Branched Heterostructured Semiconductor Nanocrystals with Various Branch Orders <i>via</i> a Facet-to-Facet Linking Process.
basic_science · Level V
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- Record sourced from PubMed, PMID 32806071.
- Also identified by DOI 10.1021/acsnano.0c03837.
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Abstract
Branched heterostructured semiconductor nanoparticles such as core seeded tetrapods and octapods offer properties not seen in their spherical core-shell counterparts, but are challenging to synthesize with a large diversity of branch numbers <i>via</i> heterogeneous nucleation and growth processes alone. This work describes a process to facet-link matchstick-like Ag<sub>2</sub>S-tipped ZnS nanorods <i>via</i> their Ag<sub>2</sub>S tips, producing branched Ag<sub>2</sub>S-centered ZnS nanoparticles such as bipods, tripods, and in general multipods with 4 to 16 ZnS arms as a function of reaction time. The angle between nanorods in the bipods and tripods is found to be close to 120°, resulting in unexpected bent and trigonal planar geometry, respectively. This is attributed to the exposed facets of the monoclinic Ag<sub>2</sub>S tips, their relative chemical reactivities, and their atomic composition. The formation of particles with an increasing number of branches takes place in a stepwise manner, thus making the facet-linking approach a facile synthesis route to systematically obtaining a diverse set of branched heterostructured semiconductor nanoparticles with a well-defined number of branches.