Non-convergence of the blinking timescale of twelve-faceted perovskite nanocrystals observed through an advanced fluorescence correlation spectroscopy study

被引:0
作者
Acharjee, Debopam [1 ]
Mahato, Asit Baran [1 ]
Panda, Mrinal Kanti [1 ]
Ghosh, Subhadip [1 ,2 ]
机构
[1] Homi Bhabha Natl Inst HBNI, Natl Inst Sci Educ & Res NISER, Sch Chem Sci, Khurdha 752050, Odisha, India
[2] Homi Bhabha Natl Inst HBNI, Natl Inst Sci Educ & Res NISER, Ctr Interdisciplinary Sci CIS, Khurja 752050, Odisha, India
关键词
ELECTRON-TRANSFER REACTIONS; CESIUM LEAD HALIDE; QUANTUM-DOT; SINGLE-MOLECULE; DYNAMICS; CSPBBR3; DIFFUSION; EMISSION; KINETICS; MICROSECOND;
D O I
10.1039/d4cp03787a
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Single-particle photoluminescence measurements have been extensively utilized to investigate the charge carrier dynamics in quantum dots (QDs). Among these techniques, single dot blinking studies are effective for probing relatively slower processes with timescales >10 ms, whereas fluorescence correlation spectroscopy (FCS) studies are suited for recording faster processes with timescales typically <1 ms. In this study, we utilized scanning FCS (sFCS) to bridge the ms gap, thereby enabling the tracking of carrier dynamics across an extended temporal window ranging from mu s to subsecond. We compared the sFCS data recorded on surface-immobilized twelve-faceted CsPbBr3 dodecahedron perovskite nanocrystals (d-PNCs) with the FCS data of the same nanocrystals in the solution phase. Although the two datasets exhibited similarities in a qualitative sense, they revealed notable quantitative differences. This is primarily attributed to the significantly varying immediate environments of PNCs in these two techniques, as well as the different temporal sizes of the observation windows available for the recording of carrier dynamics. The most intriguing finding of our study lies in the non-converging blinking timescale (tau R) of d-PNCs in sFCS, despite this technique providing an extended temporal window size (<= 328 ms) for studying carrier dynamics. We attribute this observation to PL blinking following power-law statistics, which causes the mean ON/OFF duration of blinking persuasive to the experimental integration time, making blinking occur across all timescales.
引用
收藏
页码:824 / 833
页数:10
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