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Updated: Jul 13, 2026

Observation and Analysis of Blinking Surface-enhanced Raman Scattering
Published on: January 11, 2018
Direct Correlation between Size, Photon Statistics, and Blinking Mechanisms in Single Cesium Lead Iodide Perovskite
Nicholas Huang1, Tetsuo Yamaguchi1, Yukihide Ishibashi2
1Department of Applied Chemistry for Environment, Kwansei Gakuin University, 1 Gakuen Uegahara, Sanda, Hyogo 669-1330, Japan.
None:
The emission photon statistics and blinking dynamics of lead halide perovskite nanocrystals (PNCs) are strongly influenced by quantum confinement, Auger recombination (AR), and carrier trapping, yet their direct correlation with nanocrystal size remains unresolved. Here, we correlate size and optical properties of individual CsPbI3 PNCs by combining single-particle spectroscopy with atomic force microscopy. PNCs smaller than ∼12 nm exhibit pronounced quantum confinement, strong photon antibunching with g(2)(0) ≤ 0.2, and band-edge carrier blinking. As the size increases, the photoluminescence red shift weakens and g(2)(0) increases, approaching unity above ∼17 nm. Femtosecond transient absorption measurements reveal strongly suppresses AR in larger PNCs, while the dominant blinking mechanism shifts from the band-edge carrier to Auger blinking at ∼16-18 nm. These results establish design principles for stable quantum light emitters and size-tunable optoelectronic materials.

