HAADF‐STEM characterization and simulation of nanoparticle distributions in an inhomogeneous matrix

Article Properties
  • Language
    English
  • DOI (url)
  • Publication Date
    2017/01/24
  • Indian UGC (journal)
  • Refrences
    45
  • Citations
    16
  • Z. LIU Univ Lyon, UJM‐Saint‐Etienne, CNRS Institut d'Optique Graduate School, Laboratoire Hubert Curien UMR 5516 F‐42023 Saint‐Etienne France
  • T. EPICIER MATEIS, UMR 5510 CNRS Université de Lyon INSA‐Lyon Villeurbanne France
  • Y. LEFKIR Univ Lyon, UJM‐Saint‐Etienne, CNRS Institut d'Optique Graduate School, Laboratoire Hubert Curien UMR 5516 F‐42023 Saint‐Etienne France
  • G. VITRANT IMEP‐LAHC, Minatec Grenoble‐INP CNRS‐UMR 5130 Grenoble France
  • N. DESTOUCHES Univ Lyon, UJM‐Saint‐Etienne, CNRS Institut d'Optique Graduate School, Laboratoire Hubert Curien UMR 5516 F‐42023 Saint‐Etienne France
Abstract
Cite
LIU, Z., et al. “HAADF‐STEM Characterization and Simulation of Nanoparticle Distributions in an Inhomogeneous Matrix”. Journal of Microscopy, vol. 266, no. 1, 2017, pp. 60-68, https://doi.org/10.1111/jmi.12519.
LIU, Z., EPICIER, T., LEFKIR, Y., VITRANT, G., & DESTOUCHES, N. (2017). HAADF‐STEM characterization and simulation of nanoparticle distributions in an inhomogeneous matrix. Journal of Microscopy, 266(1), 60-68. https://doi.org/10.1111/jmi.12519
LIU, Z., T. EPICIER, Y. LEFKIR, G. VITRANT, and N. DESTOUCHES. “HAADF‐STEM Characterization and Simulation of Nanoparticle Distributions in an Inhomogeneous Matrix”. Journal of Microscopy 266, no. 1 (2017): 60-68. https://doi.org/10.1111/jmi.12519.
LIU Z, EPICIER T, LEFKIR Y, VITRANT G, DESTOUCHES N. HAADF‐STEM characterization and simulation of nanoparticle distributions in an inhomogeneous matrix. Journal of Microscopy. 2017;266(1):60-8.
Refrences
Title Journal Journal Categories Citations Publication Date
Statistical distribution of single atoms and clusters of supported Au catalyst analyzed by global high‐resolution HAADF‐STEM observation with morphological image‐processing operation 2014
Changes in the Chemical and Structural Properties of Nanocomposite Ag:TiO2 Films during Photochromic Transitions The Journal of Physical Chemistry C
  • Science: Chemistry: Physical and theoretical chemistry
  • Technology: Chemical technology
  • Science: Chemistry
  • Science: Chemistry: Physical and theoretical chemistry
  • Science: Chemistry
13 2014
Reversible and Irreversible Laser Microinscription on Silver‐Containing Mesoporous Titania Films Advanced Materials
  • Science: Chemistry: General. Including alchemy
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  • Technology: Chemical technology
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  • Science: Physics
  • Science: Physics
  • Technology: Electrical engineering. Electronics. Nuclear engineering: Materials of engineering and construction. Mechanics of materials
  • Technology: Electrical engineering. Electronics. Nuclear engineering: Materials of engineering and construction. Mechanics of materials
61 2010
Crystal size and shape analysis of Pt nanoparticles in two and three dimensions Journal of Physics: Conference Series 10 2006
New Method for Analysis of Nanoparticle Geometry in Supported fcc Metal Catalysts with Scanning Transmission Electron Microscopy The Journal of Physical Chemistry B
  • Science: Chemistry: Physical and theoretical chemistry
  • Science: Chemistry: Physical and theoretical chemistry
  • Science: Chemistry
48 2006
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  • Technology: Electrical engineering. Electronics. Nuclear engineering: Materials of engineering and construction. Mechanics of materials
  • Science: Physics
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Atomic layer deposited Al2O3 as a protective overlayer for focused ion beam preparation of plan-view STEM samples Ultramicroscopy
  • Science: Chemistry: Analytical chemistry
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Citations Analysis
The category Science: Chemistry 10 is the most commonly referenced area in studies that cite this article. The first research to cite this article was titled Microstructuring of Mesoporous Titania Films Loaded with Silver Salts to Enhance the Photocatalytic Degradation of Methyl Blue under Visible Light and was published in 2017. The most recent citation comes from a 2024 study titled Towards the insights into the deactivation behavior of acetylene hydrogenation catalyst. This article reached its peak citation in 2022, with 4 citations. It has been cited in 14 different journals, 28% of which are open access. Among related journals, the Nanoscale cited this research the most, with 2 citations. The chart below illustrates the annual citation trends for this article.
Citations used this article by year