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Extremely Slow Spontaneous Electron Trapping in Photodoped n-Type CdSe Nanocrystals.


ABSTRACT: The trapping dynamics of conduction-band electrons in colloidal degenerately doped n-CdSe nanocrystals prepared by photochemical reduction (photodoping) were measured by direct optical methods. The nanocrystals show spontaneous electron trapping with distributed kinetics that extend to remarkably long timescales. Shifts in nanocrystal band-edge potentials caused by quantum confinement and surface ion stoichiometry were also measured by spectroelectrochemical techniques, and their relationship to the slow electron trapping is discussed. The very long electron-trapping timescales observed in these measurements are more consistent with atomic rearrangement than with fundamental electron-transfer processes. Such slow and broadly distributed electron-trapping dynamics are reminiscent of the well-known distributed dynamics of nanocrystal photoluminescence blinking, and potential relationships between the two phenomena are discussed.

SUBMITTER: Tsui EY 

PROVIDER: S-EPMC5628775 | biostudies-literature | 2017 Apr

REPOSITORIES: biostudies-literature

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Extremely Slow Spontaneous Electron Trapping in Photodoped <i>n</i>-Type CdSe Nanocrystals.

Tsui Emily Y EY   Carroll Gerard M GM   Miller Brigit B   Marchioro Arianna A   Gamelin Daniel R DR  

Chemistry of materials : a publication of the American Chemical Society 20170328 8


The trapping dynamics of conduction-band electrons in colloidal degenerately doped <i>n</i>-CdSe nanocrystals prepared by photochemical reduction (photodoping) were measured by direct optical methods. The nanocrystals show spontaneous electron trapping with distributed kinetics that extend to remarkably long timescales. Shifts in nanocrystal band-edge potentials caused by quantum confinement and surface ion stoichiometry were also measured by spectroelectrochemical techniques, and their relation  ...[more]

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