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Beilstein J. Nanotechnol. 2013, 4, 554–566, doi:10.3762/bjnano.4.64
Figure 1: BF-TEM images of the initial microstructure of ncPd 1 (a) and ncPd 2 (b) with the corresponding sel...
Figure 2: Orientation maps overlaid with reliability derived from ACOM-TEM of the as deposited sample in a) c...
Figure 3: Orientation analysis of the as prepared sputtered ncPd film. a) X-ray diffraction pattern of the as...
Figure 4: Crystallites recognized by ACOM-TEM for the as deposited sample and samples deformed to 5% and 10% ...
Figure 5: a) Crystallite and b) grain size as a function of strain based on ACOM-TEM (equivalent in-plane dia...
Figure 6: a) Twin crystallites/area as a function of strain based on the ACOM-TEM analysis (ncPd 1: red, ncPd...
Figure 7: Stress strain behavior and evolution of twin boundary density as a function of strain for grain siz...
Figure 8: Model of the deformation pathways: If growth twins are initially present, partial dislocations nucl...
Beilstein J. Nanotechnol. 2013, 4, 542–553, doi:10.3762/bjnano.4.63
Figure 1: Local composition of the grain interior and the GBs as a function of the global composition for two...
Figure 2: Atomic configurations after annealing with the hybrid MD/MC scheme. Ni atoms in the grain interior ...
Figure 3: Stress-strain behavior and dislocation density for structures of 15 nm grain size, which were equil...
Figure 4: Stress-strain behavior and dislocation density for structures of 15 nm grain size, which were equil...
Figure 5: Stress-strain behavior and dislocation density for structures of 15 nm grain size, which were equil...
Figure 6: Stress-strain behavior, dislocation density and evolution of GB volume for structures of 5 nm grain...
Figure 7: Irreversible change in GB volume (VGB) as a function of the irreversible change in total sample vol...
Figure 8: Correlation between yield stress (stress at plastic strain of 0.7%) and the change in free volume i...