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Hydride formation thermodynamics and hysteresis in individual Pd nanocrystals with different size and shape.
Syrenova, Svetlana; Wadell, Carl; Nugroho, Ferry A A; Gschneidtner, Tina A; Diaz Fernandez, Yuri A; Nalin, Giammarco; Switlik, Dominika; Westerlund, Fredrik; Antosiewicz, Tomasz J; Zhdanov, Vladimir P; Moth-Poulsen, Kasper; Langhammer, Christoph.
Afiliação
  • Syrenova S; Department of Applied Physics, Chalmers University of Technology, 412 96 Göteborg, Sweden.
  • Wadell C; Department of Applied Physics, Chalmers University of Technology, 412 96 Göteborg, Sweden.
  • Nugroho FA; Department of Applied Physics, Chalmers University of Technology, 412 96 Göteborg, Sweden.
  • Gschneidtner TA; Chemistry and Chemical Engineering, Chalmers University of Technology, 412 96 Göteborg, Sweden.
  • Diaz Fernandez YA; Chemistry and Chemical Engineering, Chalmers University of Technology, 412 96 Göteborg, Sweden.
  • Nalin G; Chemistry and Chemical Engineering, Chalmers University of Technology, 412 96 Göteborg, Sweden.
  • Switlik D; Centre of New Technologies, University of Warsaw, Banacha 2c, 02-097 Warsaw, Poland.
  • Westerlund F; Biology and Biological Engineering, Chalmers University of Technology, 412 96 Göteborg, Sweden.
  • Antosiewicz TJ; Department of Applied Physics, Chalmers University of Technology, 412 96 Göteborg, Sweden.
  • Zhdanov VP; Centre of New Technologies, University of Warsaw, Banacha 2c, 02-097 Warsaw, Poland.
  • Moth-Poulsen K; Department of Applied Physics, Chalmers University of Technology, 412 96 Göteborg, Sweden.
  • Langhammer C; Boreskov Institute of Catalysis, Russian Academy of Sciences, Novosibirsk 630090, Russia.
Nat Mater ; 14(12): 1236-44, 2015 Dec.
Article em En | MEDLINE | ID: mdl-26343912
ABSTRACT
Physicochemical properties of nanoparticles may depend on their size and shape and are traditionally assessed in ensemble-level experiments, which accordingly may be plagued by averaging effects. These effects can be eliminated in single-nanoparticle experiments. Using plasmonic nanospectroscopy, we present a comprehensive study of hydride formation thermodynamics in individual Pd nanocrystals of different size and shape, and find corresponding enthalpies and entropies to be nearly size- and shape-independent. The hysteresis observed is significantly wider than in bulk, with details depending on the specifics of individual nanoparticles. Generally, the absorption branch of the hysteresis loop is size-dependent in the sub-30 nm regime, whereas desorption is size- and shape-independent. The former is consistent with a coherent phase transition during hydride formation, influenced kinetically by the specifics of nucleation, whereas the latter implies that hydride decomposition either occurs incoherently or via different kinetic pathways.
Assuntos

Texto completo: 1 Bases de dados: MEDLINE Assunto principal: Paládio / Termodinâmica / Nanopartículas / Hidrogênio Idioma: En Revista: Nat Mater Assunto da revista: CIENCIA / QUIMICA Ano de publicação: 2015 Tipo de documento: Article País de afiliação: Suécia

Texto completo: 1 Bases de dados: MEDLINE Assunto principal: Paládio / Termodinâmica / Nanopartículas / Hidrogênio Idioma: En Revista: Nat Mater Assunto da revista: CIENCIA / QUIMICA Ano de publicação: 2015 Tipo de documento: Article País de afiliação: Suécia