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A scientific and technological view allows establishing conceptual contents intended from world modern knowledge on research and technological activities performed for Materials and Solid State fields.
As a scalable proof-of-concept to achieve better ionic contacts, a premixing process for active materials and solid electrolytes is demonstrated to significantly improve electrochemical performance.
Metal nanostructures confined between sp2 hybridized 2D materials and solid supports are attracting attention for their potential application in new nanotechnologies.
Its primary purpose has been to reveal changes in the tribological behavior of bearing materials and solid lubricants influenced mainly by elevated temperatures in moderate vacuum and in low partial pressures of inert or reactive gases, under realistic engineering (Hertzian) stresses.
With this new tribometer, the evaluation of friction and wear mechanisms of various self-mated materials and solid lubricant coatings under high sliding speeds (>0.5 45 m/s) with high Hertzian contact stresses (up to 2.5 GPa) in cryogenic fluid is now possible.
Relaxation experiments for metallic materials and solid polymers have exhibited nonlinear dependence of stress relaxation on prior loading rate; the relaxed stress associated with the fastest prior strain rate has the smallest magnitude at the end of the same relaxation periods.
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From the application viewpoint, the assembled superstructures with both shape anisotropy and magnetic anisotropy could be exploited as unique magnetic systems for studying nanomagnetism, and they could also be used for fabricating functional materials and solid-state magnetic devices with controlled magnetization direction and desired anisotropy energy.
To investigate the influence of the solid phase, different solid materials and different solid loadings were used.
where np and ns refer to the refractive index of the porous material and solid material, respectively, and p is the porosity of a porous material.
As an additional approach to improve the battery performance of the all-solid-state secondary cell, a metal oxide-retaining layer was placed between the cathode material and solid electrolyte.
Informatics approaches have also been recently applied to the identification of suitable photocathode materials [40] and solid state electrolytes [41].
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com