[1]
R.D. HEYDING, W. KEENEY, L. SEGEL Metastable phases in gallium dispersions, J. Phys. Chem. Solids, 1973, Vol. 34, pp.133-136.
DOI: 10.1016/0022-3697(73)90068-1
Google Scholar
[2]
L. BOSIO and C. G. WINDSOR Observation of a metastability limit in liquid gallium, Physical Review Letters, 1975, Vol. 35, Number 24, pp.1652-1655.
DOI: 10.1103/physrevlett.35.1652
Google Scholar
[3]
Jean-Jacques ROUSSEAU Cristallographie géométrique et radiocristallographie, Edition DUNOD (2000).
Google Scholar
[4]
G.K. WERTHEIM, M.A. BUTLER, K.W. WEST, and D.N.E. BUCHANAN, Determination of the Gaussian and Lorentzian content of experimental line shapes, Rev. Sci. Instrum. (1974), Vol. 45, n°11, 1369-1373.
DOI: 10.1063/1.1686503
Google Scholar
[5]
Nanostructure Science and Technology- A worldwide study, prepared under the guidance of the IWGN and NSTC. Edited by R.W. SIEGEL, E. HU, M.C. ROCO, September (1999).
Google Scholar
[6]
D. KEKLIKIAN, L. IKRAMUL, H. MATIJEVIC, Colloïd and Surface A 92, 1994, 267275.
Google Scholar
[7]
A. GUINIER, X-RAY Diffraction in crystals, Imperfect crystal and amorphous Bodies (W. H. Freemanand Compagny, San Francisco, 1963).
Google Scholar
[8]
J. P EBERHART Analyse structurale et chimique des matériaux, p.73 et 213, Edition DUNOD (1989).
Google Scholar
[9]
Z. KASZKUR Nanopowder diffraction analysis beyond the Bragg law applied to palladium, Journal of applied crystallography (2000). 33, 87-94.
DOI: 10.1107/s002188989901290x
Google Scholar
[10]
P.W. STEPHENS Phenomenological model of anisotropic peak broadening in powder diffraction, J. Appl. Cryst. (1999). 32, 281-289.
DOI: 10.1107/s0021889898006001
Google Scholar
[11]
A. F. WELLS Structural inorganic chemistry, Oxford science publications, p.239 et 537, fith edition (1995).
Google Scholar
[12]
F. PORTA, S. RECCHIA, C. BIANCHI, F. CONFALONIERI, G. SCARI Synthesis and full characterization of nickel(II) colloidal particles and their transformation into NiO, Colloids and surfaces a : Physicochemical and engineering aspects 155 (1999).
DOI: 10.1016/s0927-7757(99)00019-9
Google Scholar
[13]
S.L. LAI, J.Y. GUO, V. PETROVA, G. RAMANATH, L.H. ALLEN Size-Dependent Melting Properties of Small Tin Particles: Nanocalorimetric Measurements, Phy. Rev. Let. Vol. 77 N°1, pp.99-102 (July 96). 8.
DOI: 10.1103/physrevlett.77.99
Google Scholar
[14]
A.F. GUALTIERI, E. MAZZUCATO, P. VENTURELLI, A. VIANI, P. ZANNINI and L. PETRAS X-ray powder diffraction quantitative analysis performed in situ at high temperature : application to the determination of NiO in ceramic pigments,. Journal of applied crystallography (1999).
DOI: 10.1107/s0021889899005853
Google Scholar