Controllable synthesis of Pd and Pt shells on Au nanoparticles with electrodeposition.
Published version
Peer-reviewed
Repository URI
Repository DOI
Type
Change log
Abstract
Shells of Pd and Pt were synthesized on Au nanoparticles by electrodeposition, leading to controllable size and optical properties. This approach yielded core-shell structures with good homogeneity in size after the optimization of electrochemical parameters such as deposition current and charge transfer, as well as nanoparticle surface treatment. Dark field scattering microscopy and spectroscopy were used to track changes in the optical response of individual particles during deposition. The deposition of thin shells of Pd or Pt initially leads to a damping of the Au localized surface plasmon resonance which is followed by its redshift and an increase in scattering intensity. These changes were rationalized with numerical calculations and correlated with electron microscopy analyses revealing the morphology and thickness of Pd and Pt shells. This electrochemical approach provides a new pathway for the synthesis of bimetallic structures with catalytic surfaces.
Description
Acknowledgements: Support for this project was provided by the EU Framework Programme for Research and Innovation Horizon 2020 (ERC Starting Grant SPECs 804523) and the Engineering and Physical Sciences Research Council (EP/R513180/1).
Journal Title
Conference Name
Journal ISSN
2045-2322
Volume Title
Publisher
Publisher DOI
Rights and licensing
Sponsorship
EPSRC (EP/W015986/1)
EPSRC (EP/R513180/1)

