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Highly Emissive Green ZnSeTe Quantum Dots: Effects of Core Size on Their Optical Properties and Comparison with InP Counterparts

Authors
Yoon, S.-Y.Han, J.-N.Lee, Y.-J.Channa, A.I.Jo, D.-Y.Kim, H.-M.Kim, Y.Park, S.M.Park, S.Kim, Y.-H.Yang, H.
Issue Date
10-Feb-2023
Publisher
American Chemical Society
Citation
ACS Energy Letters, v.8, no.2, pp.1131 - 1140
Journal Title
ACS Energy Letters
Volume
8
Number
2
Start Page
1131
End Page
1140
URI
https://scholarworks.bwise.kr/hongik/handle/2020.sw.hongik/30836
DOI
10.1021/acsenergylett.2c02924
ISSN
2380-8195
Abstract
InP quantum dots (QDs) are the representative environmentally benign green and red emitters in color-by-blue display devices. However, particularly green InP QDs possess inferior blue absorption capability due to their intrinsically small core size. In this work, different-sized green-emissive ZnSeTe cores are synthesized while maintaining the same Se/Te ratio. Size-dependent molar absorption coefficients (ϵ450 nm) at 450 nm of a series of ZnSeTe cores are assessed, nearly scaling with the core volume, and further compared with that of a green InP counterpart. Subsequently, ZnSe/ZnSeS/ZnS triple shelling is implemented on different-sized ZnSeTe cores, yielding 509-530 nm in photoluminescence (PL) wavelength, 80-92% in PL quantum yield, and a similar volume scaling of ϵ450 nm. For a practical verification of color-by-blue performances, InP and ZnSeTe core/shell QDs in the form of a QD plate are combined with a blue LED, revealing that the latter QDs afford more efficient blue light absorption and color conversion than the former ones. © 2023 American Chemical Society.
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