Temperature-Dependent Photoluminescence of Cesium Lead Halide Perovskite Quantum Dots: Splitting of the Photoluminescence Peaks of CsPbBr3 and CsPb(Br/I)(3) Quantum Dots at Low TemperatureTemperature-Dependent Photoluminescence of Cesium Lead Halide Perovskite Quantum Dots: Splitting of the Photoluminescence Peaks of CsPbBr3 and CsPb(Br/I)3 Quantum Dots at Low Temperature
- Other Titles
- Temperature-Dependent Photoluminescence of Cesium Lead Halide Perovskite Quantum Dots: Splitting of the Photoluminescence Peaks of CsPbBr3 and CsPb(Br/I)3 Quantum Dots at Low Temperature
- Authors
- Lee, See Mak; Moon, Cheol Joo; Lim, Hyunseob; Lee, Younki; Choi, Myong Yong; Bang, Jiwon
- Issue Date
- Nov-2017
- Publisher
- American Chemical Society
- Citation
- The Journal of Physical Chemistry C, v.121, no.46, pp 26054 - 26062
- Pages
- 9
- Indexed
- SCI
SCIE
SCOPUS
- Journal Title
- The Journal of Physical Chemistry C
- Volume
- 121
- Number
- 46
- Start Page
- 26054
- End Page
- 26062
- URI
- https://scholarworks.gnu.ac.kr/handle/sw.gnu/13341
- DOI
- 10.1021/acs.jpcc.7b06301
- ISSN
- 1932-7447
1932-7455
- Abstract
- We investigated the temperature-dependent photoluminescence (PL) properties of colloidal CsPbX3 (X = Br, I, and mixed Br/I) quantum dot (QD) samples in the 30-290 K temperature range. Temperature-dependent PL experiments reveal thermal quenching of PL, blue shifting of optical band gaps, and line width broadening for all CsPbX3 QD samples with increasing temperature. Interestingly, side-peak emissions that are spectrally separated from the excitonic PL peaks were observed for both CsPbBr3 and CsPb(Br/I)(3) QD samples at temperatures below similar to 250 K The side-peak emission for the CsPbBr3 QD sample is located at a lower energy compared to the band-edge peak, whereas that of the Br-rich CsPb(Br/I)(3) alloy QD sample is located at a higher energy than that of the band-edge peak. We found that the CsPbBr3 QDs have two emissive states, a band-edge state, and one involving shallow defects, which can be spectrally separated by narrowing the emission line widths at low temperature. In the case of the Br-rich CsPb(Br/I)(3) QD sample, the partial halide-segregation-induced heterogeneity of the alloy phase within the ensemble at low temperature leads to blue-shifted radiative recombination channels.
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Collections - 학연산협동과정 > 재료공학과 > Journal Articles
- 자연과학대학 > 화학과 > Journal Articles
- 공학계열 > Dept.of Materials Engineering and Convergence Technology > Journal Articles

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