2003
DOI: 10.1021/jp035484a
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Surface State Analysis of Photobrightening in CdSe Nanocrystal Thin Films

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Cited by 86 publications
(99 citation statements)
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“…Furthermore, the photooxidation that is the mechanism for photodarkening is avoided because the experiment occurs under high vacuum (10 À5 mTorr). [36][37][38] This stability 39 is also demonstrated in Figure 2, and typical stabilities were observed over three days of separate experiments.…”
Section: B Fluorophore Selectionsupporting
confidence: 61%
“…Furthermore, the photooxidation that is the mechanism for photodarkening is avoided because the experiment occurs under high vacuum (10 À5 mTorr). [36][37][38] This stability 39 is also demonstrated in Figure 2, and typical stabilities were observed over three days of separate experiments.…”
Section: B Fluorophore Selectionsupporting
confidence: 61%
“…1,2 One of the most intriguing phenomena observed with NCs is the enhancement of their photoluminescence ͑PL͒ over time during continuous illumination. [3][4][5][6][7][8][9][10][11][12][13][14] This effect was reported so far mostly for CdSe and CdSe/ ZnS NCs and has induced extensive discussion in literature. Recently it was observed also for PbS NCs embedded in thin polymer films 14 and for PbS NCs in glasses.…”
mentioning
confidence: 99%
“…Recently it was observed also for PbS NCs embedded in thin polymer films 14 and for PbS NCs in glasses. 7 Different mechanisms were proposed to explain the PL enhancement but its nature still remains controversial due to the strong dependence of the NCs emissive properties on their surface quality, [3][4][5] as well as on the excitation intensity, 5-8 film morphology, 4,8,9 substrate-NCs interactions, 4,10 and environmental conditions. [11][12][13][14][15] The PL enhancement ͑PLE͒ has not been reported previously for PbSe NCs.…”
mentioning
confidence: 99%
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“…Previous studies reported that the oxidation of the CdSe surface could cause a PL shift and QE decrease, which could be accelerated during the exposure to UV. [28][29][30] Core/shell NCs exhibited enhanced photostability compared to the core NCs, but the QE of core/shell NCs continuously decreased under UV exposure in a certain period of time. When the ZnS shell is thick, QE decreases faster because the thick shell causes large strain between the core and shell, caused by lattice mismatch.…”
mentioning
confidence: 99%