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The result also confirmed the fact that (111) is the most densely packed facet for fcc structure and is thus the most favorable facet for growth.
In the present work, the catalyst Cu1.94S nanocrystal introduces Cu(I) and In III) species into the vacant sites of the crystal lattice, then condenses and crystallizes successively after saturation from the favorable facet of the catalyst to minimize the interfacial energy.
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Considering {1 0 5} to be energetically favorable facets [23], we proposed that the sidewalls of the present nanowires were partly composed of {1 0 5} facets and others, which can not be distinguished due to the limitation of the resolution of AFM.
The implications for potentially favorable TiO2 crystal facets regarding the inflammatory response and hemostasis are discussed with a view to the advanced surface design of future implants.
The adsorption has a weak dependence on the surface facet, with adsorption most favorable on Cu (100) and least favorable on Cu (111).
Although there is a supersaturation in the catalyst particle, the material incorporation pathways for sidewall growth differs from Au-induced growth, and it is possible that the material reaching the {111}B-type facets is limited due to a more favorable incorporation at the {111}A-type facets.
The crystalline facet of Bi(1 1 0) favorable for pre-depositing Sn is the main reason enhancing the Sn2+ sensing of Bi deposits.
However, for the conventional anatase TiO2 nanocrystal system, it is dominated by either {101} or {001} facets which are less energetically favorable for catalytic reaction [42].
This may be due to that a significantly high V/III ratio is favorable for the growth of AlN NW sidewall facets, which results in the increased radial growth rate but decreased axial growth rate.
As shown in Fig. S5, the BiVO4 photoanode with exposed (040) facets exhibits a smaller impedance arc diameter than that of the BiVO4 film prepared without NaCl, indicating that charge transfer across the electrode/electrolyte interface is more favorable for the BiVO4 photoanode with exposed (040) facets.
After fusing unstable segments, the mechanical back pain that results from pars defects or facet arthropathy can be decreased, which leads to favorable functional outcomes [ 21, 22].
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