2019_Long,
author = {Hu Long and Hu Long and Shujuan Huang and Robert Robert O. Patterson and Jonathan E. Halpert},
title = {Enhanced mobility in PbS quantum dot films via PbSe quantum dot mixing for optoelectronic applications},
journal = {Journal of Materials Chemistry C},
year = {2019},
volume = {7},
publisher = {Royal Society of Chemistry (RSC)},
month = {mar},
url = {https://xlink.rsc.org/?DOI=C8TC06495D},
number = {15},
pages = {4497--4502},
doi = {10.1039/c8tc06495d}
}
Cite this
MLA
Copy
Long, Hu, et al. “Enhanced mobility in PbS quantum dot films via PbSe quantum dot mixing for optoelectronic applications.” Journal of Materials Chemistry C, vol. 7, no. 15, Mar. 2019, pp. 4497-4502. https://xlink.rsc.org/?DOI=C8TC06495D.