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Journal article

Stability of Porous Platinum Nanoparticles: Combined In Situ TEM and Theoretical Study

From

Monash University1

CSIRO2

Center for Electron Nanoscopy, Technical University of Denmark3

University of Wisconsin-Madison4

Porous platinum nanoparticles provide a route for the development of catalysts that use less platinum without sacrificing catalytic performance. Here, we examine porous platinum nanoparticles using a combination of in situ transmission electron microscopy and calculations based on a first-principles-parametrized thermodynamic model.

Our experimental observations show that the initially irregular morphologies of the as-sythesized porous nanoparticles undergo changes at high temperatures to morphologies having faceted external surfaces with voids present in the interior of the particles. The increasing size of stable voids with increasing temperature, as predicted by the theoretical calculations, shows excellent agreement with the experimental findings.

The results indicate that hollow-structured nanoparticles with an appropriate void-to-total-volume ratio can be stable at high temperatures.

Language: English
Year: 2012
Pages: 1106-1110
ISSN: 19487185
Types: Journal article
DOI: 10.1021/jz3001823
ORCIDs: Hansen, Thomas Willum and Wagner, Jakob Birkedal

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