Yl. Soo et al., LOCAL STRUCTURES AROUND MN LUMINESCENT CENTERS IN MN-DOPED NANOCRYSTALS OF ZNS, Physical review. B, Condensed matter, 50(11), 1994, pp. 7602-7607
X-ray-absorption fine-structure measurements were carried out to probe
the local environment surrounding Mn ions in Mn-doped nanocrystals of
ZnS with different size distributions ranging from 30-35 Angstrom A t
o 50-55 Angstrom A. The interatomic distances between Mn and neighbori
ng atoms, the coordination number, local disorder, and effective valen
cy determined for the nanocrystals are compared with those in bulk Mn-
doped ZnS. The Mn ions are found to substitute for the Zn sites in the
host ZnS but with significant size-dependent local structural changes
. The questions of Mn-cluster formation and the presence of Mn impurit
ies on the surface of the nanocrystals are addressed. Near-edge x-ray-
absorption fine structures indicate that the effective valency of Mn i
ons in the nanocrystals is close to +2 with a weak size dependence. Th
ese local structures are believed to be closely related to the novel o
ptical properties observed in this new class of semiconductors.