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Cited 23 time in webofscience Cited 24 time in scopus
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Red green blue emissive lead sulfide quantum dots: heterogeneous synthesis and applicationsopen access

Authors
Hou, BoCho, YuljaeKim, Byung-SungAhn, DocheonLee, SanghyoPark, Jong BaeLee, Young-WooHong, JohnIm, HyunsikMorris, Stephen M.Sohn, Jung InnCha, SeungNamKim, Jong Min
Issue Date
21-Apr-2017
Publisher
ROYAL SOC CHEMISTRY
Citation
JOURNAL OF MATERIALS CHEMISTRY C, v.5, no.15, pp 3692 - 3698
Pages
7
Indexed
SCI
SCIE
SCOPUS
Journal Title
JOURNAL OF MATERIALS CHEMISTRY C
Volume
5
Number
15
Start Page
3692
End Page
3698
URI
https://scholarworks.dongguk.edu/handle/sw.dongguk/23812
DOI
10.1039/c7tc00576h
ISSN
2050-7526
2050-7534
Abstract
Visible emission colloidal quantum dots (QDs) have shown promise in optical and optoelectronic applications. These QDs are typically composed of relatively expensive elements in the form of indium, cadmium, and gallium since alternative candidate materials exhibiting similar properties are yet to be realized. Herein, for the first time, we report red green blue (RGB) photoluminescences with quantum yields of 18% from earth-abundant lead sulfide (PbS) QDs. The visible emissive property is mainly attributed to a high degree of crystallinity even for the extremely small QD sizes (1-3 nm), which is realized by employing a heterogeneous reaction methodology at high growth temperatures (>170 degrees C). We demonstrate that the proposed heterogeneous synthetic method can be extended to the synthesis of other metal chalcogenide QDs, such as zinc sulfide and zinc selenide, which are promising for future industrial applications. More importantly, benefiting from the enlarged band gaps, the as-prepared PbS solar cells show an impressive open circuit voltage (similar to 0.8 V) beyond that reported to date.
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