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Pd@Fe2O3 Superparticles with Enhanced Peroxidase Activity by Solution Phase Epitaxial Growth

Authors :
Angela Möller
Wolfgang Tremel
Vadim Ksenofontov
Martin Panthöfer
Karsten Korschelt
Ruben Ragg
Muhammad Nawaz Tahir
Bastian Barton
Paul Simon
Martin Kluenker
Sergii I. Shylin
Tatiana Gorelik
Jana Herzberger
Juri Grin
Holger Frey
Ute Kolb
Source :
Chemistry of Materials. 29:1134-1146
Publication Year :
2017
Publisher :
American Chemical Society (ACS), 2017.

Abstract

Compared to conventional deposition techniques for the epitaxial growth of metal oxide structures on a bulk metal substrate, wet-chemical synthesis based on a dispersible template offers advantages such as low cost, high throughput, and the capability to prepare metal/metal oxide nanostructures with controllable size and morphology. However, the synthesis of such organized multicomponent architectures is difficult because the size and morphology of the components are dictated by the interplay of interfacial strain and facet-specific reactivity. Here we show that solution-processable two-dimensional Pd nanotetrahedra and nanoplates can be used to direct the epitaxial growth of γ-Fe2O3 nanorods. The interfacial strain at the Pd−γ-Fe2O3 interface is minimized by the formation of an FexPd “buffer phase” facilitating the growth of the nanorods. The γ-Fe2O3 nanorods show a (111) orientation on the Pd(111) surface. Importantly, the Pd@γ-Fe2O3 hybrid nanomaterials exhibit enhanced peroxidase activity compared to ...

Details

ISSN :
15205002 and 08974756
Volume :
29
Database :
OpenAIRE
Journal :
Chemistry of Materials
Accession number :
edsair.doi...........d00b6e92d4988d459caee2b9d29d3272
Full Text :
https://doi.org/10.1021/acs.chemmater.6b04283