Skip to Main Content (Press Enter)

Logo UNISS
  • ×
  • Home
  • Degrees
  • Courses
  • Jobs
  • People
  • Outputs
  • Organizations
  • Third Mission
  • Expertise & Skills

Logo UNISS

|

UNIFIND

uniss.it
  • ×
  • Home
  • Degrees
  • Courses
  • Jobs
  • People
  • Outputs
  • Organizations
  • Third Mission
  • Expertise & Skills
  1. Outputs

Microstructural defects in nanocrystalline iron probed by x-ray-absorption spectroscopy

Academic Article
Publication Date:
1994
Short description:
Microstructural defects in nanocrystalline iron probed by x-ray-absorption spectroscopy / Di Cicco, Andrea; Berrettoni, Mario; Bonetti, Ennio; Cocco, Giorgio; Stizza, Sergio. - 50:17(1994), pp. 12386-12397. [10.1103/PhysRevB.50.12386]
abstract:
An EXAFS (extended x-ray-absorption fine structure) study of nanocrystalline iron prepared by high-energy ball milling is presented. Accurate data analysis has been performed using a recently developedab initiomultiple-scattering method (GNXAS). The crystalline iron EXAFS spectrum, taken as reference, has been analyzed taking proper account of the important multiple-scattering signal. Results of the data analysis are shown to be in good agreement with known structural values. The dramatic decrease of the first-neighbor coordination number found in nanocrystalline iron, as a function of the milling time, is shown to be related to the presence of a large defect density. The corresponding decrease of the coordination numbers of the second and further neighbors, as well as the significant decrease of the multiplicities of the three-atom configurations, confirms this interpretation. A simple model which takes into account the presence of atomic defects is shown to lead to marked reduction of coordination numbers and three-atom multiplicities in agreement with the experimental data. Selected models without lattice defects are shown to be unable to give a quantitative explanation of the intensity reduction of the EXAFS signal found in milled nanocrystalline iron. Anin situannealing of the sample (up to about 1100 °C) milled for the longer time (32 h) is shown to reduce considerably the density of the defects, as expected, although no complete recovering of the crystalline order is found. The transition from α iron to γ iron has been directly observed for such nanocrystalline material.
Iris type:
1.1 Articolo in rivista
Keywords:
Extended x-ray-absorption fine structure (EXAFS); nanocrystalline iron; multiple-scattering method (GNXAS)
List of contributors:
Di Cicco, Andrea; Berrettoni, Mario; Bonetti, Ennio; Cocco, Giorgio; Stizza, Sergio
Handle:
https://iris.uniss.it/handle/11388/262941
Full Text:
https://iris.uniss.it//retrieve/handle/11388/262941/196735/Di_Cicco_A_Articolo_1994_Microstructural.pdf
  • Use of cookies

Powered by VIVO | Designed by Cineca | 26.6.0.0