Article (Scientific journals)
Small-angle scattering by supported nanoparticles: exact results and useful approximations
Gommes, Cédric; Asset, Tristan; Drnec, Jakub
2019In Journal of Applied Crystallography, 52
Peer Reviewed verified by ORBi
 

Files


Full Text
2019_JApplCrystalllography_nanoparticles.pdf
Publisher postprint (1.24 MB)
Request a copy

All documents in ORBi are protected by a user license.

Send to



Details



Keywords :
Small-angle scattering; nanoparticles; porous materials; supported nanoparticles
Abstract :
[en] In functional materials, nanoparticles are often dispersed in a porous support for the purpose of stabilizing them. This makes their characterization by small-angle scattering challenging because the signal comprises contributions from the nanoparticles of interest, from the inert support and from their crosscorrelation. Exact analytical expressions for all three contributions are derived in the case of a Gaussian-field model of the porous support, with nanoparticles randomly distributed over the surface. For low nanoparticle loading, the expressions simplify to the addition of properly scaled support and particle scattering. For higher loadings, however, the cross-correlation cannot be ignored. Two approximations are introduced, which capture correlation effects in cases where the pores of the support are much larger or only slightly larger than the nanoparticles. The methods of the paper are illustrated with the smallangle X-ray scattering analysis of hollow metallic nanoparticles supported on porous carbon.
Disciplines :
Physics
Materials science & engineering
Physical, chemical, mathematical & earth Sciences: Multidisciplinary, general & others
Author, co-author :
Gommes, Cédric  ;  Université de Liège - ULiège > Department of Chemical Engineering > Department of Chemical Engineering
Asset, Tristan
Drnec, Jakub
Language :
English
Title :
Small-angle scattering by supported nanoparticles: exact results and useful approximations
Publication date :
2019
Journal title :
Journal of Applied Crystallography
ISSN :
0021-8898
eISSN :
1600-5767
Publisher :
Blackwell, Oxford, United Kingdom
Volume :
52
Peer reviewed :
Peer Reviewed verified by ORBi
Funders :
Fédération Wallonie Bruxelles. Fonds de la Recherche Scientifique - F.R.S.-FNRS
Available on ORBi :
since 29 April 2019

Statistics


Number of views
66 (7 by ULiège)
Number of downloads
1 (1 by ULiège)

Scopus citations®
 
8
Scopus citations®
without self-citations
6
OpenCitations
 
4

Bibliography


Similar publications



Contact ORBi