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This not only produces more surface energy in the drawings but also gives the houses themselves a cartoonish vitality.
It is worthy to mention here that such polycrystalline nanowires with rough surfaces have more surface area and hence more surface energy as compared to single crystalline nanowires, and therefore, these nanowires would have better catalytic properties.
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In the case of sample B, the intensity of the O-H stretching peak was increasing more than that of sample A. This means that sample B has more high surface energy than sample A. Figure 4 FT-IR spectra of the TiO 2 thin films at different precursor temperatures.
Smaller nanoparticles had more surface free energy and greater aggregation tendency [ 50].
As the plasma power was increased, the contact angle, refractive index, and main absorption peak of thin films were increased while the optical transmittance was decreased, signifying that the plasma-polymerized organic films have more low surface energy with increasing RF power.
YS polyhedron has also drawn much attention due to its tailored shape with more surfaces in energy conversion [76, 77, 78, 79].
In addition we could not confirm results in Ref. 17 stating that the 1 ×1 reconstruction was more preferable in surface energy than the 2 ×1 one for both Si(112) and Ge(112).
Simulations of the evolution of aggregates of particles (linear chains, rings and branched chains) show that the aggregates become more compact and more isotropic structures, driven by the surface energy tensor or the surface force density.
Compared with thin film materials, one-dimensional nanomaterials have a more obvious quantum effect, higher surface energy, and larger surface activity.
However, the crystal structure of materials in nanometer scale is more efficient in reducing the surface energy caused by the large surface-to-volume ratio [32 36].
Dopants with larger ionic radius tend to segregate to the surface more strongly and reduce the surface energy to a greater extent.
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