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Scientists from Canada, Germany, Japan and Switzerland collaborated with the Center in solid state surface analysis, single crystal growth, and the determination of electron transport properties of crystalline nanomaterials.
This study presents a solid state surface engineering technique for forming a composite surface layer on aluminum to improve surface hardness and wear resistance without sacrificing the ductility and conductivity of the bulk.
The proposed method could be utilised as a solid state surface bonding process where surface composites are prepared by mechanical impregnation of particulate fillers at sub-melting substrate temperatures and at ambient working environment.
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In 2002 he joined the Nanotechnology Group at the Swiss Federal Institute of Technology, where he was working on a guided assembly of colloidal nanoparticles at solid state surfaces.
Friction surfacing is a solid-state surface engineering technology.
The expression of laser Doppler signal intensity of solid-state surface is derived based on the theory of speckle and stochastic process.
In the designed laser Doppler velocimeter (LDV) for the vehicle self-contained navigation system, the reference object is a kind of solid-state surface.
Results of theory and experiments show that the essence of laser Doppler signal of solid-state surface is the coherence stack of two speckles.
This paper expounded the generation mechanism of laser Doppler signal of this solid-state surface according to the order of the speckle field intensity variation.
Voltammetric results indicate the presence of several solid-state surface redox transitions (SSSRT) which lead to the formation of Co(IV) containing species which are the specific catalytic phases for OER.
The cyclic voltammetry study revealed that a reversible pseudo-capacitive behaviour can be attributed to the solid-state surface redox transitions occurring at the three-phase interfacial regions in an acidic environment.
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