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The (100) face of γ-alumina support is represented by an Al8O26H28 cluster, which is cut out from the ideal crystal structure.
Irregular atomic alignment and associated with grain boundaries, atomic migration or dissolution reactions occur more easily on grain boundaries than on ideal crystal substrates.
The d200 spacing of the intermolecular hydrogen-bonded plane approached that of the ideal crystal at relatively low annealing temperatures in the block copolymers.
Finally, the elastic modulus of PPTA is computed for the ideal crystal and the infinite chain and compared to the experimental values reported in the literature.
The effect of deposition current and particle concentration on structural property, adhesion behaviour, ideal crystal orientation, surface topography and electrochemical properties of Zn-Al-Ti alloy coating series on mild steel were analytically examined.
Starting with an ideal crystal lattice of synthetic images, and then experimental HAADF images of a single-crystal lattice, we have quantitatively evaluated the inherent GPA processing artifacts and experimental errors due to STEM scanning distortions.
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The recombinant ILT1 domainsmains behave as an equilibrium of both stable dimer and monomer in solution and yield ideal crystals for structural determination.
This is attributed to the presence of structural non-idealities and hydrophilic defects in real membranes, while the adsorption and diffusion properties obtained using molecular simulations reflect the behavior in ideal crystals.
The regular configurations follow the atomic body-centered cubic and face-centered cubic structure in ideal crystals, whereas the modified ballistic deposition method is employed to generate the irregular configurations.
In this study the ideal crystals were relaxed using molecular dynamics (MD) with an empirical potential.
We tested the fundamental assumptions of our approach, namely scale invariance and contextual information, by applying it to simulated scanning transmission electron microscopy images of ideal crystals and atomically sharp interfaces between crystals.
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