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Kinetics of copper nanoparticle precipitation in phosphate glass: An isothermal plasmonic approach

  • Mariana Sendova(corresponding author)
    ,
  • José A. Jiménez
    ,
  • Robert Smith
    ,
  • Nicholas Rudawski
*Corresponding author for this work
  • New College of Florida
    ,
  • University of North Florida
    ,
  • University of Florida
Scholary Output:
Contribution to journal
Article
Peer-review

Abstract

The kinetics of copper nanoparticle (NP) precipitation in melt-quenched barium-phosphate glass has been studied by in situ isothermal optical micro-spectroscopy. A spectroscopically based approximation technique is proposed to obtain information about the activation energies of nucleation and growth in a narrow temperature range (530-570°C). Pre-plasmonic and plasmonic NP precipitation stages are identified separated in time. The process as a whole is discussed employing classical nucleation/growth theory and the Kolmogorov-Johnson-Mehl-Avrami phase change model. Activation energies of 3.9(7) eV and 2.6(5) eV have been estimated for the pre-plasmonic and plasmonic spectroscopically assessed stages, respectively. High resolution transmission electron microscopy, differential scanning calorimetry, and Raman spectroscopy were used as complementary techniques for studying the nanoparticulate phase and glass host structure. An empirical linear dependence of the diffusion activation energy on the glass transition temperature with broad applicability is suggested.

Publication Information

Output type

Scholary Output:
Contribution to journal
Article
Peer-review

Original language

English (US)

Pages from-to (Number of pages)

Pages 1241-1246 (6 pages)

Journal (Volume, Issue Number)

Physical Chemistry Chemical Physics (Volume 17, Issue 2)

Publication milestones

  • Published - 2015

Publication status

Published - 2015

ISSN

1463-9076

Publication IDs

  • Scopus: 84916608541
  • PubMed: 25430499

Publication metrics

Metrics

SciVal
citations
21
Scopus
citations
Fractional count
1
Fractional count
0.25
Fractional count
3
Fractional count
0.75
Fractional count
1
Fractional count
1
SciVal
FWCI
0.93
SciVal
Author count
4
SciVal
Paper percentile
83

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Citation count
26
Captures
24