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This study aims to explore the interlayer effect on the properties of La Cr–O coatings after post-annealing treatment.
On the other hand, to study the interlayer effect, Cr/CrN/Cr and Ti/TiN/Ti, were deposited to WC Co substrate surfaces (no chemical etching) by using a commercial physical vapor deposition (PVD) system in a thickness architecture of 200 nm/1.5 μm/1.5 μm, respectively.
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(This type 1 separation corresponds to interlayer effects - see 'Consideration of disorder' section for further discussion).
The above characterization results also suggest that such prepared samples would provide an ideal model for systematically investigating the surface and interlayer effects on the tribological performance of ZrP nanoplatelets in oils.
Such surface-modified ZrP nanoplatelets were further intercalated by hexylamine and 1-dodecanamine to investigate the interlayer modification effect.
The rapid decrease in R-T above 200 K can be attributed to the transition between the low- and high-T limits in the interlayer ripple effect scattering.
The heterostructures BP/MoS2 preserve both the properties of BP and MoS2 but exhibit relatively narrower bandgaps due to the interlayer coupling effect.
The existing test results show that using a mixture of water soluble epoxy resin and emulsified asphalt mixture as the prime coat material of CTB can bring remarkable penetrability, surface consolidation and interlayer bonding effect.
Reference spectra can be used if available but this is not feasible in the particular case of XRF analysis of heterogeneous layered materials such as paint layers in a painting, although methods have been proposed to correct for intra and interlayer absorption effect [9, 32].
The silane-modified ZrP nanoplatelets with the longest alkyl chain (C16-ZrP), which show the best tribological performance in mineral oils in all the surface-modified samples prepared, were intercalated with two alkyl amines, hexylamine (N6) and 1-dodecanamine (N12), to investigate the interlayer modification effect on the friction and anti-wear properties of nanolubricating oils.
The correlations between ɛd and cluster morphology parameters such as the PtPt bond distance dPtPt (strain effects), the PtM bond distance dPtM (interlayer ligand effects), and the choice of specific element M (pure ligand effects) are established.
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