Small-angle neutron scattering measurement of silicon nanoparticle size

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초록

We have determined the particle size distribution profiles of octane-terminated silicon nanoparticle suspensions, produced using the sonication of electrochemically etched Si wafers. Small-angle neutron scattering data was analyzed separately in high (0.4 nm(-1) < q < 3.0 nm(-1)) and low (q < 0.4 nm(-1)) scattering vector ranges. Data in the high q range is consistent with the log- normal distribution of isolated spherical particles with median diameter d = 3 +/- 0.2 nm. Particle sizes were also indirectly assessed from photoluminescence and optical transmission spectroscopy using the size/bandgap relation: E-g = 3.44d(-0.5), where E-g is in eV and d in nm. Both measurements were consistent with the particle size distribution profiles, estimated from ANS data fitting and TEM image analysis. A subpopulation of larger, irregular shape structures in the size range 10-50 nm was also indicated by neutron scattering in the low q range and HRTEM images. However, further studies are warranted to explain a relationship between the slope of scattering intensity versus scattering vector dependence in the intermediate scattering vector range (0.4 nm(-1) < q < 1.0 nm(-1)) and the role of non-geometrical Si nanoparticle characteristics (mutual interaction forces, surface termination, etc).

키워드

QUANTUM DOTS; PHOTOLUMINESCENCE; SURFACTANT; SANS
제목
Small-angle neutron scattering measurement of silicon nanoparticle size
저자
Choi, Jonghoon; Tung, Shih-Huang; Wang, Nam Sun; Reipa, Vytas
DOI
10.1088/0957-4484/19/8/085715
발행일
2008-02
유형
Article
저널명
Nanotechnology
권
19
호
8