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Barcaro, G. et al. Interface effects on the magnetism of CoPt-supported nanostructures.
The possible interface effects were suggested to explain this phenomenon.
Importance of interface effects and geometrical factors are underlined.
Finite size and interface effects may cause fundamentally different behavior compared to three dimensional macroscopic systems.
Comparison with experiments through a nanofluidic membrane showed interface effects to be crucial.
These effects can be related to hydration, degradation and interface effects in the nanocomposites.
Interface effects on the creep behavior of AC are explored using the developed model.
The Kelvin-Voigt model is used to take into accounted the viscoelastic interface effects.
Similar(3)
Interfacial Allostery for the Quality-of-Interface effects.
Since the surface/interface properties of MoS2 contribute tremendously to the carrier transport in MoS2-based electronic devices as reviewed above, the effective elimination of unwanted surface/interface effects is critical for improving transport properties.
The weak interlayer interactions between graphene layers and the interface effects may contribute to this phenomenon.
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