Unravelling the Mechanisms of Gold–Silver Core–Shell Nanostructure Formation by in Situ TEM Using an Advanced Liquid Cell Design

The growth of silver shells on gold nanorods is investigated by in situ liquid cell transmission electron microscopy using an advanced liquid cell architecture. The design is based on microwells in which the liquid is confined between a thin Si3N4 membrane on one side and a few-layer graphene cap on...

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Veröffentlicht in:Nano letters 2018-11, Vol.18 (11), p.7222-7229
Hauptverfasser: Hutzler, Andreas, Schmutzler, Tilo, Jank, Michael P. M, Branscheid, Robert, Unruh, Tobias, Spiecker, Erdmann, Frey, Lothar
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container_end_page 7229
container_issue 11
container_start_page 7222
container_title Nano letters
container_volume 18
creator Hutzler, Andreas
Schmutzler, Tilo
Jank, Michael P. M
Branscheid, Robert
Unruh, Tobias
Spiecker, Erdmann
Frey, Lothar
description The growth of silver shells on gold nanorods is investigated by in situ liquid cell transmission electron microscopy using an advanced liquid cell architecture. The design is based on microwells in which the liquid is confined between a thin Si3N4 membrane on one side and a few-layer graphene cap on the other side. A well-defined specimen thickness and an ultraflat cell top allow for the application of high-resolution TEM and the application of analytical TEM techniques on the same sample. The combination of high-resolution data with chemical information is validated by radically new insights into the growth of silver shells on cetrimonium bromide stabilized gold nanorods. It is shown that silver bromide particles already formed in the stock solution play an important role in the exchange of silver ions. The Ag shell growth can be directly correlated with the layer-by-layer dissolution of AgBr nanocrystals, which can be controlled by the electron flux density via distinctly generated chemical species in the solvent. The derived model framework is confirmed by in situ UV–vis absorption spectroscopy evaluating the blue shift in the longitudinal surface plasmon resonance of anisotropic NRs in a complementary batch experiment.
doi_str_mv 10.1021/acs.nanolett.8b03388
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title Unravelling the Mechanisms of Gold–Silver Core–Shell Nanostructure Formation by in Situ TEM Using an Advanced Liquid Cell Design
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