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Department of Energy Science and Engineering
Polymer Energy Materials Lab
1. Journal Articles
Colloidal Synthesis, Optical Properties, and Hole Transport Layer Applications of Cu 2 BaSnS 4 (CBTS) Nanocrystals
Chakraborty, Rayan
;
Sim, Kyu Min
;
Shrivastava, Megha
;
Adarsh, K.V.
;
Chung, Dae Sung
;
Nag, Angshuman
Department of Energy Science and Engineering
Polymer Energy Materials Lab
1. Journal Articles
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Title
Colloidal Synthesis, Optical Properties, and Hole Transport Layer Applications of Cu 2 BaSnS 4 (CBTS) Nanocrystals
DGIST Authors
Chung, Dae Sung
Issued Date
2019-05
Citation
Chakraborty, Rayan. (2019-05). Colloidal Synthesis, Optical Properties, and Hole Transport Layer Applications of Cu 2 BaSnS 4 (CBTS) Nanocrystals. doi: 10.1021/acsaem.9b00473
Type
Article
Article Type
Article
Author Keywords
metal sulfides
;
Cu2BaSnS4 nanocrystals
;
colloidal semiconductor nanocrystals
;
ultrafast carrier dynamics
;
hole transport layer
;
photodiode
Keywords
SOLAR-CELLS
;
THIN-FILMS
;
DISSOLUTION
;
EFFICIENT
;
CU2ZNSNS4
;
PHOTODIODES
ISSN
2574-0962
Abstract
Cu 2 BaSnS 4 (CBTS) is an emerging earth-abundant and environmentally benign semiconductor. However, there has been no prior report of colloidal CBTS nanocrystals. Here we developed a colloidal synthesis of CBTS nanocrystals by rational design. Photophysical properties of these nanocrystals are elucidated using photoluminescence and ultrafast transient absorption spectroscopy. Finally, thin films of CBTS nanocrystals grown at room temperature are used as the hole transport layer (HTL) in an organic photodiode yielding a high peak specific detectivity (>3.2 × 10 12 Jones) with low noise equivalent power (9.20 × 10 -14 W Hz 0.5 ). These results suggest that our colloidal CBTS nanocrystals have potential for optoelectronic applications. © 2019 American Chemical Society.
URI
http://hdl.handle.net/20.500.11750/9887
DOI
10.1021/acsaem.9b00473
Publisher
American Chemical Society
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