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Updated: Feb 12, 2026

Seeded Synthesis of CdSe/CdS Rod and Tetrapod Nanocrystals
Published on: December 11, 2013
Heterostructure-Controlled Charge Transfer Dynamics in CdSe/CdS Dot-in-Rods and Tetrapods
Samantha M Harvey1, Florence Y Dou1, Elise Skytte1
1Department of Chemistry, University of Washington, Box 351700, Seattle, Washington 98195, United States.
None:
Heterostructured quantum dots are powerful platforms for driving photocatalytic reactions, yet the influence of morphology on charge transfer dynamics remains incompletely understood. Here, we use transient absorption spectroscopy to directly compare quasi-type-II CdSe/CdS dot-in-rods and tetrapods synthesized from a common CdSe core by examining their excited state dynamics and charge transfer behavior. We find that hole transfer from CdS to CdSe is 3-6 times slower in tetrapods than in dot-in-rods, a result we attribute to hole hopping between equivalent CdS arms, which competes with interfacial transfer. While electron transfer rates to benzoquinone are nearly identical for both heterostructures, the charge-separated state in tetrapods persists more than an order of magnitude longer, likely due to steric constraints that inhibit charge recombination. These findings demonstrate that the branched morphology of tetrapods enhances charge separation lifetime without sacrificing charge transfer kinetics, underscoring the potential of tetrapods as superior photocatalysts for light-driven chemical transformations.
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