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In the tensile process, the failure is due to structural damage and elasticity increases with the pillar distance increasing.
In the compression process, the failure mode of VACNT-graphene structure with small pillar distance is the bond breaking and reforming on the ridges of corrugated-shaped graphene and junction areas, while the failure mode of the structure with large pillar distance is the structural buckling.
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Four sets of representative unitcell models were developed atomistically for predicting the mechanical properties of PGSs having different values of pillar length and inter-pillar distance.
PGSs with shorter pillars in height yield higher planar Young's and shear moduli, while those with smaller inter-pillar distance yield higher through-thickness moduli.
The parametric study shows that the pillar length and inter-pillar distance significantly affect the effective in-plane and through-thickness properties.
The procedure has been applied to assess the effect of some of the most frequently occurring etching imperfections (linear or curved tapering of the inter-pillar distance along the depth coordinate, occurrence of local notches) in etched pillar array columns.
Technologically, this constitutes a huge advantage because small deviations (order of 100 nm) between the set and the finally achieved value for the inter-pillar distance are very common using mid-UV lithography based etching processes.
The width of a square micropillar and the inter-pillar distance (gap distance between pillars) are both 200 μm. Figure 5 shows SEM images of microscale square cavities with nanowires.
This highly non-linear relationship can be understood from first principles: when the machining error is of the order of 100 200 nm and when the target design size for the inter-pillar distance is of the order of 250 nm, this inevitably leads to pores that will range in size between 50 and 450 nm.
This highly non-linear relationship can be understood from first principles: when the machining error is of the order of 100 200 nm and when the target design size for the inter-pillar distance is of the order of 250 nm, this inevitably leads to pores that will range in size between 50 and 450 nm that we want to highlight with our paper highly non-linear relationship.
This increase in actin cloud intensity, in addition to the shorter inter-pillar distance in the sealing zone, makes it virtually impossible to resolve individual podosome units by light microscopy.
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