The electronic structures of YFe12-xMoxNy, where x=1.0, 2.0 and y=0, 0
.7, have been studied with photoemission and spin-polarized calculatio
ns. The peak near the Fermi level in the energy distribution curves (E
DC) becomes successively broader with larger Mo concentration. The fea
tures in the calculated density of state at 1.3 and 2.7 eV are not rea
dily seen in the EDC, and this may be due to lifetime effects in these
compounds. Finally, changes in Curie temperature (T(c)) with the chan
ge of N or Mo concentration are compared with prediction of the theory
of Mohn and Wohlfarth. Reasonable agreement is obtained in the N case
but not in the Mo case, the latter most likely due to hybridization o
f Fe and Mo d bands.