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Beilstein J. Nanotechnol. 2016, 7, 1936–1947, doi:10.3762/bjnano.7.185
Figure 1: Ferromagnetic (full symbols) and paramagnetic or diamagnetic properties (open symbols) of (a) pure ...
Figure 2: Dark-field TEM micrograph of a thin zinc oxide nanocrystalline film obtained using the liquid-ceram...
Figure 3: Magnetization Js (in units of 10−3 µB/f.u.) as a function of the applied external magnetic field fo...
Figure 4: Dependence of magnetization per area unit (calibrated in emu/m2) on the film thickness (circles are...
Figure 5: Averaged zero-field µSR spectra for the single crystal (top curve, open circles), the coarse graine...
Figure 6: Saturation magnetization of doped zinc oxide films versus the concentration of (a) cobalt [8], (b) man...
Figure 7: (a) Lattice parameter c in Co-doped ZnO films deposited using the liquid ceramics method versus the...
Figure 8: (a–d) Solubility limit of nickel in zinc oxide polycrystals with grain sizes (a) larger than 1000, ...
Figure 9: Solubility limit of (a) cobalt [47] and (b) manganese [46] in zinc oxide polycrystals with various grain si...
Figure 10: Bright-field HREM micrographs [48] for zinc oxide films doped with (a) 10 atom % Mn and (b) 15 atom % M...
Beilstein J. Nanotechnol. 2013, 4, 361–369, doi:10.3762/bjnano.4.42
Figure 1: (a) Bright-field TEM micrograph of the nanograined pure ZnO thin film deposited on a sapphire subst...
Figure 2: Magnetization (calibrated in units of Bohr magnetons per formula unit of ZnO) at RT for ZnO thin fi...
Figure 3: Dependence of the saturation magnetization Js (magnetic moment in units of Bohr magnetons per ZnO f...
Figure 4: FM (full symbols) and para- or diamagnetic (open symbols) behaviour of Fe-doped ZnO in dependence o...
Figure 5: Dependence of the saturation magnetization (magnetic moment per iron atom in units of Bohr magneton...